├── .gitignore ├── doc ├── logo.png └── push_time.png ├── icon ├── gh_021881142875.jpg ├── gh_038cf5c345ed.jpg ├── gh_051c632430d7.jpg ├── gh_07b2b514e253.jpg ├── gh_07bb24dd5d05.jpg ├── gh_0afb32197092.jpg ├── gh_0da88782c73a.jpg ├── gh_0e70efc7cfde.jpg ├── gh_108f2a2a27f4.jpg ├── gh_114e76fd6e5d.jpg ├── gh_118629636ff6.jpg ├── gh_11936f024d5d.jpg ├── gh_1218980ba0db.jpg ├── gh_148a4321d538.jpg ├── gh_14b95017d43e.jpg ├── gh_14cf5aa134a3.jpg ├── gh_1b7f52be49f3.jpg ├── gh_225563aad79a.jpg ├── gh_2414d982daee.jpg ├── gh_25386b9b8116.jpg ├── gh_263f18f0f331.jpg ├── gh_2657898b5dbf.jpg ├── gh_2687fae329dc.jpg ├── gh_27c43c799b0c.jpg ├── gh_2995d5cbc586.jpg ├── gh_2b57ea0ba3dd.jpg ├── gh_2df8340915e8.jpg ├── gh_310660a555a6.jpg ├── gh_32b13b880824.jpg ├── gh_33c91ab19c4f.jpg ├── gh_3505b3ad932d.jpg ├── gh_38469f01690f.jpg ├── gh_38d0e64a72ff.jpg ├── gh_39e537869fe8.jpg ├── gh_3ac945bf7902.jpg ├── gh_3bb902f05720.jpg ├── gh_3ceb998c0ff7.jpg ├── gh_3d2d45a5f9f1.jpg ├── gh_3d97b30e7f44.jpg ├── gh_3f670e9f9cf5.jpg ├── gh_409705cadde8.jpg ├── gh_41c13c76eca8.jpg ├── gh_42bb76643f00.jpg ├── gh_4667357d0d6f.jpg ├── gh_46c70215c61c.jpg ├── gh_481ee48e3261.jpg ├── gh_487c209243e2.jpg ├── gh_48c81239feb8.jpg ├── gh_4bd02b9b76af.jpg ├── gh_4c61a9d0b449.jpg ├── gh_4e78d3dc1e48.jpg ├── gh_5034e4edc067.jpg ├── gh_5069fcc49c4d.jpg ├── gh_51131740b06b.jpg ├── gh_5138cebd4585.jpg ├── gh_516158f35a6f.jpg ├── gh_523db8b36e3b.jpg ├── gh_52d557c3cc69.jpg ├── gh_541bd9a5be84.jpg ├── gh_54b2005c5f93.jpg ├── gh_5717f2657a98.jpg ├── gh_5808b02d6de4.jpg ├── gh_5b0b6bcc7a39.jpg ├── gh_5b9731cdb9e1.jpg ├── gh_5ba19d995457.jpg ├── gh_5bdfeb2deb05.jpg ├── gh_5ce95f520be8.jpg ├── gh_5efd71616a4d.jpg ├── gh_5f2614dca1ad.jpg ├── gh_6083098a636d.jpg ├── gh_62a58387af14.jpg ├── gh_665a2e9e8fd0.jpg ├── gh_6c5e9f1c0d2e.jpg ├── gh_6ca2fbc2df6e.jpg ├── gh_6e9d7f5ab9f2.jpg ├── gh_6fec50c6ef0d.jpg ├── gh_7175fb1a0c29.jpg ├── gh_72fc5673474b.jpg ├── gh_738e15cd09fe.jpg ├── gh_7875ab87bbc7.jpg ├── gh_790ee301453b.jpg ├── gh_7b616b8cdb4a.jpg ├── gh_7c8ab528d914.jpg ├── gh_7ce29bea153b.jpg ├── gh_7f44ce74b49f.jpg ├── gh_828a167ef08d.jpg ├── gh_83c5cc86ec46.jpg ├── gh_83e50f392f01.jpg ├── gh_863193dbe3fb.jpg ├── gh_895a8687a10f.jpg ├── gh_900a436f047a.jpg ├── gh_9067bcbdd631.jpg ├── gh_92a47dd34b3c.jpg ├── gh_92ea03075875.jpg ├── gh_931619690305.jpg ├── gh_93725664f16e.jpg ├── gh_943d225ad118.jpg ├── gh_94ddf3ad3e32.jpg ├── gh_96f9f52be5e3.jpg ├── gh_987416ed09d0.jpg ├── gh_9b0474b2d051.jpg ├── gh_9bd170629475.jpg ├── gh_9eaf123d0c6f.jpg ├── gh_9eb61f4ead74.jpg ├── gh_9fc1e2b86de5.jpg ├── gh_a0a6a4dc7236.jpg ├── gh_a2e4af93e6cf.jpg ├── gh_a31b5a252658.jpg ├── gh_a3a71e600cdb.jpg ├── gh_a40a957ae2a2.jpg ├── gh_a7cdb5705ebf.jpg ├── gh_aa9ac0a3a412.jpg ├── gh_aae45b189f8e.jpg ├── gh_add4ea144281.jpg ├── gh_af746b3da7c9.jpg ├── gh_afd87f0d3ef2.jpg ├── gh_b10aac61d168.jpg ├── gh_b2beba60958f.jpg ├── gh_b373ac3dbb07.jpg ├── gh_b4c54ded9057.jpg ├── gh_b7682654f4a3.jpg ├── gh_b81ad58dc224.jpg ├── gh_bab57266d506.jpg ├── gh_bb6aa16f4c05.jpg ├── gh_bba93d488906.jpg ├── gh_bd9204ad331d.jpg ├── gh_be9d7092abf7.jpg ├── gh_bfbab3d1e262.jpg ├── gh_c191f350723c.jpg ├── gh_c1f2e5989666.jpg ├── gh_c3787dd12b7d.jpg ├── gh_c57a6c217fff.jpg ├── gh_cf8fe9c65bd1.jpg ├── gh_d00db26cc95c.jpg ├── gh_d052191dee3a.jpg ├── gh_d06fa4463e84.jpg ├── gh_d1818d05f392.jpg ├── gh_d21f67d094a5.jpg ├── gh_d40b1a354fb2.jpg ├── gh_d424311fc4c3.jpg ├── gh_d4ba208ffa0b.jpg ├── gh_db54cfe1dbf6.jpg ├── gh_dbc0a5474692.jpg ├── gh_ddaa9ab1d0cb.jpg ├── gh_e07180c244d1.jpg ├── gh_e1b632fff56c.jpg ├── gh_e2cc9600b595.jpg ├── gh_e771ab75277e.jpg ├── gh_ec27b24114a0.jpg ├── gh_ee3cbd1da497.jpg ├── gh_ee6b894fc77f.jpg ├── gh_f24964232d76.jpg ├── gh_f8a98419e332.jpg ├── gh_fb334d825c71.jpg ├── gh_fd689e0db189.jpg ├── gh_fef6e6df7f5e.jpg ├── gh_ff7c8476b324.jpg ├── wxid_4302923029011.jpg ├── wxid_5637156371511.jpg └── wxid_9602156020911.jpg ├── README.md └── channels ├── gh_32b13b880824.xml ├── gh_cf8fe9c65bd1.xml ├── gh_2b57ea0ba3dd.xml ├── gh_fd689e0db189.xml ├── gh_b2beba60958f.xml ├── gh_48c81239feb8.xml ├── gh_38469f01690f.xml ├── gh_487c209243e2.xml ├── gh_5bdfeb2deb05.xml ├── gh_b4c54ded9057.xml ├── gh_e2cc9600b595.xml ├── gh_39e537869fe8.xml ├── gh_0afb32197092.xml ├── gh_33c91ab19c4f.xml ├── gh_6c5e9f1c0d2e.xml ├── gh_6fec50c6ef0d.xml ├── gh_0da88782c73a.xml ├── gh_931619690305.xml └── gh_c191f350723c.xml /.gitignore: -------------------------------------------------------------------------------- 1 | /tools/ -------------------------------------------------------------------------------- /doc/logo.png: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/osnsyc/Wechat-Scholar/HEAD/doc/logo.png -------------------------------------------------------------------------------- /doc/push_time.png: -------------------------------------------------------------------------------- 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/icon/wxid_4302923029011.jpg: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/osnsyc/Wechat-Scholar/HEAD/icon/wxid_4302923029011.jpg -------------------------------------------------------------------------------- /icon/wxid_5637156371511.jpg: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/osnsyc/Wechat-Scholar/HEAD/icon/wxid_5637156371511.jpg -------------------------------------------------------------------------------- /icon/wxid_9602156020911.jpg: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/osnsyc/Wechat-Scholar/HEAD/icon/wxid_9602156020911.jpg -------------------------------------------------------------------------------- /README.md: -------------------------------------------------------------------------------- 1 | # Wechat-Scholar 2 | 3 |
4 | 5 |
6 | 7 | 提供稳定的**学术类**微信公众号转RSS服务. 8 | 9 | 何为**学术类**?主打学术资讯、论文分享、高质量科普. 10 | 11 | ## 时效 12 | 13 | - 保留最新50条的内容; 14 | 15 | - 文章发布时间12小时内完成更新; 16 | 17 | - 每日**08:15**,**12:15**和**17:15**更新;(根据过往公众号推送情况修订,参见下图) 18 | 19 | ![](./doc/push_time.png) 20 | 21 | ## 收录情况 22 | 23 | - 总计158个,2025.08. 24 | - ~~总计155个,2025.02.~~ 25 | - ~~总计147个,2024.11.~~ 26 | - ~~总计133个,2024.9.~~ 27 | - ~~总计117个,2024.2.~~ 28 | - ~~总计124个,2024.1.~~ 29 | - ~~总计81个,2023.12.~~ 30 | - ~~总计48个,2023.11.~~ 31 | 32 | ## 如何订阅 33 | 34 | - 在[channels.json](./channels.json)中寻找公众号名称,复制Links栏地址至RSS阅读器; 35 | 36 | - **或**通过`subscriptions.opml`直接导入所有频道; 37 | 38 | - **或**通过[Follow](https://app.follow.is/list/71378259800441856)订阅; 39 | 40 | - 如列表中找不到您需要的公众号,请移步[Issues](https://github.com/osnsyc/Wechat-Scholar/issues). 41 | 42 | 43 | ## 说明 44 | 45 | - 此项目只提供**学术类**公众号转RSS,其它类目需求勿扰; 46 | 47 | - 不提供全文输出,请在RSS客户端获取全文; 48 | 49 | - 收录容量有限,本人保留是否添加新增公众号请求的权利. 50 | 51 | ## 相关项目 52 | 53 | - [osnsyc/Scholar-to-RSS](https://github.com/osnsyc/Scholar-to-RSS), 谷歌学术转RSS. 54 | - [osnsyc/WoS-to-RSS](https://github.com/osnsyc/WoS-to-RSS), Web of Science Alert to RSS 55 | 56 | 57 | -------------------------------------------------------------------------------- /channels/gh_32b13b880824.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | <![CDATA[空天地海潜通用技术研究]]> 9 | 10 | 11 | https://mp.weixin.qq.com/ 12 | 13 | 14 | 15 | 16 | 17 | zh-cn 18 | 19 | https://wx.qlogo.cn/mmhead/50HcP4UOeLXm19UUek9hegEV1schhX06oOZutURec6TYCSXCiabHA9MZic9LSjLtL4Rr5PT9Xiao9s/132 20 | gh_32b13b880824 21 | 22 | 23 | 24 | 25 | 26 | 27 | 28 | 29 | 30 | 31 | 32 | 33 | 34 | 35 | 36 | 37 | 38 | 39 | 40 | 41 | 42 | 43 | 44 | 45 | <![CDATA[这一刻建国战胜了华盛顿—川普顶起]]> 46 |

美国前总统唐纳德·川普(Donald Trump)。他在2016年当选为美国第45任总统,任期至2021年。川普以其直率和争议性言论而闻名,他的政策和决定在国内外引起了广泛的争议和讨论。新华社快讯:美

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47 | http://mp.weixin.qq.com/s?__biz=MzU5MzY0Mzk5Mw==&mid=2247484503&idx=1&sn=5d0b0565256969ba7cde2f5e0990c4e3&chksm=ff42890b11c2934ba437a39415f326930ce44ddc975b9f007dea2555627765806a6f1a4b945f&scene=0&xtrack=1#rd 48 | Sun, 14 Jul 2024 09:33:51 +0000 49 |
50 | 51 | <![CDATA[中国设立股市的原因]]> 52 |

1. 支持企业改革和经济发展:中国在80年代开始从计划经济向市场经济转型,改革开放大潮中,企业股份制刚刚萌芽,急需规范化的交易所来帮助股票流通,建立股票交易所的需求已箭在弦上。邓小平曾指出:“你们有个

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53 | http://mp.weixin.qq.com/s?__biz=MzU5MzY0Mzk5Mw==&mid=2247484503&idx=2&sn=627ce040c36b9d51c70c132589884626&chksm=ff3df9e6e0725af335054aff2fce4152694ef93a2656c56e7c59c0d077ed0a92008c5245f4ca&scene=0&xtrack=1#rd 54 | Sun, 14 Jul 2024 09:33:51 +0000 55 |
56 |
57 | 58 | 59 |
60 | -------------------------------------------------------------------------------- /channels/gh_cf8fe9c65bd1.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | <![CDATA[3D打印世界]]> 9 | 10 | 11 | https://mp.weixin.qq.com/ 12 | 13 | 14 | 15 | 16 | 17 | zh-cn 18 | 19 | 20 | 21 | 22 | 23 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM7DVSwiaONw1eOv7icOPOABTBeOytsUT2Fmx3CAPLIqe9hg/132 24 | 25 | 26 | gh_cf8fe9c65bd1 27 | 28 | 29 | 30 | 31 | 32 | 33 | 34 | 35 | <![CDATA[香港碧瑶绿色集团与EASY 3D怡昇三维科技合作举办ESG企业蓝球慈善赛,应用3D技术打印奖杯及环保奖牌]]> 36 |

点击上方蓝字关注,最新行业资讯随时看!碧瑶绿色集团, 在香港港交所上市企业, 股票编号:1397.HK,成立于在1980年,旗下之“爱回收慈善基金iRecycle Charity Foundatio

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37 | http://mp.weixin.qq.com/s?__biz=Mzg3MzM1NzQ1NQ==&mid=2247511100&idx=1&sn=7a129965eb0f2343c5c7a716de8418d5&chksm=cf3d870bf5c46ee3dad96f17e3807b46b700e06428d040a189fbf1496fca3d4774d35b02bc27&scene=0&xtrack=1#rd 38 | Fri, 17 Jan 2025 09:00:00 +0000 39 |
40 | 41 | 42 | 43 | <![CDATA[以交流促发展——香港三维打印协会参访珠海领先3D打印企业]]> 44 | 45 | 46 |

点击上方蓝字关注,最新行业资讯随时看!2024年7月5日,香港三维打印协会携手香港企业家一行十余人,驱车北上珠海,对当地知名3D打印企业——珠海天威增材有限公司(以下简称“天威增材”)和珠海赛纳三维

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47 | 48 | 49 | http://mp.weixin.qq.com/s?__biz=Mzg3MzM1NzQ1NQ==&mid=2247511085&idx=1&sn=f5fb8cc43e1eca1d873b500f65b66e96&chksm=cfae97dd3842bb3205bfb0dd964163e1b832390f75b9856f42c70c21be81228f4666aa91e5b3&scene=0&xtrack=1#rd 50 | 51 | 52 | Tue, 09 Jul 2024 10:00:00 +0000 53 | 54 | 55 |
56 | 57 | 58 | 59 | <![CDATA[12月10日截止早鸟优惠,尽快锁定您的2024年TCT亚洲展席位!]]> 60 | 61 | 62 |

点击上方蓝字关注,最新行业资讯随时看!全球增材制造产业预计到2025年可能产生高达298亿美元经济效益。当前中国增材制造已日趋成熟,市场呈现快速增长趋势,年复合增速为41.42%,国内厂商迎来新机遇

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63 | 64 | 65 | http://mp.weixin.qq.com/s?__biz=Mzg3MzM1NzQ1NQ==&mid=2247511068&idx=1&sn=a383ed26ec4816ff65f2b0ecfcf41e0d&chksm=cee3a5fcf9942ceabc982831bb07a6dfa2c62aa356d6fabffcdd252f3b0fcc722771f92baa18&scene=0&xtrack=1#rd 66 | 67 | 68 | Wed, 06 Dec 2023 12:00:00 +0000 69 | 70 | 71 |
72 |
73 | 74 | 75 |
76 | -------------------------------------------------------------------------------- /channels/gh_2b57ea0ba3dd.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[奔向地球的猪]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5tmUZtSl4E3VXAhLtqrnVR7vYVqOK77vgzGfW62krABw/132 10 | gh_2b57ea0ba3dd 11 | 12 | 13 | <![CDATA[ESC静电卡盘加热和冷却热仿真方法]]> 14 |

1.创建模型 一般静电卡盘为三明治结构,从上到下分别为TOP层、粘胶层、加热丝层、BOTTOM层 2.设置同通用设置25℃环温 3.分别设置各层材质,这里我都是默认,一般为陶瓷静电卡盘,按需设置即可

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15 | http://mp.weixin.qq.com/s?__biz=MzU4MjgyNTczMQ==&mid=2247486191&idx=1&sn=9ae58a3127b7e3a522449c4c51fbfb7e&chksm=fc2280c8a7f84e1b99a57bc6d52250407c5a916bc1b7e97dcd80ea89d66dbb1c0eef98b9bd96&scene=0&xtrack=1#rd 16 | Wed, 27 Aug 2025 10:58:58 +0800 17 |
18 | 19 | <![CDATA[基于matlab格林函数的多芯片热设计优化]]> 20 |

它的主要作用是通过数学优化技术,自动寻找最佳的散热器参数配置,以确保电子系统中的多个芯片能在安全温度范围内运行。核心功能和作用热管理优化:自动调整散热器参数(鳍片高度、厚度、间距)优化热界面材料(TI

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21 | http://mp.weixin.qq.com/s?__biz=MzU4MjgyNTczMQ==&mid=2247486170&idx=1&sn=88d8bbde44123378225be99ecb219a0e&chksm=fc2d59793d93d8c381c4be77c10388db1815e3e12d42e078ba3ff06f07d5746591f188da1916&scene=0&xtrack=1#rd 22 | Fri, 15 Aug 2025 17:48:45 +0800 23 |
24 | 25 | <![CDATA[基于Flotherm的自然对流理论计算与仿真对比]]> 26 |

下面是我的计算过程1.散热面积计算2.热阻计算3.空气物理性计算(基于膜温度)这里通过调整基板平均温度,让下面的总散热量为输入功率14.对流换热计算(翅片通道)5.辐射换热计算6.散热量计算调整上述参

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27 | http://mp.weixin.qq.com/s?__biz=MzU4MjgyNTczMQ==&mid=2247486151&idx=1&sn=c929805481911f9a1d5c2efd64ea5b88&chksm=fcb62d10fb0ed19b9f08a790c285cf25063bbbd4c7f36b4919339c958f51b95bac1a61aa2b04&scene=0&xtrack=1#rd 28 | Thu, 10 Jul 2025 11:01:13 +0000 29 |
30 | 31 | <![CDATA[一种Catia Speos改变输出热流密度的方法]]> 32 |

1.Meshing Sag Mode(网格SAG模式)含义:定义SAG公差(表面偏差)的应用方式,决定网格如何适应几何曲率。可选模式:Proportional to face(与面成比例):SAG值基

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33 | http://mp.weixin.qq.com/s?__biz=MzU4MjgyNTczMQ==&mid=2247486136&idx=1&sn=48cf402906fec4a4929be40b48381a1c&chksm=fce500bc14229f2a82eb8a43d592e156a84f157ff97525164f01b0575d35b19ac1e415686e82&scene=0&xtrack=1#rd 34 | Thu, 03 Jul 2025 09:15:46 +0000 35 |
36 | 37 | <![CDATA[基于Ansys Speos的一个小案例]]> 38 |

1.绘制个模型点一下这个,然后点一下esc 2.在这个平面绘制个表面 绘制好后如下图左侧结构树 3.设置材质 按如图1234点击设置 同理发光表面也如此 4.设置光源 按照下图设置光源 5.设置坐标

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39 | http://mp.weixin.qq.com/s?__biz=MzU4MjgyNTczMQ==&mid=2247486127&idx=1&sn=6fc354adf105d1b5ed6734be579426dd&chksm=fcbf7534b1b919e9cc7bd03810f4d484f026b5e8929202a0395bd4d486221120944fc9da1090&scene=0&xtrack=1#rd 40 | Fri, 27 Jun 2025 08:41:11 +0000 41 |
42 |
43 |
-------------------------------------------------------------------------------- /channels/gh_fd689e0db189.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[SubseaTube]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM73sb9A1csPlnIRTEAibUq9WlaSUoRjATXqwnzicN15PGvA/132 10 | gh_fd689e0db189 11 | 12 | 13 | <![CDATA[VARD锁定Inkfish公司先进调查船合同]]> 14 |

VARD Secures Contract with Inkfish for Cutting-Edge Research Vessel原文连接:https://workboat365.com/vard

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15 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103810&idx=1&sn=7f5be02f30db1645dfc7e52d0efd9701&chksm=86735bc7146488d5f7df33aac9be2fa249b65d75ee34ca699a8611dd271cb384873d136f17f4&scene=0&xtrack=1#rd 16 | Fri, 11 Jul 2025 11:43:36 +0000 17 |
18 | 19 | <![CDATA[全国目前有多少有NI证书的DPO]]> 20 |

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21 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103797&idx=1&sn=bfedb0847f815da0998b492c05a71dfe&chksm=86faba53552ce53dbf93822143596f45a88e217a9e6d0b17cc54cee910068c7c6f4412dc7bc4&scene=0&xtrack=1#rd 22 | Thu, 05 Jun 2025 14:10:15 +0000 23 |
24 | 25 | <![CDATA[无隔水管轻型修井:水下油气井弃置的新“利器”]]> 26 |

文字由Kimi根据PPT提炼,仅供参考。在海洋油气领域,水下油气井的生命周期管理一直是工程师们关注的重点。从开发到生产,再到最终的弃置,每一步都关乎安全、效率和成本。而今天,我们要聊的是一种正在改变游

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27 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103792&idx=1&sn=32a1a847ba1f73bb6b9948d5928137c6&chksm=8602b5fbddc99ee9713a68c0a03cc063af9d37e0a9c76f39f59d106102a674612cc95e6ccd1c&scene=0&xtrack=1#rd 28 | Sun, 18 May 2025 08:41:55 +0000 29 |
30 | 31 | <![CDATA[帮粉丝猎头,两个岗位]]> 32 |

有意向的,加我微信,微信名也叫subseatube公司简介 一家专注于海洋科技领域的国家级高新技术企业,致力于为政府、企事业单位提供海洋水下目标探测、海洋安防监控、海底电缆智能巡检等领域的系统集成解决

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33 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103727&idx=1&sn=fd2c4b7b62afc3488c46689e45162861&chksm=86e6aac9c632c446fff17f651dac7022b021b0bcc1d79c13e97ddb38620a24244dfd400c8f0b&scene=0&xtrack=1#rd 34 | Mon, 05 May 2025 13:35:47 +0000 35 |
36 | 37 | <![CDATA[Subseatube 粉丝一号群]]> 38 |

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39 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103723&idx=1&sn=aca532e1aebdeabbdcc22c7e0f3d290a&chksm=86ac0e9b148a2310d318407d0e85196c5e487f8e9d728796c2e349e03100fd6e6dfc24829d12&scene=0&xtrack=1#rd 40 | Fri, 02 May 2025 16:06:06 +0000 41 |
42 | 43 | <![CDATA[No. 523 Mighty Ships - Stornes]]> 44 |

船舶纪录片。

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45 | http://mp.weixin.qq.com/s?__biz=MzA4ODkxNDkzMw==&mid=2451103714&idx=1&sn=8d363b6b4b143170c17c1227978580f8&chksm=867da8b64523b2d048d0bd443b5d20551768a00c26a1a174f111d328a7cb95dbbca2ebbba103&scene=0&xtrack=1#rd 46 | Fri, 18 Apr 2025 10:06:31 +0000 47 |
48 |
49 |
-------------------------------------------------------------------------------- /channels/gh_b2beba60958f.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | <![CDATA[新硅NewGeek]]> 9 | 10 | 11 | https://mp.weixin.qq.com/ 12 | 13 | 14 | 15 | 16 | 17 | zh-cn 18 | 19 | 20 | 21 | 22 | 23 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM40qicB0NuKFqeia1snHa5U8ER0dLn7Ujibibn4ickfeXDbaJg/132 24 | 25 | 26 | gh_b2beba60958f 27 | 28 | 29 | 30 | 31 | 32 | 33 | 34 | 35 | 36 | 37 | <![CDATA[前高管组团创业,OpenAI没有竞业协议?]]> 38 |

1957年,当肖克利实验室的“八叛徒”,带着硅晶体管的理想出走时,他们或许未曾想到,这场“背叛”会点燃硅谷的燎原之火。他们创立的仙童半导体公司不仅孕育了英特尔、AMD等400余家科技企业,更塑造了硅谷

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39 | http://mp.weixin.qq.com/s?__biz=Mzk0NTU1NDk3Mg==&mid=2247490390&idx=1&sn=200c05e5b9f25ab643dab81bc6f5be0f&chksm=c2fe88832b70711602fc6295006432e28e2aba6de2ff5e375ca709ea478ffdefa6aa6df4c6cc&scene=0&xtrack=1#rd 40 | Thu, 20 Feb 2025 12:01:53 +0000 41 |
42 | 43 | 44 | 45 | <![CDATA[从《艾尔登法环》到《哪吒2》:又一个从代工到超越的奇迹]]> 46 | 47 | 48 |

春节后,A股最魔幻的剧情属于光线传媒。大家都知道光线的离谱涨幅要感谢《哪吒2》每一次票房突破的巨幅战报,但一部电影能让它累计涨幅达到300%的着实不多见。一般来说,票房带飞股价早已是惯例,但同样是打破

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49 | 50 | 51 | http://mp.weixin.qq.com/s?__biz=Mzk0NTU1NDk3Mg==&mid=2247490369&idx=1&sn=98bb6164cb1ea7aa809c5d871443290d&chksm=c2e94a0369b67c9367f096c61c17bc04451e1360300f926d8303e3f50297e48648e254567804&scene=0&xtrack=1#rd 52 | 53 | 54 | Tue, 18 Feb 2025 12:02:00 +0000 55 | 56 | 57 |
58 | 59 | 60 | 61 | <![CDATA[余承东最熟悉的剧情:当比亚迪开始华为式集团冲锋]]> 62 | 63 | 64 |

2025年还没开始几个周,比亚迪就扔出一枚原子弹,砸向了战斗白热化的中国新能源汽车战场。2月10号晚上,比亚迪搞了一场“智驾平权”发布会,宣布全系车型搭载“天神之眼”高阶智驾。上至24.98万元的宋L

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65 | 66 | 67 | http://mp.weixin.qq.com/s?__biz=Mzk0NTU1NDk3Mg==&mid=2247490360&idx=1&sn=119380b9dd465f25924d9743859b18ff&chksm=c28bfdb07d5048d6903d16bf5c479c0ff13b5ff4f71ef0814986c16bac964b03e3a6bc650c67&scene=0&xtrack=1#rd 68 | 69 | 70 | Fri, 14 Feb 2025 07:01:00 +0000 71 | 72 | 73 |
74 | 75 | 76 | 77 | <![CDATA[成为赛博修辞大师,DeepSeek重新定义了"互联网嘴替"]]> 78 | 79 | 80 |

凌晨三点的茶水间,某大厂项目经理正和ChatGPT斗智斗勇。他第20次输入"帮我把‘项目黄了’翻译成老板爱听的版本",AI依然坚持输出"阶段性成果承压优化",气得他怒啃半包香菜味辣条。这就是目前AI生

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81 | 82 | 83 | http://mp.weixin.qq.com/s?__biz=Mzk0NTU1NDk3Mg==&mid=2247490338&idx=1&sn=ef7dbce2f6223ff8bb54ef6902f275b9&chksm=c2597ec33973b0b0c5935b4c583611c3946b2001a40d8410fe7039946227c119e3837e368930&scene=0&xtrack=1#rd 84 | 85 | 86 | Fri, 07 Feb 2025 12:01:00 +0000 87 | 88 | 89 |
90 | 91 | 92 | 93 | <![CDATA[DeepSeek到底在春节做了什么?]]> 94 | 95 | 96 |

如何证明一个AI火?专家的夸赞、媒体的吹捧都是虚的。直接去社交媒体上看看有多少人出相关教程和玩法就行了。硅基君在小红书上搜了一下DeepSeek,好家伙,帖子乌泱泱的。DeepSeek的指令大全,用D

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97 | 98 | 99 | http://mp.weixin.qq.com/s?__biz=Mzk0NTU1NDk3Mg==&mid=2247490320&idx=1&sn=85e953930ed84faac341cc776d92b4a9&chksm=c2616a9c5745ff77159d05d127207c72d29fb675b67bc2080b7139063e500a5aac1f2d8eac03&scene=0&xtrack=1#rd 100 | 101 | 102 | Thu, 06 Feb 2025 12:01:00 +0000 103 | 104 | 105 |
106 |
107 | 108 | 109 |
110 | -------------------------------------------------------------------------------- /channels/gh_48c81239feb8.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[量子位AI前线]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5JA9nfOYxjoDGCJpy3rPxdtaiaJbqO6wFgFfEZ5kYAPyA/132 10 | gh_48c81239feb8 11 | 12 | 13 | <![CDATA[3分钟彻底搞懂什么是Token]]> 14 |

在AI和自然语言处理的世界里,Token是一个重要的概念。理解什么是Token以及AI如何计算Token数,对于更好地使用AI技术,尤其是与大语言模型(如ChatGPT)互动至关重要。今天,我们就通过

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15 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485214&idx=1&sn=b7569031e7c3c4be608021dce3524fe4&chksm=cf80a77f09280fd2f1d37e7bf8b824ee94d9bd9c1b194d3500950d42f0b2aa59af499e02413f&scene=0&xtrack=1#rd 16 | Mon, 17 Mar 2025 03:00:53 +0000 17 |
18 | 19 | <![CDATA[DeepSeek-R1的量化版、蒸馏版和满血版区别]]> 20 |

基于对DeepSeek-R1系列模型变体的对比与分析,以下是从量化版、蒸馏版和满血版中选择合适模型时需要考虑的关键点:逐个模型版本的关键考量:1. 满血版 DeepSeek-R1特点:参数规模:671

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21 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485206&idx=1&sn=c8b560728258f7b108a0083c3015ceb9&chksm=cf0458a9001e038cfe34927082468a42909522243731c5c4ed3a708229bf97317dbbe18f3d23&scene=0&xtrack=1#rd 22 | Wed, 05 Mar 2025 07:53:21 +0000 23 |
24 | 25 | <![CDATA[人类身体中五大生命极限]]> 26 |

在人体中隐藏着这样五种我们根本无法想象的生命极限,请一定要牢牢记住,以便让你在关键时刻能够做出准确判断,保住自己的性命。第一,饥渴极限虽然普通人7天不吃东西不一定会死,但只要3天不喝水,身体就会出现严

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27 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485198&idx=1&sn=a12358a30577bad8534ffec2d5694e2d&chksm=cf394662da9975b4a0d314b0bba7fffd2659203ab1619ad5c3eecfdac23960857984f0050624&scene=0&xtrack=1#rd 28 | Mon, 12 Aug 2024 03:48:57 +0000 29 |
30 | 31 | <![CDATA[生命进化的方向是繁衍而不是永生]]> 32 |

为什么生命进化的方向是繁衍而不是永生呢?这是一个值得深思的问题。虽然医学和科学领域取得了一些进展,使我们能够提高人类的寿命,但要实现真正的永生,仍面临着巨大的挑战。我们可以从以下几个方面进行阐述:1.

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33 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485187&idx=1&sn=78506fbf997a2bceeaab13aa3da531f3&chksm=cfbef66d59eafec1fc89aedc951123ef363245ff618143cab1f4415cb8da9499638e455fb4eb&scene=0&xtrack=1#rd 34 | Wed, 03 Apr 2024 08:45:47 +0000 35 |
36 | 37 | <![CDATA[探索物理学四大神兽:量子世界的奇幻之旅]]> 38 |

自信看完物理学四大神兽是种怎样的体验?物理学四大神兽之薛定谔的猫这是物理学家薛定谔针对量子物理学提出的一个思想实验。假设将一只猫关在装有原子设备的密闭箱子,如果原子发生衰变,毒气就会被释放,这只猫就会

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39 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485179&idx=1&sn=a4c3f4b33ef6327434e71abed035bfad&chksm=cf90c7fd57bc6b20f14f663307d3b5f7425e39f5b82e25e557c5b407e860e6f169c2b26e30ed&scene=0&xtrack=1#rd 40 | Thu, 28 Mar 2024 08:40:32 +0000 41 |
42 | 43 | <![CDATA[马斯克:脑机接口新突破,患者用意念打游戏!]]> 44 |

2022年12月,埃隆·马斯克旗下的脑机接口公司Neuralink发布了一段令人振奋的视频,展示了一只猴子用意念玩电子游戏的过程。这不仅让人们对脑机接口技术的潜力有了更深的认识,也让人们对脑机接口技术

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45 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485169&idx=1&sn=b3a044b92bbfa04b2804ca317a9da348&chksm=cf1f1a0aab7cc82f1b713b95a7d9e4a9aef6c63cb956005d34a79542f3fab794b270fa88ac03&scene=0&xtrack=1#rd 46 | Wed, 27 Mar 2024 02:50:12 +0000 47 |
48 | 49 | <![CDATA[2025年中美战争预测:军工复合体的利益驱动?]]> 50 |

2025年中美会开战吗?美国四星上将麦克米尼翰信誓旦旦预测三年后中美将针锋相对,据说备忘录已下发到逐日美军基地,至于为何开战,美其名曰因为宝岛。然而让小编不解的是,不同于这位四星上将的强势五角大楼紧急

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51 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485148&idx=1&sn=c2e1b2551a07e93d3c1a037d02fbe378&chksm=cfe430ef4f7ce206adf65bded4211abcea596974f807e0add236d78c3d3beeb842e722487bee&scene=0&xtrack=1#rd 52 | Fri, 22 Mar 2024 09:10:38 +0000 53 |
54 | 55 | <![CDATA[婴儿期遗忘症的谜团]]> 56 |

在我们每个人的记忆中,最深刻的记忆往往都是从三四岁开始的。在这之前,无论是人还是动物,都像是被突然清空了记忆一样,无论我们如何努力都无法回想起任何完整的信息。这也让我们对于自己的童年一无所知,无法理解

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57 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485139&idx=1&sn=2ea9007224e9d27c29451aff9b8e8e8b&chksm=cf325a5d2fbf269045480c6cbeed444c8e212f6ba4cb8c2325d0b66eb12739dee4850cecb3f2&scene=0&xtrack=1#rd 58 | Thu, 21 Mar 2024 03:04:50 +0000 59 |
60 | 61 | <![CDATA[AI浪潮,还是离职潮?]]> 62 |

在全球科技迅猛发展的今天,人工智能(AI)已经深度融入到我们生活的各个方面。从生活到工作,我们逐渐看到AI为我们带来的便捷和高效,例如AI翻译软件、智能客服、自动驾驶汽车等。但是,随着AI技术的飞速发

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63 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485131&idx=1&sn=3bb78f0f2c8135cda19d1b7c0c4787ad&chksm=cf1657726dc3dcc3edf4a3b66f26665aff7664918dcecc1bfac32c2d20b974b63ff82ae0e3de&scene=0&xtrack=1#rd 64 | Tue, 19 Mar 2024 02:48:32 +0000 65 |
66 | 67 | <![CDATA[马斯克:人工智能是召唤恶魔,它是人类玩的最危险的火?]]> 68 |

他是谁?他是特斯拉公司的首席执行官,也是世界上最具影响力的企业家之一。马斯克是一位企业家和创新者,他的特斯拉公司生产出了世界上最先进的电动汽车,并且他还在其他领域进行了一系列的创新和投资,如太空探索和

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69 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485123&idx=1&sn=4a1b6f4aa824c0d9ce162c3517d427b6&chksm=cf52bb12001c3615ddb49f7b47c16d6e4d62a0b6b020b0776b1a39fad9ecf62f5ed8c6d3776c&scene=0&xtrack=1#rd 70 | Thu, 14 Mar 2024 02:55:46 +0000 71 |
72 | 73 | <![CDATA[当了首富还要吃苦?穿破皮鞋,住小房子!马斯克生活条件远逊于普通人?]]> 74 |

在当代,提及到全球首富,恐怕大多数人第一时间想到的就是埃隆·马斯克,他不仅是特斯拉电动车和SpaceX火箭公司的创始人,更是具有前瞻性眼光的科技创新者。然而,这样一位拥有巨大财富的人,却并不像我们想象

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75 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485115&idx=1&sn=d62a3ca7d2a77aef38ef80b2948b0c93&chksm=cf7d936e9324d353d41c0a1ddf3489bd9e0240de795752000532a3746c2d7f84300d77a38ee2&scene=0&xtrack=1#rd 76 | Tue, 12 Mar 2024 05:18:02 +0000 77 |
78 | 79 | <![CDATA[未来AI的五大趋势,24年将进入“有意义的人工智能时代”]]> 80 |

大家好,今天我想和大家聊聊关于未来AI的一些趋势,以及它们对于我们生活的影响。在AI不断发展的时代,我们都应该多关注它的最新动态和应用,以便为自己的未来做好准备。趋势一:开源大模型将成为主流2024年

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81 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485107&idx=1&sn=af77165716c3ebab6805776eddef21d1&chksm=cf3db31d2db2f7fa928612c73d5729844ccc4139b75ef9e51ad0f3e8c0182aad53af7fab5f99&scene=0&xtrack=1#rd 82 | Mon, 11 Mar 2024 02:44:45 +0000 83 |
84 | 85 | <![CDATA[突破人类极限:马斯克的脑机接口计划将如何改变我们的未来?]]> 86 |

近年来,马斯克的Neuralink公司在脑机接口领域的进展备受关注。据该公司的官宣,他们已经完成了在人类身上植入脑机接口芯片的初步实验,这无疑是一个极具突破性的进展。而这项实验的成功实施,将为人类的未

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87 | http://mp.weixin.qq.com/s?__biz=Mzg2MDg3OTYzNw==&mid=2247485098&idx=1&sn=3d481474150a34e62ede252dc7c76023&chksm=cf1642f3d73f05b5effca49f695e676ffc291d6086f8355eec0698ceac28058e9ef5e98f2f32&scene=0&xtrack=1#rd 88 | Tue, 30 Jan 2024 06:57:19 +0000 89 |
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-------------------------------------------------------------------------------- /channels/gh_38469f01690f.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[OpenMMLab]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://raw.githubusercontent.com/osnsyc/Wechat-Scholar/refs/heads/main/icon/gh_38469f01690f.jpg 10 | gh_38469f01690f 11 | 12 | 13 | <![CDATA[IROS 2025 |从数字智能走向物理智能,“桃源”与真实世界机器人学习挑战赛启动,2大赛道等你来战]]> 14 |

2025年10月,IROS (智能机器人与系统国际会议)期间,上海人工智能实验室(上海AI实验室)将举办物理世界中的多模态机器人学习研讨会,IROS 2025“桃源”与真实世界机器人学习挑战赛(机器人

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15 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530295&idx=1&sn=9c0fec40f46a6ed96a74c97d7240f5ac&chksm=c36b0b6386e83496f33bb99f2e23be1a83d2b82a616c95dfdbdd0691011b13edfa86ce09ef15&scene=0&xtrack=1#rd 16 | Tue, 05 Aug 2025 11:01:47 +0000 17 |
18 | 19 | <![CDATA[Intern-S1连续多日登顶HuggingFace多模态Trending全球第]]> 20 |

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21 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530288&idx=1&sn=979eeb987380b96ff9d2e4d40f228083&chksm=c31828455b95a301de634b5793bae954903a58cf642288afb75a71960d1c1c69fba98a8ad58b&scene=0&xtrack=1#rd 22 | Thu, 31 Jul 2025 08:43:36 +0000 23 |
24 | 25 | <![CDATA[上海AI实验室发布『书生』具身全栈引擎,推动机器人大脑进入量产时代 | WAIC 2025]]> 26 |

近日,上海人工智能实验室(上海AI实验室)发布『书生』具身全栈引擎 Intern-Robotics,并面向全球开发者开放。通过构建虚拟仿真建模、虚实数据贯通、训测一体化等技术体系,Intern-Rob

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27 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530265&idx=1&sn=68e8fc157dc7b360388173a57af0c342&chksm=c3b94d8ac50a86b32b9a1e3d0f706a746a60abbfaf12c79e81505fdbc17ec4d36d78253aa387&scene=0&xtrack=1#rd 28 | Mon, 28 Jul 2025 10:56:34 +0000 29 |
30 | 31 | <![CDATA[全能高手&科学明星,上海AI实验室开源发布『书生』科学多模态大模型Intern-S1 | WAIC 2025]]> 32 |

7月26日,2025世界人工智能大会(WAIC 2025)正式开幕。在当天下午举行的科学前沿全体会议上,上海人工智能实验室(上海AI实验室)发布并开源『书生』科学多模态大模型Intern-S1。在科学

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33 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530261&idx=1&sn=3b55119ea503669c968a7371e4afc5d7&chksm=c3175e904ffa290f459cfc8fffc976ad949c0f13eea4731dbeacb20d67fe313bc09f6380a063&scene=0&xtrack=1#rd 34 | Sat, 26 Jul 2025 13:43:50 +0000 35 |
36 | 37 | <![CDATA[奖励模型预训练新范式POLAR:突破强化学习短板,有望打通RL链路扩展“最后一环”]]> 38 |

本文转载自量子位强化学习改变了大语言模型的后训练范式,可以说,已成为AI迈向AGI进程中的关键技术节点。然而,其中奖励模型的设计与训练,始终是制约后训练效果、模型能力进一步提升的瓶颈所在。当前,大模型

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39 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530244&idx=1&sn=cccdf356891f5b5ef28f4af610a900c1&chksm=c3fa31040a8d5e5c767106e93b1197fa115fefd377bb42e447f6f3e396dbf67e90d04c41193f&scene=0&xtrack=1#rd 40 | Fri, 11 Jul 2025 10:23:41 +0000 41 |
42 | 43 | <![CDATA[万字长文!大模型LLM推理优化技术总结]]> 44 |

本文转载自AINLPer引言大模型训练成本很高,且在推理过程中需要大量的计算资源,为了能够实现大模型应用落地,需解决大模型推理成本、模型响应速度等问题,这就需要对大模型进行推理优化。为此,本文将详细介

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45 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530239&idx=1&sn=07060e4799e2669c3c78378945df8c4a&chksm=c3880e0d00f2f5ad086dcef201194d302f7fb8a74bfbd3a148102a7ba7c7125ee0b9adbe5fc4&scene=0&xtrack=1#rd 46 | Fri, 04 Jul 2025 11:07:01 +0000 47 |
48 | 49 | <![CDATA[AI 真会编程还是只会“背题” | Code Bench 专场直播带你洞悉代码能力的真实象限]]> 50 |

AI 编程助手已成为开发者不可或缺的伙伴,但一个核心问题也随之而来:我们该如何衡量它们真正的代码实力?现有 Benchmark(基准测试)正面临严峻挑战——数据污染、测试用例不足等问题频出,导致模型排

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51 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530234&idx=1&sn=a008dbef66c592cd231856e35f4919f6&chksm=c36d77d1e748ae3d925d8e9a8bd1841f1ff2e696d7f2e3fa17b13eeafda197c09609e9e3bb43&scene=0&xtrack=1#rd 52 | Wed, 02 Jul 2025 10:00:43 +0000 53 |
54 | 55 | <![CDATA[10万奖金池!书生大模型实战营「沐曦魔乐专场」等你来]]> 56 |

自 2023 年底书生大模型实战营推出以来,已有五期学员共同进行了学习和开发实践,吸引超过 25 万人次 在线学习,孵化出近 1500 个创意项目。这个暑假,实战营重磅推出「沐曦魔乐专场」!依托国产沐

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57 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530220&idx=1&sn=0a8fa4e3735518d1e1ed68423d30c030&chksm=c391858a7a8325ea5c16c387e20927b9b16fc9aeb99adeb1527cd44e542420568ef824fa19b8&scene=0&xtrack=1#rd 58 | Fri, 27 Jun 2025 09:36:54 +0000 59 |
60 | 61 | <![CDATA[关于人工智能前沿的十个问题]]> 62 |

通用人工智能(AGI)犹如星辰大海,吸引着学界和业界同行者不懈探索,并不断取得新突破。但前进的路上仍然充满未知,如能突破研究机构与学科的藩篱,让研究者在开放的科学社区中碰撞思想,将有望加速催生颠覆性的

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63 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530215&idx=1&sn=475b14275dfcdb9ae67b9670a8d1a3c3&chksm=c39cc6a222cb0578b8475fcee7e52247631c1fc31725c3a7e3c527d0735d1ef222ffe549a978&scene=0&xtrack=1#rd 64 | Fri, 20 Jun 2025 11:17:23 +0000 65 |
66 | 67 | <![CDATA[火热招募中丨第二届“兴智杯”基础大模型智能体应用创新挑战赛等你来!]]> 68 |

由中国信息通信研究院主办,联合上海人工智能实验室、阿里云等头部机构共同设置的第二届"兴智杯"全国人工智能创新应用大赛大模型创新主题赛已经正式启动!上海人工智能实验室独家支持其中的「基础大模型智能体应用

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69 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530211&idx=1&sn=a84ec84c25e5efd819f64e6735fb26ad&chksm=c31e5648d6cef7ff79d9438b159908fa39b16b799ba45c48e21fdece92619d35d1585425582a&scene=0&xtrack=1#rd 70 | Thu, 12 Jun 2025 10:57:15 +0000 71 |
72 | 73 | <![CDATA[直击强化学习前沿,RL专场来袭丨AI Insight Talk直播预告]]> 74 |

在知识爆炸、信息过载的时代,如何洞悉 AI 领域前沿趋势?OpenMMLab 联合 Hugging Face、ModelScope、知乎及机智流等重磅推出 AI Insight Talk,邀请「强化学

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75 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530206&idx=1&sn=bf049499be65960c80e251ddd0a52224&chksm=c39e8552a57dab88e52f8c12c2f80ed23883bb6ac6b19057afb0168b772cfae6faf04437bbd9&scene=0&xtrack=1#rd 76 | Wed, 11 Jun 2025 12:30:24 +0000 77 |
78 | 79 | <![CDATA[MMAR与AudioTrust技术解读,音频大模型评测前沿进展分享 | AI Bench Talk直播预告]]> 80 |

司南评测集社区 CompassHub 作为上海人工智能实验室司南评测体系的重要组成部分,旨在打造创新性的基准测试资源导航社区,提供丰富、及时、专业的评测集信息,帮助研究人员和行业人士快速搜索和使用评测

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81 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530179&idx=1&sn=570ce4aca89764fe207cc67587c37ab8&chksm=c3465586535fb4ccaad48915ca3cdfad6824cba4e2a84917ab40883cd3146d7e13e6d4578fc9&scene=0&xtrack=1#rd 82 | Tue, 10 Jun 2025 11:25:52 +0000 83 |
84 | 85 | <![CDATA[从零开始200行python代码实现LLM]]> 86 |

前言大语言模型(LLM)很火,讨论的文章铺天盖地,但对于没有机器学习背景的人来说,看多了只是粗浅了解了一堆概念,疑惑只增不减。本文尝试从零开始,用python实现一个极简但完整的大语言模型,在过程中把

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87 | http://mp.weixin.qq.com/s?__biz=Mzk0MDg1MjIwNg==&mid=2247530175&idx=1&sn=d0beb6fb70ce24bf7c8931525291c6dd&chksm=c3d66d1a9a89b744da7fc35b49a02971f1002d4e2da236cbd29dc881f273bbda87f6f0316f37&scene=0&xtrack=1#rd 88 | Fri, 06 Jun 2025 11:34:27 +0000 89 |
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-------------------------------------------------------------------------------- /channels/gh_487c209243e2.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[纳米酶论]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/ciaIftfPzwlry5JbANP1nlEKOyf5b0sM4pKAyGn54CnduicS3HaZmTHBKXANuJYx9Dz4icTClibP2Yo/132 10 | gh_487c209243e2 11 | 12 | 13 | <![CDATA[武汉大学张先正教授课题组近期成果集锦]]> 14 |

张先正教授现任武汉大学化学与分子科学学院教授、博士生导师,兼任研究生院副院长兼学位工作处处长及生物医用高分子材料教育部重点实验室主任,是国家级人才计划特聘教授、国家杰出青年基金获得者,还入选国家级科技

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15 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492334&idx=1&sn=0ef9a26abca3e66adda7be85bab86233&chksm=ce8d27496205ec489e81754cd514b9983af49009c02b2d9be3b947eb40ab15bbc16fbb8c97d6&scene=0&xtrack=1#rd 16 | Wed, 30 Jul 2025 00:09:00 +0000 17 |
18 | 19 | <![CDATA[我国首个原创无机纳米1类新药“纳米氧化铁注射液”获国家药监局批准开展临床试验]]> 20 |

2025年7月18日,苏州欣影生物医药技术有限公司宣布,其自主研发的1类创新药——纳米氧化铁注射液,正式获得国家药品监督管理局批准开展临床试验。该产品是我国首个获批进入临床试验的1类原研无机纳米药物,

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21 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492314&idx=1&sn=aa8b5988ec6d8a3e737dab1f7678977e&chksm=ce7d6e8008591b8efbcc441686655e9b1c7cc882e58070fce001a1703ba199f2592da6d90381&scene=0&xtrack=1#rd 22 | Sun, 20 Jul 2025 11:39:00 +0000 23 |
24 | 25 | <![CDATA[浙江大学顾臻教授课题组近期成果集锦]]> 26 |

顾臻教授,现任浙江大学药学院院长,教育部长江学者,先进药物递释系统全国重点实验室主任,主要从事生物材料、药物递送系统及免疫治疗等领域的研究,顾臻教授指导的“iMedication-智能医药实验室”研究

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27 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492294&idx=1&sn=b2891d5421c40d93e1ab71ade371e87e&chksm=cefaa0ae673f9ece27856c14dd9091639d4843a8bb0be375a385b82a617f6f4dd9c498cc88d7&scene=0&xtrack=1#rd 28 | Mon, 14 Jul 2025 00:10:00 +0000 29 |
30 | 31 | <![CDATA[JACS:在肿瘤中显示体内“组装-拆卸”级联和“关-开-关”磁共振成像信号]]> 32 |

🔍研究概要“组装-拆卸”级联已被用作肿瘤治疗诊断学的一种非常有效的方法,但其实时体内监测仍然具有挑战性。当前的策略面临着穿透深度和实时性之间的基本权衡,而仍然没有关于集成这两种特征以在生物体中显示这种

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33 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492263&idx=1&sn=b465fa813ecbd1fc1e914baa55154237&chksm=ce84e19515ab1095afb89f57a8cee3f03c60d7b2acd16b9769589d32c228495b5b15b4faf83d&scene=0&xtrack=1#rd 34 | Mon, 30 Jun 2025 00:32:31 +0000 35 |
36 | 37 | <![CDATA[Nat Cancer:脂化纳米光敏剂实现「生长-转移」双阻断]]> 38 |

🔍研究概要当癌细胞像脱缰的野马,从原发灶扩散到远端器官时,转移就成了癌症患者死亡的主要原因。其中,肿瘤细胞外囊泡(TEVs)如同癌细胞的 “信使”,通过运输核酸、蛋白质等物质,在肿瘤微环境重塑、免疫逃

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39 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492258&idx=1&sn=421225dea248c4f26687aa74fa3b8120&chksm=ce6e24b81e1e2be44ad6e4d3dc24ca987fb05573887fa9a488c75c0308e3f8b7faf2e5f3343d&scene=0&xtrack=1#rd 40 | Thu, 26 Jun 2025 11:02:38 +0000 41 |
42 | 43 | <![CDATA[Nat Cancer:一次植入,抗癌数周!浙大团队开发肿瘤治疗“长效电池”]]> 44 |

🔍研究概要说起免疫治疗中的 “明星分子” IL-2,它就像激活 T 细胞的 “钥匙”,能让免疫大军精准识别并杀灭癌细胞。但它有个致命缺点: 半衰期太短:进入体内仅 85 分钟就会被代谢,需要频繁注射;

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45 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492244&idx=1&sn=852a95b11cd8d62a16c20aa75be1a935&chksm=cec64204f148f1ed04772bad97cd63d09838e5984c1ed9b0ead652c1a0fc87405e0b91039883&scene=0&xtrack=1#rd 46 | Wed, 25 Jun 2025 00:38:00 +0000 47 |
48 | 49 | <![CDATA[Nat. Nano:一种靶向癌症干细胞和大量癌细胞的纳米疫苗,用于术后癌症免疫治疗]]> 50 |

🔍研究概要外科手术切除肿瘤后,仍有 30%-70% 的患者会出现复发转移,背后的罪魁祸首正是癌症干细胞(CSCs)。这些细胞像 "种子" 一样潜伏在手术边缘,具有三大特性: 极强耐药性:常规放化疗难以

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51 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492243&idx=1&sn=5e4e98bea781ce7dc0ef11e82cf20ba7&chksm=ce047f5593b77b5ef76306c3f991bc5b782e8229ee83793b85ad639aa903d7e60fae02ca899d&scene=0&xtrack=1#rd 52 | Tue, 24 Jun 2025 00:31:00 +0000 53 |
54 | 55 | <![CDATA[Nature: 微肽 “分子刹车”:探索细胞凝聚物微环境的通用工具]]> 56 |

概要 生物分子凝聚物作为细胞内无膜细胞器,通过液 - 液相分离形成具有独特理化性质的微环境,参与调控基因表达、信号传导等重要生命过程。然而,如何在活细胞中精准操控内源性凝聚物并解析其微环境功能,一

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57 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492242&idx=1&sn=eaf06644a6ef34440f7e6cfaad13c43a&chksm=ce072f9d2e231adf7575c2fb924af8b12e65beebd79a6582cebb04d8f9a924a8179a32809b80&scene=0&xtrack=1#rd 58 | Mon, 23 Jun 2025 00:36:00 +0000 59 |
60 | 61 | <![CDATA[Nat. Biomed. Eng:一种基于声敏感的二苯丙氨酸广谱抗菌肽]]> 62 |

🔍研究概要说起抗菌肽,它本是人体自带的 “防御兵”,能广谱杀菌且不易让细菌产生耐药性。但它有个致命缺点 —— 杀菌速度慢,还容易被降解,就像拿着长矛的步兵,难以快速突破细菌防线。研究团段从人体防御肽

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63 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492215&idx=1&sn=bf24f9e3756fe441b678489bf176f709&chksm=ce341bd0030d3cafdde494148348f30f4d9170dcfff07750859e6f360631ecb8dc074931c604&scene=0&xtrack=1#rd 64 | Tue, 17 Jun 2025 10:24:00 +0000 65 |
66 | 67 | <![CDATA[Adv. Mater: 基于 CRISPR 系统的工程细菌外膜囊泡增强 T 细胞免疫力以增强癌症免疫治疗]]> 68 |

🔍研究概要细菌外膜囊泡(OMVs)是革兰氏阴性菌 “吐” 出的纳米级脂质小泡,像个 “天然快递员”,里面装着脂多糖、蛋白质等 “免疫激活分子”。它能激活免疫反应,还能当 “运输车” 送药。但过去想让它

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69 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492214&idx=1&sn=7e358e20ad6de0b3d1279db65f8cdd58&chksm=cebfea5b0261136a0884830a13c13175e4c24af540ab737328d15a2c8613afab81bbdbe25b2a&scene=0&xtrack=1#rd 70 | Mon, 16 Jun 2025 10:10:00 +0000 71 |
72 | 73 | <![CDATA[Nat. Biomed. Eng:声波驱动光合作用胶囊]]> 74 |

🔍研究概要急性肾损伤(AKI)是一种高发且无特效治疗手段的临床难题。它不仅伤肾,而且极易发展成慢性肾病(CKD)。AKI时,肾小管上皮细胞的线粒体功能崩溃,ATP生成减少,氧化应激爆发,NAD⁺枯竭…

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75 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492197&idx=1&sn=8697566813472d897a7a900a13b70fed&chksm=ce421be372f03e953feaa1d106bfe34d427321c3320ae3e05c59b02ab2352fd8ee5149ec87d4&scene=0&xtrack=1#rd 76 | Sat, 14 Jun 2025 00:36:00 +0000 77 |
78 | 79 | <![CDATA[Nat. Nano:生物分子凝聚态中的弹道扩散前沿]]> 80 |

🔍研究概要细胞不是一锅粥,而是一个有组织的世界。生物大分子凝聚体通过液-液相分离形成,没有膜,却能分区操作,比如基因调控、信号传递。但这些无膜结构的运输机制一直模糊不清。以往研究认为扩散都是“费克扩散

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81 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492187&idx=1&sn=b05830f83bcf44cd58cd9793f93eaf90&chksm=cee65ce2705b3b4d60ab45b4ca760c21fd7b97968930e41074d882c066a62592b8a51ae56746&scene=0&xtrack=1#rd 82 | Fri, 13 Jun 2025 00:34:36 +0000 83 |
84 | 85 | <![CDATA[Nat. Biomed. Eng:白蛋白搭便车]]> 86 |

🔍研究概要免疫检查点抑制剂(ICIs)如PD-1/PD-L1、CTLA-4等,极大推动了肿瘤免疫治疗的发展,但大部分患者并未从中获益,主要因为肿瘤缺乏免疫原性,免疫系统难以识别——这就是“冷瘤”。如何

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87 | http://mp.weixin.qq.com/s?__biz=Mzg5MjE1Nzk0OQ==&mid=2247492186&idx=1&sn=b469ba5bfa36b0a5fb46da3e2dcde43d&chksm=cebcfa45518e3e341372c5db5f9f2814603296937f9de18302f8408bdbcc892611ff73e4c55b&scene=0&xtrack=1#rd 88 | Thu, 12 Jun 2025 04:16:00 +0000 89 |
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-------------------------------------------------------------------------------- /channels/gh_5bdfeb2deb05.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[表界面力学前沿]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5ONQfqDqWViawMPzYhGbI2tt0rHICSt3cL852DhZGqeww/132 10 | gh_5bdfeb2deb05 11 | 12 | 13 | <![CDATA[基于宏观磨损实验和分子动力学多尺度模拟的CoCrFeNiTi高熵合金涂层损伤机制研究]]> 14 |

CoCrFeNiTix高熵合金兼具多主元设计、高晶格畸变与复杂相结构等特点,为先进表面工程与极端工况耐磨防护材料提供了重要候选体系。然而,在实际应用中,涂层在磨损载荷下的损伤结构演化较为复杂,其宏观磨

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15 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483904&idx=1&sn=f5c770d94ac05f3963d5f36f3d78b5e2&chksm=c3a195f3c9da1495811a776dbe144b93ae133f0973a36f28f8bea7b3db402ec9bd8bb6216a41&scene=0&xtrack=1#rd 16 | Wed, 03 Dec 2025 18:25:44 +0800 17 |
18 | 19 | <![CDATA[中科院力学所王超副研究员团队:心肌纤维排布对心脏泵血功能的调控机理研究]]> 20 |

心脏,作为人体至关重要的动力器官,每分钟能够泵出约5升的血液,而左心室更是承担了其中80%的泵血重任。左心室壁内的心肌纤维呈独特的双螺旋排列,其精确的走向角度对于心脏收缩效率起着决定性作用。尽管传统医

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21 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483889&idx=1&sn=ca87ce4b3bc54b9b6e25718fa7d1a530&chksm=c3c617658c5b213dfe0452660a85ec09a225bc6021fa0c47fc71e8310def503eaee0b44c53a5&scene=0&xtrack=1#rd 22 | Sat, 06 Sep 2025 11:33:12 +0800 23 |
24 | 25 | <![CDATA[粗糙纳米孔隙中页岩气的输运、吸附以及驱替机制研究]]> 26 |

页岩气具有储量巨大、效率高以及燃烧释放的有害气体较少等特性,被认为是满足能源和环境需求最具潜力的燃料。然而,其商业开采和利用却面临巨大阻碍,核心原因在于页岩基质中气体运移行为仍不明确。这主要是由于页岩

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27 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483877&idx=1&sn=3c7e354a9d6f37780ae71e75a64f5678&chksm=c31bee3aa05a324bd14882fc8ddf9340f695d56f858a69995937cf061f6151a1a484ce21090a&scene=0&xtrack=1#rd 28 | Sun, 17 Aug 2025 10:16:26 +0800 29 |
30 | 31 | <![CDATA[北京理工大学陈少华教授和清华大学高华健院士Phys Rev Lett:多层MoTe2循环应变驱动的超快可逆相变及电学性质突变机制]]> 32 |

MoTe2具有低维和多相的特点。实验表明,MoTe2层内可逆结构相变非常缓慢,应变驱动的相变周期可达数分钟,对电子器件的应用十分不利。最近实验发现,循环应变载荷作用下的多层1T’相MoTe2可实现快速

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33 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483870&idx=1&sn=f5d5e42293caa93d4b44f4543340e5ac&chksm=c3a0594b0d7a2fd4312c7b7ded15882ddc9f8ce4c42da6719342dabf43a29192d8b24090fcb4&scene=0&xtrack=1#rd 34 | Sat, 16 Aug 2025 12:57:05 +0800 35 |
36 | 37 | <![CDATA[北京理工大学宇航学院“先进材料力学与仿生力学”课题组招聘青年骨干教师与博士后启事]]> 38 |

一、课题组简介北京理工大学宇航学院“先进材料力学与仿生力学”课题组主要研究领域包括仿生材料力学与结构力学、功能与智能表面设计、表/界面力学、先进复合材料力学、流固耦合力学等。课题组负责人陈少华教授为国

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39 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483863&idx=1&sn=6c865e74f4d7d509b295c8348f3e9aab&chksm=c3833141fc4a40652609b2e643d705fbcb1cc8d5cf3db264f55e7a9dd779c0ea4896eaa16231&scene=0&xtrack=1#rd 40 | Wed, 28 May 2025 03:07:23 +0000 41 |
42 | 43 | <![CDATA[北京理工大学宇航学院“先进材料力学与仿生力学”课题组招聘博士后启事]]> 44 |

一、课题组简介北京理工大学宇航学院“先进材料力学与仿生力学”课题组主要研究领域包括仿生材料力学与结构力学、功能与智能表面设计、表/界面力学、先进复合材料力学、流固耦合力学等。课题组负责人陈少华教授为国

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45 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483857&idx=1&sn=92c5ee5b2b68a433ac5bda4b70b5b2bc&chksm=c345504c7ffedf6ac2a650f61ab518a47d8906f7a706d3b5ff62add9f82ec831ec34ed8dc570&scene=0&xtrack=1#rd 46 | Fri, 25 Apr 2025 12:31:29 +0000 47 |
48 | 49 | <![CDATA[中国力学大会-2025“MS01接触、摩擦与表界面力学”专题研讨会 征稿启事]]> 50 |

“中国力学大会-2025”将于2025年7月18日–21日在湖南省长沙市召开。接触、摩擦与表界面力学一直是表面/界面科学领域研究的前沿热点。任何材料、结构、器件、装备都是通过表面/界面与外界环境直接接

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51 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483845&idx=1&sn=2afbafbece307dcd11effcd6ffd9acd6&chksm=c3bbbed91af913fbbade384338681aafba3068f2bfacc5fd59d4e96c0bb0fc9b9f7175a8afd9&scene=0&xtrack=1#rd 52 | Thu, 27 Mar 2025 07:26:56 +0000 53 |
54 | 55 | <![CDATA[浙工大朴钟宇教授和彭光健研究员团队在轻合金表面改性方面取得新进展]]> 56 |

滚压表面改性技术作为一种表面强化手段,能同步实现金属材料表面光整和纳米梯度结构制备,显著提升材料的抗磨损性能。浙江工业大学机械工程学院朴钟宇教授和彭光健研究员团队自主研制的二维超声辅助滚压加工系统,成

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57 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483840&idx=1&sn=28323a735f8942de4aac433e69b39750&chksm=c329bc59219cc7c54b29462acfa241fe7dc33768e7a07988a29b08efcde9739bf313c2beffc3&scene=0&xtrack=1#rd 58 | Wed, 31 Jul 2024 15:38:06 +0000 59 |
60 | 61 | <![CDATA[中国矿业大学陈培见教授团队:含表面图案软壳的屈曲行为研究]]> 62 |

壳体结构是自然界中的典型结构,从简单生命体的细菌到细胞,乃至高级生命体的胃、心脏等众多生物组织均为壳体结构。除了生物组织外,壳体结构在人类的生产生活中被大量应用,例如,火箭的箭体,导弹外壳,飞机的机身

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63 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483817&idx=1&sn=60bacdcc39d4d2b1dead775a669bca2f&chksm=c35c5f19507d895f0a8c56409e79cd09521fe4df54540467ac1dda5b65053e10c99b2877213a&scene=0&xtrack=1#rd 64 | Mon, 27 May 2024 14:40:38 +0000 65 |
66 | 67 | <![CDATA[充气拉胀的轴对称薄膜颈缩和起皱设计]]> 68 |

拉胀的人工设计材料会在受拉伸时变厚,因此具有许多潜在应用领域,包括超疏水材料、柔软机器人、生物医学应用以及汽车、航空航天等工程领域。这些材料可以通过增材制造技术或减法制造技术进行制造,并且可以在微观尺

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69 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483796&idx=1&sn=8144da727de18480b4df841423babb98&chksm=c3801fba99c64e3547910a7946333de34b72bff3ffd3c8b1a546866ec4dee3c8b3dc5484160d&scene=0&xtrack=1#rd 70 | Tue, 14 May 2024 02:52:43 +0000 71 |
72 | 73 | <![CDATA[北京理工大学陈少华教授和彭志龙教授团队《JMPS》:仿生微柱阵列表面等效黏附强度的调控机理]]> 74 |

传统胶黏剂的黏附强度受材料性能及使用环境等因素的影响,且传统胶黏剂不可重复使用。如何设计强黏附且可重复使用的黏附表面是微机械系统、微电子封装等先进领域关注的关键科学问题。壁虎通过强黏附与弱脱黏交替实现

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75 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483784&idx=1&sn=e5747804487c506e5ed3b2bc73cde8b7&chksm=c39ff02f78fc9b0b2bcea59dd603871c50f06213a1f77b5bafdb51a8196acee4477c10e6ecf4&scene=0&xtrack=1#rd 76 | Wed, 17 Apr 2024 14:07:14 +0000 77 |
78 | 79 | <![CDATA[北京理工大学陈少华教授和彭志龙教授团队《JMPS》:仿生微柱阵表面强黏附的力学机理]]> 80 |

界面黏附普遍存在于我们日常生活与工程实际中,传统胶黏剂(如压敏胶带)黏附性能受材料性质及使用环境限制,且不具有可重复使用性。因此,如何设计兼具强黏附和可重复使用的新型黏附功能表面一直是研究人员关注的关

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81 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483772&idx=1&sn=188f0c5b2f97403b654fc3848cc4fc5f&chksm=c325ef2e062cff06cba9238ad930c8fbc09b48a910da868323ad028b7ed814c1cbd4c3ebb800&scene=0&xtrack=1#rd 82 | Tue, 16 Apr 2024 13:56:02 +0000 83 |
84 | 85 | <![CDATA[激光熔覆制备CoCrFeMnNi/WC高熵合金涂层的组织演变及摩擦学性能]]> 86 |

高熵合金是由五种或五种以上的元素以相等或接近原子的比例组成的具有独特结构和特殊性质的合金类型。自高熵合金诞生以来,其迅速成为一个热门的研究方向。其中,CoCrFeMnNi是被广泛研究的高熵合金之一。它

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87 | http://mp.weixin.qq.com/s?__biz=MzkyODYwNDI4NA==&mid=2247483759&idx=1&sn=37e59b8679601ad53a5b37f257747a94&chksm=c328b2a6e3167fb3779798bd4d68561efc77cd893a402b96efaeda123558787aab90b98bb02e&scene=0&xtrack=1#rd 88 | Tue, 06 Feb 2024 02:38:05 +0000 89 |
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-------------------------------------------------------------------------------- /channels/gh_b4c54ded9057.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[电介质Dielectrics]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5sBq2j5EkQL0Om8jT8zB72msUxoGpicRDNeSqTdnXcVgQ/132 10 | gh_b4c54ded9057 11 | 12 | 13 | <![CDATA[5月23-25日光电材料论坛【限时优惠截止4月21日】]]> 14 |

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15 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247501012&idx=1&sn=9a9a624f34b8c8cab85077969f70a635&chksm=edc2e51a55f90ab1dd8e5a53fe6c04600b6ab2702d23c5300eacf7ecff924ff9ef25ac1bda07&scene=0&xtrack=1#rd 16 | Wed, 16 Apr 2025 01:00:00 +0000 17 |
18 | 19 | <![CDATA[介电储能领域重要突破!]]> 20 |

2025年4月11日,我校物理学院杨浩教授团队和李伟伟教授团队,联合清华大学南策文院士,在介电储能领域取得重要突破,成功研发出储能密度高达215.8 J/cm3的自组装树枝状纳米复合薄膜电容器,为高性

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21 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247501012&idx=2&sn=22b1f17a70eba44725aa27bfe262088c&chksm=edaaacf8444d93017a3f44efb1e22d7bd8383afb25287b8d17380d017af851a60719bb0e31d3&scene=0&xtrack=1#rd 22 | Wed, 16 Apr 2025 01:00:00 +0000 23 |
24 | 25 | <![CDATA[华中科技大学周华民刘洋教授团队取得高熵高储能聚合物开创性成果]]> 26 |

4月9日,《自然·材料》(Nature Materials)在线刊发材料学院周华民刘洋团队研究成果:“高熵高储能铁电聚合物”(Enhanced energy storage in high-entro

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27 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247501012&idx=3&sn=65528fddb282f0155d6a3586c5e41caf&chksm=ed2974b428784085133c300c0ff146438466bae110e466e124b825ffa3bd816aa3573b97f74f&scene=0&xtrack=1#rd 28 | Wed, 16 Apr 2025 01:00:00 +0000 29 |
30 | 31 | <![CDATA[【文章推荐】机器学习方法预测微波介质陶瓷材料 Q×f 值]]> 32 |

中国科学院上海硅酸盐研究所刘志甫研究员团队Journal of Materiomics 第11卷第4期发表了题为“Machine learning assisted Q×f value predict

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33 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247501012&idx=4&sn=682d6390fd78f946aeee7b4c30d97d1f&chksm=ed49db149deaf0524f3ee39f2828b43e76fdd9bbdeccadcad7dfcfeae85cc1534197aba03ffe&scene=0&xtrack=1#rd 34 | Wed, 16 Apr 2025 01:00:00 +0000 35 |
36 | 37 | <![CDATA[2025全国有机光电前沿与先进材料器件发展论坛]]> 38 |

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39 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500994&idx=1&sn=30eb6ee02c8c0e0e4c0f6e5b0c2cf29a&chksm=ed279a12b146e1749cad899e3ac586471cd82202372b1f39efcf522cfd3cccc4330f5ceefc07&scene=0&xtrack=1#rd 40 | Tue, 18 Mar 2025 13:22:47 +0000 41 |
42 | 43 | <![CDATA[景德镇陶瓷大学沈宗洋团队:掺杂MnO₂诱导结构畸变增强CaBi₄Ti₄O₁₅基陶瓷压电响应]]> 44 |

景德镇陶瓷大学沈宗洋团队:掺杂MnO2诱导结构畸变增强CaBi4Ti4O15基陶瓷压电响应原文出自 Journal of Advanced Ceramics (先进陶瓷)期刊Cite this art

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45 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500994&idx=2&sn=c9c5003e16727544097dbe9cabba3997&chksm=ed9a6f019964727cadf49d68dfc6f84fbc72a90d5bf64447706abff32ae9486d31519d424a3f&scene=0&xtrack=1#rd 46 | Tue, 18 Mar 2025 13:22:47 +0000 47 |
48 | 49 | <![CDATA[上海交大郭益平教授课题组在无铅压电陶瓷致动器领域取得新进展]]> 50 |

近日,上海交通大学材料科学与工程学院金属基复合材料国家重点实验室郭益平课题组在共烧型无铅压电陶瓷堆叠致动器领域取得重要进展,研究工作对深入理解缺陷设计理论及推动压电致动器在高精度位移控制领域的应用具有

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51 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500994&idx=3&sn=e5129097511d3a70e42155c347f2fff5&chksm=edf55b0e99da19ce4b21757d53fb17332d6658bde782bb1974c4ecb553d6e597d1b6a1f08e14&scene=0&xtrack=1#rd 52 | Tue, 18 Mar 2025 13:22:47 +0000 53 |
54 | 55 | <![CDATA[界面元素扩散调控铁电单畴实现高性能类神经突触器件]]> 56 |

现代社会,人工智能技术的快速发展对计算架构提出了更高要求。传统的冯•诺依曼计算架构,由于内存与处理单元的分离,导致数据访问效率低下和能源消耗过高,限制了人工智能技术的发展。神经形态计算作为一种新兴的计

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57 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500994&idx=4&sn=5b4acfa06a77a53abf158614ea1e4700&chksm=edba1ecd151aa7dfa388a70ddd83b7033c17b28380b4e453fa94bace9b63b6b9ffd7c7bc66b6&scene=0&xtrack=1#rd 58 | Tue, 18 Mar 2025 13:22:47 +0000 59 |
60 | 61 | <![CDATA[2025全国超材料与多功能材料研讨会4月18-20重庆斯铂特大酒店召开]]> 62 |

邀请函会议通知尊敬的各位专家、学者和同仁:在科技迅猛发展,材料科学不断突破边界的当下,超材料与多功能材料已然成为推动各领域变革的关键力量。为全方位、深层次地推动我国在超材料与多功能材料的基础理论研究实

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63 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500980&idx=1&sn=6ae2859d35c1db2c6c57c45161a3e23e&chksm=edbee458b344b9d2555752b8278cc9bfa457c69bf244703320ecde560b7dac50378e80b382be&scene=0&xtrack=1#rd 64 | Mon, 10 Mar 2025 00:00:00 +0000 65 |
66 | 67 | <![CDATA[清华大学党智敏、钟少龙/北京邮电大学毕科, Nat. Commun.:纳米-亚微米结构抑制铁电相聚集,助力高储能聚合物电介质]]> 68 |

文 章 信 息通过抑制铁电相聚集增强纳米-亚微米结构电介质薄膜的储能性能第一作者:邢锟通讯作者:党智敏*,毕科*,钟少龙*单位:北京邮电大学,清华大学台湾碳能CeTech【W0S1011生碳布&W0S

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69 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500980&idx=2&sn=90244aa8d317d2e2d0a12a6571e19fa1&chksm=edea1d578bf338815216503a91480c780d0436a509d33def93bf38096f34dae2084d4eefd953&scene=0&xtrack=1#rd 70 | Mon, 10 Mar 2025 00:00:00 +0000 71 |
72 | 73 | <![CDATA[西安交通大学Small:揭示晶格应变对BaTiO3二氧化碳光热还原活性的影响]]> 74 |

近日, 西安交通大学电气工程学院、电工材料电气绝缘全国重点实验室吴锴、周峻课题组在光热还原CO2领域取得新进展,相关研究成果以“Unveiling the Roles of Lattice Strai

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75 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500980&idx=3&sn=b91e5a661164a6ee324143dd8c6d202a&chksm=eda8728b0d368ea95b9530bcc807ec8c5dc321e41761ca2ba6af1cc6d4768a65452bd1a8d9ad&scene=0&xtrack=1#rd 76 | Mon, 10 Mar 2025 00:00:00 +0000 77 |
78 | 79 | <![CDATA[南京工业大学Ceramics International:不同链长氟硅烷偶联剂改性钛酸钡制备PVDF基介电复合材料]]> 80 |

随着电子电气行业的不断发展,电能的存储和转换被赋予了更高的期望以应对日益增长的需求。其中,电介质电容器因其具备的远超电化学电容器和电池的功率密度而在基本电子设备到高级脉冲功率设备中都得到了大规模的应用

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81 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500980&idx=4&sn=8c50f27f1ef2c52e06423747314dbdf2&chksm=edec519d5550756040c7aaa1f1f14725d98f3c22cf988d8fd8de0fb9b9f4d31c5f261d25fd98&scene=0&xtrack=1#rd 82 | Mon, 10 Mar 2025 00:00:00 +0000 83 |
84 | 85 | <![CDATA[福州大学Nature子刊:“多晶弛豫相+缺陷偶极设计”共强化高熵铁电陶瓷电容的储能性能,稀土发光为电容插上温度传感的“翅膀”]]> 86 |

【研究背景】为适应现代电子设备对小型化、高效能、长寿命等方面的需求,开发高能量密度和具有附加功能的电介质电容器迫在眉睫。其中,高熵陶瓷电容器(ESHECs)由于具有极高的储能效率(η)和延迟饱和极化而

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87 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500969&idx=1&sn=42b1022eb0815592e916e20323c38296&chksm=edec79f0c0424ab0f12055d2cdfab00b0f0d6150a0e5fa64d74316f81b574543db697153c3b7&scene=0&xtrack=1#rd 88 | Sun, 23 Feb 2025 10:19:46 +0000 89 |
90 | 91 | <![CDATA[通过 “序构化”结构设计在反铁电复合陶瓷实现优异的储能性能]]> 92 |

1. 研究背景电介质电容器因其高功率密度、良好的可靠性和超快的充放电速率,在大功率储能系统中起着重要的作用。随着电子技术与设备的快速发展,脉冲功率型电介质电容器迫切要求向小型化和集成化方向发展,这也给

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93 | http://mp.weixin.qq.com/s?__biz=MzI5NTI0ODgzNQ==&mid=2247500969&idx=2&sn=f0979b52206255356ac1e2c1cd41cd28&chksm=ed3f807c2dc7b99b53eacd43d0878771042c013641d1162ef482ae998567997f5e3c0eaa5933&scene=0&xtrack=1#rd 94 | Sun, 23 Feb 2025 10:19:46 +0000 95 |
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-------------------------------------------------------------------------------- /channels/gh_e2cc9600b595.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[纤维说]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM79dicT10Bdy7s8MLUdejblcF5scHIfLjIxmB821WRCCvw/132 10 | gh_e2cc9600b595 11 | 12 | 13 | <![CDATA[《Adv. Mater.》:液晶弹性体光纤人工肌肉的多模态驱动与精确控制]]> 14 |

文章标题:Multimodal Actuation and Precise Control in Liquid Crystal Elastomer Optical Fiber Artificial M

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15 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487157&idx=1&sn=d31a36102e527d5af2b8de6640d78e35&chksm=c099f1aaea92c3efb7314a48b9ab4adc19f970c8b4287dfd34cedfea13d69efab81fd773473e&scene=0&xtrack=1#rd 16 | Fri, 28 Nov 2025 17:19:06 +0800 17 |
18 | 19 | <![CDATA[《JACS》:调控电子与离子导电框架用于高能量密度锂硫电池]]> 20 |

文章标题:Regulated Electronic and Ionic Conductive Framework for High Energy Density Lithium−Sulfur Batt

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21 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487144&idx=1&sn=eecc71676e2bc20e95846ae8d936064c&chksm=c0643f39c775096f461105cc1072a449976d2d61cc0171456746f67fdbffb821d49e02f29399&scene=0&xtrack=1#rd 22 | Thu, 06 Nov 2025 20:44:55 +0800 23 |
24 | 25 | <![CDATA[《ACS Nano》:分子缝合构建高强度、超高响应性 Janus 二维半导体纤维及其自供电可穿戴光电子应用]]> 26 |

文章标题:Molecular Suturing Enabled Strong and Ultrahigh-Responsivity Janus 2D Semiconductor Fibers for

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27 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487135&idx=1&sn=c0f77b01a6494d15d693e0db96b1fca0&chksm=c0d54734cbb2607a14f271e31bdf4fbbfa43e9e5750d9886d07d16443fec269f72ca6d728775&scene=0&xtrack=1#rd 28 | Fri, 24 Oct 2025 22:38:17 +0800 29 |
30 | 31 | <![CDATA[第五届新型纤维材料与应用前沿论坛(第二轮通知)(2025年10月22-24日,苏州国际博览中心)]]> 32 |

一、会议背景当全球科技革命与产业变革的浪潮奔涌向前,新型纤维材料正以颠覆性姿态成为重塑世界的核心力量。从航天航空的星辰征途到日常生活的智慧穿戴,从新能源的绿色变革到生命健康的精准守护,这种“会呼吸的材

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33 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487118&idx=1&sn=48718ca2e58438bbab81ae48144da296&chksm=c0743799c8f7651d991a7d2c88a03313b3996872d3928cd8fb2910fd688260764aeb048bc007&scene=0&xtrack=1#rd 34 | Thu, 16 Oct 2025 13:19:08 +0800 35 |
36 | 37 | <![CDATA[《Nat. Commun.》:高分辨率的集束纤维X射线成像]]> 38 |

文章标题:Integrated copper-halide activated scintillator fiber array for remote high-resolution X-ray im

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39 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487113&idx=1&sn=75139c0f9d467c5c380d9f7723fd2b87&chksm=c05b9436955e887dffcf88804c779914103af630843d329ea261e77a868b0e47717fdafcbd98&scene=0&xtrack=1#rd 40 | Wed, 08 Oct 2025 19:41:19 +0800 41 |
42 | 43 | <![CDATA[论坛 | 第五届新型纤维材料与应用前沿论(2025年10月22-24日,苏州国际博览中心)]]> 44 |

一、会议背景当全球科技革命与产业变革的浪潮奔涌向前,新型纤维材料正以颠覆性姿态成为重塑世界的核心力量。从航天航空的星辰征途到日常生活的智慧穿戴,从新能源的绿色变革到生命健康的精准守护,这种“会呼吸的材

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45 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487103&idx=1&sn=0554e3b4de206aa3b4f90e1d32f65bf2&chksm=c0ddb3fce8ac03679e262d4ad3bfdf910697984a1473144b20a9e766aa64dac8c3760a6ccb22&scene=0&xtrack=1#rd 46 | Mon, 15 Sep 2025 16:24:54 +0800 47 |
48 | 49 | <![CDATA[《Adv. Funct. Mater.》:制备具有核壳结构的芳纶气凝胶纤维以打造高性能热防护纺织品]]> 50 |

文章标题:Engineering Aramid Aerogel Fibers with Core-Shell Structure for High-Performance Thermal Protec

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51 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487099&idx=1&sn=722d97986e2e1ca3becd82ec7c0f8546&chksm=c053dedd18c6e47369d02d47e5f0966bb945be81a382ebba2679ea723a012ab7b2541f6a6e1c&scene=0&xtrack=1#rd 52 | Fri, 05 Sep 2025 20:23:35 +0800 53 |
54 | 55 | <![CDATA[《Sci. Robot.》:通过增加压力预防压疮:交替压力床垫]]> 56 |

文章标题:Preventing pressure ulcers by increasing pressure: An unorthodox alternating-pressure mattress中

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57 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487089&idx=1&sn=4e335e8f810ede184a9f277e201a2b79&chksm=c00fd051054edaa67eaae162fdd45dc3688388c43b0c2bf2ff8fe22ea91b7480c97baa6b1251&scene=0&xtrack=1#rd 58 | Thu, 21 Aug 2025 21:20:59 +0800 59 |
60 | 61 | <![CDATA[《Nature》:微型旋转血栓切除术]]> 62 |

文章标题:Milli-spinner thrombectomy中文标题:微型旋转血栓切除术第一作者:Yilong Chang通讯作者:Ruike Renee Zhao通讯单位:斯坦福大学撰稿人:Qi

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63 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487078&idx=1&sn=d746cb800d2f136b8b7f5765e6e6b75c&chksm=c055537cdee6b9603c3cc0f70bb9014cd6260dec2a7f09504bc9e2dc025e5b088bd92f69ea1a&scene=0&xtrack=1#rd 64 | Fri, 08 Aug 2025 10:38:45 +0000 65 |
66 | 67 | <![CDATA[《Matter》:湿法冷冻纺丝制备超强皮芯聚合物气凝胶纤维]]> 68 |

文章标题:Ultra-strong skin-core polymer aerogel fibers via wet-freeze spinning中文标题:湿法冷冻纺丝制备超强皮芯聚合物气凝胶纤维第

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69 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487067&idx=1&sn=1749e92d2e5cb5c8e88ce86bec8463ec&chksm=c080734fbc8ab891bd265477394b9700386c0667ffab5f4651a08490ebd329cd4bd363447b3d&scene=0&xtrack=1#rd 70 | Thu, 24 Jul 2025 14:58:24 +0000 71 |
72 | 73 | <![CDATA[第十届全国静电纺丝技术与纳米纤维学术会议(第三轮通知)]]> 74 |

各位老师、同学、企业界人士、朋友们:第十届全国静电纺丝技术与纳米纤维学术会议定于 2025 年 8 月 22-24 日在南京工业大学大学(中国•南京)召开。全国静电纺丝技术与纳米纤维学术会议是中国静电

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75 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487066&idx=1&sn=6c1cd8452752f6af361aa0332ebbfe1e&chksm=c0501413b8015d6e5a870249e75961c21612e650df01ebd1753d6f917357fd9d77f395e1fe9a&scene=0&xtrack=1#rd 76 | Thu, 17 Jul 2025 08:30:06 +0000 77 |
78 | 79 | <![CDATA[Nature Biomedical Engineering:一种用于智能伤口监测和加速愈合的纤维结构热原电池敷料]]> 80 |

文章标题:A thermogalvanic cell dressing for smart wound monitoring and accelerated healing中文标题:一种用于智能伤口监

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81 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487055&idx=1&sn=7673c00e6f98b3057136738c25dce113&chksm=c0f0ff39e57bbb1495f0bae2f84b430a10954d1508d4f6281fc43689fbd56ed2d4a2f9f16729&scene=0&xtrack=1#rd 82 | Mon, 14 Jul 2025 12:13:55 +0000 83 |
84 | 85 | <![CDATA[华中师范大学智能健康交叉学科群:与未来健康科技共舞,诚邀创新领袖加盟!]]> 86 |

华中师范大学位于九省通衢的湖北省武汉市,是教育部直属重点综合性师范大学,国家“211工程”重点建设大学,国家教师教育“985优势学科创新平台”建设高校和“双一流”建设高校。华中师范大学智能健康交叉科学

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87 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487044&idx=1&sn=8f23332412909d0b3251f91f7676ffae&chksm=c03fb579e05d2a1d5483e09634c3842112280392696a50d8f01216020a9c88ee0dd0b928eff5&scene=0&xtrack=1#rd 88 | Mon, 30 Jun 2025 14:04:07 +0000 89 |
90 | 91 | <![CDATA[香港理工大学 智能纤维 招收博士及博士后]]> 92 |

PI简介汪志勋,香港理工大学电机及电子工程学系助理教授。2013/2016年本科及硕士毕业于中南大学,2021年博士毕业于新加坡南洋理工大学,其后继续于南洋理工大学进行博士后研究。2025年加入香港理

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93 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487030&idx=1&sn=449da5bf16e45f4f7960a8b6b2ec1b06&chksm=c0431466f0777633c556490fc7884f468547a218638f6437546c196769c19b10abcdea418324&scene=0&xtrack=1#rd 94 | Tue, 24 Jun 2025 08:42:56 +0000 95 |
96 | 97 | <![CDATA[《Nat. Sustain.》:分子堆积实现高强度纤维素纤维]]> 98 |

文章标题:High-strength cellulose fibres enabled by molecular packing中文标题:分子堆积实现高强度纤维素纤维第一作者:Kaiqing Yu通讯

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99 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247487008&idx=1&sn=0465f57d559bf74afadb05e84ea1784e&chksm=c0e6b5c6979d66a7d68336f561a5fe72e57e425f5ad94ca04129725fb3ba5592842269f4eb51&scene=0&xtrack=1#rd 100 | Thu, 05 Jun 2025 15:12:05 +0000 101 |
102 | 103 | <![CDATA[《ACS Nano》:彩色日间被动辐射制冷用光致发光核壳结构多孔纤维超织物]]> 104 |

文章标题:Photoluminescent Core−Shell Structural Porous Fibers-Based Metafabric for Colored Daytime Passi

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105 | http://mp.weixin.qq.com/s?__biz=MzkwOTIwODM1Ng==&mid=2247486998&idx=1&sn=dde0f21f91ee1cda94b9fd8e4eabf06a&chksm=c06c4dd899f4c88427fb7ef71cfe270b57b7d1543ec8a3a7a6af9f217502df6fd94d48efc610&scene=0&xtrack=1#rd 106 | Fri, 30 May 2025 12:53:09 +0000 107 |
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日本东京理工大学的研究人员开发出一种扁平状仿生机器鱼,并提出一种低成本、高准确性的路径估计和避障方法。开发小型低成本路径估计和避障方法,对仿生机器鱼顺利执行数据收集等任务至关重要。研究人员设计出新型仿

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38 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496290&idx=1&sn=e2f4ff778242260bb4a494fc90726d6b&chksm=eb5195df380d759db21ae3757e5873ceb063c70474a4860bdf2d2b0d4b4e67fb5490c9b4b4aa&scene=0&xtrack=1#rd 39 | Fri, 15 Mar 2024 07:00:22 +0000 40 |
41 | 42 | <![CDATA[采用机器学习和地理信息系统的雷区预测方法]]> 43 |

法国兰维奥克海军学院研究所、日本冲绳科学技术学院等机构的研究人员提出了一种地雷位置预测模型,可为排雷行动生成优化的资源分配方案。排雷行动前的相关调查较为危险且耗时。为降低此类任务的风险和时长,研究人员

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44 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496290&idx=2&sn=903b50d6727f78b88af98d722ceff7b0&chksm=eb5fb9aa633307d1c8a7e07e30de7e8ca56a4b210a299e04f855088e3ed395e63e1462ed9c56&scene=0&xtrack=1#rd 45 | Fri, 15 Mar 2024 07:00:22 +0000 46 |
47 | 48 | <![CDATA[多芯多功能海底光纤]]> 49 |

沙特阿拉伯阿卜杜拉国王科技大学的研究人员研发出多芯多功能光纤,实现了远距离实时海洋监测,同时减少对海洋的噪声污染。当前人类对深海的观测能力非常有限,如ARGO浮标的探测深度范围约为1000 m。研究人

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50 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496290&idx=3&sn=b77006e60e1e18a58cb77dac6f088a0e&chksm=eb0dd71700633f0182bb5976211f02ff739b57b9130cb11c8f8d131361819c93a214294e24a9&scene=0&xtrack=1#rd 51 | Fri, 15 Mar 2024 07:00:22 +0000 52 |
53 | 54 | <![CDATA[激光织构化制备防污耐蚀铝合金]]> 55 |

爱尔兰都柏林城市大学的研究人员通过对铝合金表面进行超快激光织构化处理,显著提升其防污和防腐蚀性能。通过激光织构化对铝合金表面改性可有效改善其防污和防腐蚀性能,但不同织构化图案对性能的影响尚不明确。研究

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56 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496290&idx=4&sn=34075e180639ed386bbee5e669bc2208&chksm=ebcd281205e74ee5e0ee23f8557311851b0d40302faf3060a21b713ab6ce9b72be9a3d84ad7e&scene=0&xtrack=1#rd 57 | Fri, 15 Mar 2024 07:00:22 +0000 58 |
59 | 60 | <![CDATA[锂离子电池负极固体电解质界面热稳定性研究]]> 61 |

受韩国国防采办计划管理局等资助,电子技术研究所分析了锂离子电池石墨和硅基负极上固体电解质界面(SEI)的形成机理。 与传统石墨负极相比,硅基负极具有比能高、充电快等优点,但界面热稳定性较差,且其表面S

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62 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496290&idx=5&sn=21c00942848e33fb07f41e765627bc9b&chksm=ebcf8fe03c0edfb59335ffaaee7cbc76ad8da9f8d9b936d1beac6f4f0520dc3c85d9f9d9c2db&scene=0&xtrack=1#rd 63 | Fri, 15 Mar 2024 07:00:22 +0000 64 |
65 | 66 | 67 | 68 | <![CDATA[多模态人机协作沟通策略]]> 69 | 70 | 71 |

美国陆军研究实验室和橡树岭联合大学的研究人员提出了一种采用语言、雷达和图像等数据的多模态人机沟通策略,有效提升了人机协作效率。人机协作执行远程探索任务时,在通信受限条件下维持相互理解至关重要。研究人员

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72 | 73 | 74 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496231&idx=1&sn=4629afcb5fc3b0b79e119e87a251e6de&chksm=eb719de7352407a132482af07891f759604eb1d8261927dae39f6d002ef5cc9915613c096d87&scene=0&xtrack=1#rd 75 | 76 | 77 | Fri, 08 Mar 2024 03:29:59 +0000 78 | 79 | 80 |
81 | 82 | 83 | 84 | <![CDATA[等离子体纳米间隙腔的中红外特性分析]]> 85 | 86 | 87 |

美国海军研究实验室的研究人员利用3D打印技术制造了金属-绝缘体-金属等离子体纳米间隙腔,并分析了其中红外特性。金属-绝缘体-金属等离子体结构已成为在深亚波长尺度限制电磁辐射的通用平台,可提供低损耗和强

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88 | 89 | 90 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496231&idx=2&sn=a54c8a1752941ed8f92fcd17f69ddcf6&chksm=eb96112068b49ded3a9adcf53a46581257a9afd35db8e8d11ba36a1ab44023d39922ea7e2a5f&scene=0&xtrack=1#rd 91 | 92 | 93 | Fri, 08 Mar 2024 03:29:59 +0000 94 | 95 | 96 |
97 | 98 | 99 | 100 | <![CDATA[可同时实现多种传感的3D打印电子皮肤]]> 101 | 102 | 103 |

美国德州农工大学的研究人员研制出一种柔性可拉伸电子皮肤,可同时感应应变、压力和温度变化。传统电子皮肤通常仅能感应单一刺激,无法模仿人类皮肤敏锐感应多种刺激。研究人员利用新型纳米水凝胶制备出3D打印电子

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104 | 105 | 106 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496231&idx=3&sn=18308a438bea3a7a18dbd0597d93f1f9&chksm=ebe7441a99091b6abaa79ace14bafcd008e135084b0a48fa82e88f51a23a200dc0452c7886a2&scene=0&xtrack=1#rd 107 | 108 | 109 | Fri, 08 Mar 2024 03:29:59 +0000 110 | 111 | 112 |
113 | 114 | 115 | 116 | <![CDATA[高自旋轨道转矩效率范德华异质结构]]> 117 | 118 | 119 |

美国海军研究实验室的研究人员制备了一种具有弱的层间相互作用的Bi2Se3/Fe3GeTe2范德华异质结构,可提高自旋轨道转矩(SOT)效率并使临界电流密度最小化。使用电学手段有效检测和控制磁性材料的自

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120 | 121 | 122 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496231&idx=4&sn=bab387a95d3d1c2fdd0717a3d20ba0d9&chksm=eb575442c6369992eb5bd72db5cd673c9731849a73a794688f39b1092b5658b477c066148caf&scene=0&xtrack=1#rd 123 | 124 | 125 | Fri, 08 Mar 2024 03:29:59 +0000 126 | 127 | 128 |
129 | 130 | 131 | 132 | <![CDATA[3D打印Ni-Cu合金组织分布预测]]> 133 | 134 | 135 |

受美国陆军研究署资助,德州农工大学、伍斯特理工学院和劳伦斯利弗莫尔国家实验室的研究人员将采用有限元的热模型和相场模型结合,精确预测了3D打印Ni-Cu合金的微观组织分布。 了解3D打印工艺参数(激光功

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136 | 137 | 138 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496231&idx=5&sn=a77638c28d0e3d268db81fd6043e03c0&chksm=eb58134cc8842de614822f733b05b02a837304b720e83e4ae63986bec0c148cb2b9a5c8d36c1&scene=0&xtrack=1#rd 139 | 140 | 141 | Fri, 08 Mar 2024 03:29:59 +0000 142 | 143 | 144 |
145 | 146 | 147 | 148 | <![CDATA[3D打印生物电子设备发展综述]]> 149 | 150 | 151 |

美国加州理工学院、新加坡南洋理工大学系统阐述了墨水直写3D打印技术在生物电子设备中的主要应用情况,并分析了当前面临的挑战。墨水直写具有选材范围广、成本低、打印分辨率高、打印速度快等优点,是制造生物电子

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152 | 153 | 154 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496173&idx=1&sn=fb589347f64092a1532ea1e3d49d6197&chksm=eb1845a0fd6facb0b7b28f941db575c798a3f9366b8f24634d592734668efaf740e41b51cd54&scene=0&xtrack=1#rd 155 | 156 | 157 | Tue, 27 Feb 2024 07:37:22 +0000 158 | 159 | 160 |
161 | 162 | 163 | 164 | <![CDATA[​利用凸优化方法实现无人系统避障]]> 165 | 166 | 167 |

受美国海军研究署资助,麻省理工学院的研究人员将凸优化方法引入无人系统运动轨迹规划,实现了在多障碍物环境下的有效避障。 在多障碍物环境下,高效运动轨迹规划对四旋翼无人机、机械臂、无人车等无人系统自主控制

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168 | 169 | 170 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496173&idx=2&sn=0e8aa6edee9eb3ba4eb28a82de06df86&chksm=ebc528f12e3198116b16cb8c49cd816d323aba5b0e2a8a3eb16e9e174085ecf20da011ede0d6&scene=0&xtrack=1#rd 171 | 172 | 173 | Tue, 27 Feb 2024 07:37:22 +0000 174 | 175 | 176 |
177 | 178 | 179 | 180 | <![CDATA[激光冲击强化对高温合金疲劳性能的影响]]> 181 | 182 | 183 |

韩国科学技术院的研究人员分析了激光冲击强化技术对Inconel 738低碳镍基合金(IN738LC)的常温和高温疲劳性能的影响。IN738LC是广泛用于燃气轮机涡轮叶片的高温合金,改善其常温和高温下的

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184 | 185 | 186 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496173&idx=3&sn=3df7f0766c22475c8b39306ad5ce626e&chksm=eb185556158897d5602a90ef640e03d81764530dc766c52357475211208bf129d2cf771896bf&scene=0&xtrack=1#rd 187 | 188 | 189 | Tue, 27 Feb 2024 07:37:22 +0000 190 | 191 | 192 |
193 | 194 | 195 | 196 | <![CDATA[具有长期水下稳定性的超疏水钛合金表面]]> 197 | 198 | 199 |

德国纽伦堡大学的研究人员在Ti-6Al-4V钛合金表面构建了新型超疏水表面,可在水下连续数月长期稳定使用。超疏水表面兼具微/纳米级粗糙度和低表面能,浸入水中时其表面的突触结构可捕获空气,是水下部件污损

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200 | 201 | 202 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496173&idx=4&sn=9c07e7dc680d78ca0bafa8a867edf025&chksm=eb8db8bfdabd3fc6cc32f17f4fcb68e4dfe84f044af8bc68602efcc855e19e8c8442168e5490&scene=0&xtrack=1#rd 203 | 204 | 205 | Tue, 27 Feb 2024 07:37:22 +0000 206 | 207 | 208 |
209 | 210 | 211 | 212 | <![CDATA[用于替代燃料设计的化学官能团优化器]]> 213 | 214 | 215 |

美国陆军研究实验室与伊利诺伊大学的研究人员研制出一种化学官能团优化器(CFGO),通过与传统燃料的官能团匹配设计替代燃料,无需考虑传统燃料的组成和燃烧性能。 替代燃料设计通常依赖于大量的实验试错,以获

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216 | 217 | 218 | http://mp.weixin.qq.com/s?__biz=MzI2ODE5MjEzOA==&mid=2247496173&idx=5&sn=bc2caeca190d4a1422a5e1408ecc8913&chksm=eb89724a2cb1f831b1afb7c3435d61f8f1257260ea6346e0251e072887414f03078978fdeaa0&scene=0&xtrack=1#rd 219 | 220 | 221 | Tue, 27 Feb 2024 07:37:22 +0000 222 | 223 | 224 |
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229 | -------------------------------------------------------------------------------- /channels/gh_0afb32197092.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[果壳硬科技]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5RvPO9hJADQsgr8CUoKf0mtodRc0o9oe180yrXpwQicgQ/132 10 | gh_0afb32197092 11 | 12 | 13 | <![CDATA[在青藏高原用“可降解材料”烟花炸了一座山,始祖鸟和蔡国强错在了哪儿?]]> 14 |

9月19日,户外品牌“始祖鸟”与艺术家蔡国强合作,在青藏高原腹地举办了一场名为“升龙”的烟花表演。据主办方介绍,表演是该品牌“向上致美”第三季的一部分,旨在通过艺术探索高山在地文化。表演位于西藏自治区

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15 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161703&idx=1&sn=4389a5e8c6f40e597a636a649756ca38&chksm=f1817fd24a38ff43f74661090ecbcb8822c6998bd89133b3de686a756f1690523e88d283f7e4&scene=0&xtrack=1#rd 16 | Sun, 21 Sep 2025 14:55:38 +0800 17 |
18 | 19 | <![CDATA[阅兵式上这些战机,是怎么做到“隐身”的?]]> 20 |

不反光、不外露、没有花里胡哨的外挂,连发动机轰鸣声似乎都没有了。它像一只静静翱翔的鸟,俯视着大地……在今天上午刚刚结束的纪念中国人民抗日战争暨世界反法西斯战争胜利80周年阅兵中,不知道你有没有注意到这

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21 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161701&idx=1&sn=7dc04b1c5c8def6382c0ea4c51b64ef2&chksm=f1c6721f2bba77d6b9957cb5154478d8eb591be200febabcbcf2fb435d8727514e8cffe6f266&scene=0&xtrack=1#rd 22 | Thu, 04 Sep 2025 12:55:21 +0800 23 |
24 | 25 | <![CDATA[这次阅兵式有多强?都在这15个关键词里了]]> 26 |

全国热热闹闹看大阅兵的时候,我们带你不仅看热闹,还能看出点门道。话不多说,以下15个关键词,请配合阅兵式直播使用。关键词一:直20本次阅兵最先亮相的装备是拉开帷幕的空中护旗梯队,它们是来自陆军航空兵的

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27 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161699&idx=1&sn=07e5ad702deef19bc160ba8bdca2cd5b&chksm=f1e5af1a8a3bf5172d6cfba4a30917c47ba7225fdfaf6647f218e59fc02279fb58f9edb47e2e&scene=0&xtrack=1#rd 28 | Wed, 03 Sep 2025 10:33:12 +0800 29 |
30 | 31 | <![CDATA[斩获数千万新融资、拿下北美巨头合作,星联未来打造AI宠物穿戴新范式]]> 32 |

未来光锥前沿科技基金投资项目“星联未来”近期宣布完成数千万人民币的Pre‑A轮融资,由零一创投领投。SATELLAI星联未来是一家总部位于深圳的出海公司,主要业务是为宠物研发智能项圈,团队核心成员包括

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33 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161697&idx=1&sn=1272bb793671aa31185d6b9e118aa2ea&chksm=f1c3e533a6752bce1f4eec27caaae7030d5510962f3c7700a23a7c8faeb33ac7a7c8451bc311&scene=0&xtrack=1#rd 34 | Thu, 31 Jul 2025 05:56:32 +0000 35 |
36 | 37 | <![CDATA[破解Circle百倍估值:为什么稳定币发行不是门好生意]]> 38 |

以下文章来源于金融狗奇遇记,作者曹乐玏短短5天,稳定币USDC发行商Circle的市值从69多亿涨超200亿美元。 Circle的涨幅,创始人Jeremiah和团队可能也没有想到。跟亚洲美元基金交流下

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39 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161689&idx=1&sn=76dfd15c0ca5198afde1d17de61c2619&chksm=f13c6ae1577d73be2685dfe4b1d267fd200e4f1f5abbcab40f73696b073cad384af0a28e18e4&scene=0&xtrack=1#rd 40 | Thu, 12 Jun 2025 02:48:25 +0000 41 |
42 | 43 | <![CDATA[2025年,能让人自动提肛的沙发在CES诞生]]> 44 |

★欢迎星标 果壳硬科技★2025年CES展会结束了,我们已经开始怀念它。和往年一样,今年的CES上出现了大量奇形怪状的机器人、越来越大的电视屏幕、花样繁多的保健康养器械。但今年还有两大品类比往年更突出

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45 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161685&idx=1&sn=13a807c72337de5a87836e4f4e6592a2&chksm=f157febd3b27b95ac1ded40a1e867e16834c0b2d2fa52f1c4c367803700b4fef7bb2c9ef7bf5&scene=0&xtrack=1#rd 46 | Tue, 21 Jan 2025 03:01:21 +0000 47 |
48 | 49 | <![CDATA[光锥投后动态丨星联未来CES首发AI+卫星通讯宠物可穿戴设备,获全球媒体关注]]> 50 |

1月10日,以“DIVE IN”主题的国际消费电子展(CES 2025)正式落下帷幕。本届展会,共有超 15 万行业人士和 4000 家参展商汇聚,展示前沿成果。由未来光锥前沿科技基金投资的SATEL

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51 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161667&idx=1&sn=5ec15815b56028838bcdd62c8d5a6890&chksm=f1dce6f0684d075b035d3e733dd6124595c7ef96ddd714b3bd66e73d0d8b18e67959a4b0dbf9&scene=0&xtrack=1#rd 52 | Mon, 13 Jan 2025 09:05:19 +0000 53 |
54 | 55 | <![CDATA[下一个“类比摇杆”式的交互革命在哪里?]]> 56 |

★欢迎星标 果壳硬科技★是否还记得,上一次空间移动设备革命是什么时候?是1996年6月23日,任天堂64(简称N64)发布,此后在N64上诞生了迄今为止评分最高的两款游戏《塞尔达传说 时之笛》和《超级

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57 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161657&idx=1&sn=4be9d97b3634ea418c325d6a71b0d73a&chksm=f13c207b22d211461ea6d3391bb0db6d17a6160db3f1cf150b19bd5079e595453ef037572990&scene=0&xtrack=1#rd 58 | Wed, 18 Dec 2024 05:43:04 +0000 59 |
60 | 61 | <![CDATA[富豪追捧的抗衰黑科技“外泌体”,到底是个啥?]]> 62 |

★欢迎星标 果壳硬科技★总体评价❌ 不推荐 ——对普通消费者来说,不推荐目前(截至2024年末)的自费外泌体疗法,无论是医美还是治疗其他疾病。❓ 建议观望后续研究——目前研究界在做的比较有谱的方向包括

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63 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161653&idx=1&sn=890ad77a5f445e4fb528d38a0d5bc3aa&chksm=f16a3263d7671fea1fc8b5b7fa916b7de5d7eb82a32298bb6496dea036d7b14e1d2c94aca95f&scene=0&xtrack=1#rd 64 | Thu, 12 Dec 2024 23:00:00 +0000 65 |
66 | 67 | <![CDATA[星联未来完成千万元天使轮融资,专注宠物AI智能硬件,未来光锥参与投资]]> 68 |

近日,星联未来宣布完成千万元天使轮融资,由未来光锥前沿科技基金、麟阁创投、零以创投共同投资。本轮融资将主要用于产品研发、团队扩展和市场推广。公司致力于将智能穿戴创新技术应用于宠物领域,重新定义真智能的

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69 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161607&idx=1&sn=984ed697a10b7a35edc5ee1829ab3908&chksm=f107080bc32c3f7f77c00ca3791e455e56ec3bef5a7c6538bc69d0b9feb2e050b021d8fe2e67&scene=0&xtrack=1#rd 70 | Thu, 12 Dec 2024 07:04:45 +0000 71 |
72 | 73 | <![CDATA[多半差评的《微软模拟飞行2024》,带来了XR的另一个突破口]]> 74 |

★欢迎星标 果壳硬科技★11月20日,《微软模拟飞行2024》正式发售,这款首发自1982年的游戏不负众望,迅速在Steam上喜提……多半差评。差评的原因主要来自游戏糟糕的优化:游戏鼠标隐形、游戏服务

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75 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161594&idx=1&sn=c972b7e410bab723acbea3d3bceb38c1&chksm=f14926f672275104876921bd0f897ea092b250ff53f868d82e86fdd7b036e737bc001e872b69&scene=0&xtrack=1#rd 76 | Fri, 29 Nov 2024 07:00:00 +0000 77 |
78 | 79 | <![CDATA[改造基因、克隆无脑人,富豪在洪都拉斯打造长生岛]]> 80 |

去年,为了逆转衰老,美国富豪企业家布莱恩·约翰逊(Bryan Johnson)曾做出了一个轰动世界的尝试——把自己的血浆换给了70岁的父亲,又把17岁儿子的血浆输到了自己身体里。右边是布莱恩·约翰逊,

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81 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161577&idx=1&sn=c0cd0a61784a09f828d6ec18fb622196&chksm=f1cb5aec31714d38084ed748ec531ca3ab33898d9c6bf965f3e59fba2eb26fb63900e6f0f053&scene=0&xtrack=1#rd 82 | Tue, 26 Nov 2024 01:09:32 +0000 83 |
84 | 85 | <![CDATA[会不会有一天,我们能把XR焊死在脑袋上?]]> 86 |

★欢迎星标 果壳硬科技★今天打开大部分VR相关的报道,实际上新闻只跟两件事相关——硬件和游戏。图片来源:uploadvr这种状况在Apple Vison Pro展现了兼容iPad应用程序、兼容Magi

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87 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161553&idx=1&sn=bf8850ba8a6f002786bd725b3cfc5660&chksm=f1638dddc3f63ad4e1dbb555b2bccb98863d5e348de76ccbdc6fb4c074dcaeae09e1c2e54f1b&scene=0&xtrack=1#rd 88 | Fri, 22 Nov 2024 10:41:03 +0000 89 |
90 | 91 | <![CDATA[过去这个周末,所有创客都在深圳了]]> 92 |

★欢迎星标 果壳硬科技★“撒尿!撒尿!”旁边的两个小孩不断调整口音,力求最标准地喊出“撒尿”两个字。终于,桌上的机器狗缓缓抬起一只后腿,做出了狗狗撒尿的动作。与机器狗同出一家的桌面机器猫,同样能执行“

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93 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161538&idx=1&sn=1cf1574de7f6a6be0289e823633525c1&chksm=f167c6a4bb5fe98dad142d8f9d9ab17bb736ff965d4d3d603fa7eff1f0859b0d249160ae8dc6&scene=0&xtrack=1#rd 94 | Thu, 21 Nov 2024 08:43:38 +0000 95 |
96 | 97 | <![CDATA[闪极科技获数千万元A轮融资,将推国内首款量产AI拍摄眼镜,未来光锥跟投]]> 98 |

果壳 CEO、未来光锥前沿科技基金创始合伙人姬十三表示,“在国内AI拍摄眼镜大战中,闪极已获得先机,将成为实际上的首个量产品牌,也是为数不多的获得市场化资金认可的创业公司。AI 硬件是这一轮 AI 2

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99 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161501&idx=1&sn=1a531379346832c43d9fb68d13d1ff5e&chksm=f138d66b3831a27b9433166b208c49ade923ba4a671b44ccfecbf2db24209ff2eae8b7943aa6&scene=0&xtrack=1#rd 100 | Wed, 20 Nov 2024 06:30:00 +0000 101 |
102 | 103 | <![CDATA[美国总统大选开始“开奖”,我们做了一份观赛指南]]> 104 |

★欢迎星标 果壳硬科技★四年一度的美国大选就在今天。11月的第一个周二,也就是今年11月5日是大选日,在总共2.44亿美国选民中,预计有超过1.6亿美国选民会在今天投票。2024年的美国大选不仅要决定

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105 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161487&idx=1&sn=3683d9c5cb1014b3f92de4654b6cc708&chksm=f1d6db659fabd5bd51496cbd6087392022e7434ff38c4906c7ff3fc0633b74244fa179fbcf47&scene=0&xtrack=1#rd 106 | Wed, 06 Nov 2024 01:43:04 +0000 107 |
108 | 109 | <![CDATA[谁给XR指了历史上最大一段弯路?]]> 110 |

★欢迎星标 果壳硬科技★在Meta公布了Orion之后,似乎有两件事,终于有了眉目:XR产品以怎样的姿态进入到消费级、家用的市场:以眼镜饰品+部分接管手机功能的形式。2. XR产品的杀手级功能:AI助

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111 | http://mp.weixin.qq.com/s?__biz=MzIyNDA1MjExMQ==&mid=2650161462&idx=1&sn=299401e390dbfd19ec9b3de4b18e2c12&chksm=f16025f25c990cf86657537d9ed523ad0fead0361d7c17654de6dcc6ae0022dbb3eb3462300e&scene=0&xtrack=1#rd 112 | Fri, 01 Nov 2024 12:18:28 +0000 113 |
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-------------------------------------------------------------------------------- /channels/gh_33c91ab19c4f.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | <![CDATA[计算机视觉联盟]]> 9 | 10 | 11 | https://mp.weixin.qq.com/ 12 | 13 | 14 | 15 | 16 | 17 | zh-cn 18 | 19 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM69174LQyFpd23kNUZCHxLD3zDuyp7Kf37bvicRO8FzqzA/132 20 | gh_33c91ab19c4f 21 | 22 | 23 | 24 | 25 | 26 | 27 | 28 | 29 | 30 | 31 | 32 | 33 | 34 | 35 | 36 | 37 | 38 | 39 | 40 | <![CDATA[差分Transformer竟能消除注意力噪声]]> 41 |

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42 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564179&idx=1&sn=8622eb7f425279c406d57bf0cfe8d87f&chksm=fdee5ba788587fdc19f6346709c8adc89e2971638b9a95498fc1cb9103e838fa0c80dc00d18c&scene=0&xtrack=1#rd 43 | Thu, 10 Oct 2024 10:01:00 +0000 44 |
45 | 46 | 47 | 48 | <![CDATA[重磅!2025泰晤士世界大学排名公布]]> 49 | 50 | 51 |

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52 | 53 | 54 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564150&idx=1&sn=cd1f0c0d207b07a26154cb6dc2d10b85&chksm=fda2c9d170a7230b88c7983cbbc1873f74d809887d1b9cd29c89b4f205d2d128ca495684d555&scene=0&xtrack=1#rd 55 | 56 | 57 | Wed, 09 Oct 2024 10:01:00 +0000 58 | 59 | 60 |
61 | 62 | 63 | 64 | <![CDATA[重磅!MIT清华校友全新方法优化Transformer]]> 65 | 66 | 67 |

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68 | 69 | 70 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564139&idx=1&sn=6d9b915f451840df9c810a951eea2b87&chksm=fd2ce4c09d2aaa4d910f0d4256aa2b9f6f229e8f8e18c47252d0a2ea03aa762661828d29c8ba&scene=0&xtrack=1#rd 71 | 72 | 73 | Tue, 08 Oct 2024 10:01:00 +0000 74 | 75 | 76 |
77 | 78 | 79 | 80 | <![CDATA[ECCV 2024 | 新梦幻场景生成方法,高质量、视角一致、可编辑3D场景]]> 81 | 82 | 83 |

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84 | 85 | 86 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564103&idx=1&sn=9bd0bb1b70f3985192303fddab4723cd&chksm=fdc2718461603642e10a857551ba4f37656f7d54f1419530767f9a62a76a5f6aba2066b88e11&scene=0&xtrack=1#rd 87 | 88 | 89 | Mon, 07 Oct 2024 10:01:00 +0000 90 | 91 | 92 |
93 | 94 | 95 | 96 | <![CDATA[教育部任免!985杰青副校长,任211校长!]]> 97 | 98 | 99 |

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100 | 101 | 102 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564082&idx=1&sn=60513bf8b583945e85a858eeed5ddbae&chksm=fdad9212bea581884090b075fb90ea460efc240499d19e60d4e44b66702a895a0d33e23fe0d1&scene=0&xtrack=1#rd 103 | 104 | 105 | Fri, 27 Sep 2024 10:01:00 +0000 106 | 107 | 108 |
109 | 110 | 111 | 112 | <![CDATA[姚期智院士大模型新研究:思维图DoT]]> 113 | 114 | 115 |

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116 | 117 | 118 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564072&idx=1&sn=e66d0ff09116fdceb99e6335a7b7e9c7&chksm=fd03cd672b68959eaa565e85bfced41c987d24be94968fd68460c2bb097e7ceb51d9fe0dfe36&scene=0&xtrack=1#rd 119 | 120 | 121 | Thu, 26 Sep 2024 10:01:00 +0000 122 | 123 | 124 |
125 | 126 | 127 | 128 | <![CDATA[ECCV 2024 | 首次基于深度聚类的多模态融合]]> 129 | 130 | 131 |

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132 | 133 | 134 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247564047&idx=1&sn=c53016012c913f91f5eddf031a969a3c&chksm=fdf6152273f5a7e6cbf4cecc93219702f7d616bb8934aa94cb30dc16704d18507bb113941cad&scene=0&xtrack=1#rd 135 | 136 | 137 | Wed, 25 Sep 2024 10:01:00 +0000 138 | 139 | 140 |
141 | 142 | 143 | 144 | <![CDATA[TOP200!最新大学ESI排名数据,来了]]> 145 | 146 | 147 |

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148 | 149 | 150 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563966&idx=1&sn=dcbf2dda8ab75512974dbbccfa629b6c&chksm=fded02e7526bcc6a79af2110abb29935c5d61999e56246789596959f855c4568a759b860d62b&scene=0&xtrack=1#rd 151 | 152 | 153 | Mon, 23 Sep 2024 10:01:00 +0000 154 | 155 | 156 |
157 | 158 | 159 | 160 | <![CDATA[Mamba+Transformer混合架构多模态大模型]]> 161 | 162 | 163 |

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164 | 165 | 166 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563955&idx=1&sn=a881c2abd1cd631e154fed6d5b87b362&chksm=fd56a55cac4913053000e1845296d2dfcee062124516dd128c80d308f78b37787f87986820a3&scene=0&xtrack=1#rd 167 | 168 | 169 | Sat, 21 Sep 2024 10:01:00 +0000 170 | 171 | 172 |
173 | 174 | 175 | 176 | <![CDATA[一院士名单,公布]]> 177 | 178 | 179 |

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180 | 181 | 182 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563933&idx=1&sn=23e02445fe72b12b3258e7c91afc4c06&chksm=fde1f984ea3a7ed7cde69706e7cf6358d22926b20741d270f5cd99cb0bea720cca7f7d9f5d8b&scene=0&xtrack=1#rd 183 | 184 | 185 | Fri, 20 Sep 2024 10:01:00 +0000 186 | 187 | 188 |
189 | 190 | 191 | 192 | <![CDATA[KAN结合Transformer,、解决扩展缺陷的KAT]]> 193 | 194 | 195 |

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196 | 197 | 198 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563917&idx=1&sn=d9a7344428ba001d66236f17a7c7f433&chksm=fdcd550e4f697206e854f49b18647e7a613ddabb207df0e70eb8dc1b4a26d6f53227f28e92ea&scene=0&xtrack=1#rd 199 | 200 | 201 | Thu, 19 Sep 2024 10:01:00 +0000 202 | 203 | 204 |
205 | 206 | 207 | 208 | <![CDATA[ECCV 2024 | 端到端图像地理定位大模型]]> 209 | 210 | 211 |

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212 | 213 | 214 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563887&idx=1&sn=47041351c05bb7c9714f5b61fe643453&chksm=fdac386d361f46f81fed415213b689493cca4764505bbd0a83082524b5146940ff2802e40dcb&scene=0&xtrack=1#rd 215 | 216 | 217 | Wed, 18 Sep 2024 10:01:00 +0000 218 | 219 | 220 |
221 | 222 | 223 | 224 | <![CDATA[985高校,迎新常务副校长!]]> 225 | 226 | 227 |

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228 | 229 | 230 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563867&idx=1&sn=211c746f653faaa3b2c33b42cbebafaf&chksm=fd8ac9d8d89014c046013f55d2db6aaa7713f1092e97e1ad36ce348a178146363a8b220023e8&scene=0&xtrack=1#rd 231 | 232 | 233 | Tue, 17 Sep 2024 10:01:00 +0000 234 | 235 | 236 |
237 | 238 | 239 | 240 | <![CDATA[三维视觉新范式:深度解析]]> 241 | 242 | 243 |

2024 年伊始,浙江大学与理想汽车的研发团队提出了一种名为Street Gaussians的模型化方法,该方法主要用于动态城市场景建模,通过动静合成能力实现场景仿真。与《三维视觉新范式:深度解析Ne

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244 | 245 | 246 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563856&idx=1&sn=50429a94f3e8d31fcd0dcbf8443017e4&chksm=fd4b21d6b59327a0ec171c278c83710967016ea4ba08b0d0750cd9144a470542985cabd158f3&scene=0&xtrack=1#rd 247 | 248 | 249 | Fri, 13 Sep 2024 10:01:00 +0000 250 | 251 | 252 |
253 | 254 | 255 | 256 | <![CDATA[211高校,迎来新校长!]]> 257 | 258 | 259 |

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260 | 261 | 262 | http://mp.weixin.qq.com/s?__biz=MzU2NTc5MjIwOA==&mid=2247563844&idx=1&sn=42fc33d6879661930369d190b4aca903&chksm=fd33e7f29d311c12515c954a26980092f0be768b6556a15b3ceb4c41a2434458081d80526e75&scene=0&xtrack=1#rd 263 | 264 | 265 | Wed, 11 Sep 2024 10:01:00 +0000 266 | 267 | 268 |
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273 | -------------------------------------------------------------------------------- /channels/gh_6c5e9f1c0d2e.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[铁死亡Club]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM7taBBrvEC27x93ldKTNBzTGe06X3grPPkicedTRBCqzgQ/132 10 | gh_6c5e9f1c0d2e 11 | 12 | 13 | <![CDATA[新年喜报|王福俤/吴钰祥封面综述登顶Top 5高引论文榜单!]]> 14 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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15 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488428&idx=1&sn=17871e3440d89db6ecd018c33ef9b7fa&chksm=c002192797ddb07e74c6ef6d3802ffaaae13cb8946e32abb926ad038b36a62bef788d2e97514&scene=0&xtrack=1#rd 16 | Thu, 18 Dec 2025 16:29:08 +0800 17 |
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关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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21 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488414&idx=1&sn=b077688b3514f8f1f99fc89fcdde2816&chksm=c0f9529f248f46086b9715800ce082961249a9fc5c46a2ac757e27a42ca08e54779c59e45b49&scene=0&xtrack=1#rd 22 | Tue, 16 Dec 2025 09:27:37 +0800 23 |
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关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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27 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488409&idx=1&sn=28932724fceadcbba80f2068d8b66158&chksm=c0949dc63ff50930af0a80a1aca78bdf6261f03d2a6d183d0a34a63f82db4acf56c46e6b4d76&scene=0&xtrack=1#rd 28 | Sun, 14 Dec 2025 09:34:39 +0800 29 |
30 | 31 | <![CDATA[科研速读|Cell重磅:铁死亡进入全新领域——铁死亡导致人类大脑神经元丢失,为痴呆症治疗打开新思路]]> 32 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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33 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488397&idx=1&sn=1b7b3653fa59ac970be6fb006b4e14dc&chksm=c07182821f6b4d4d146f4fdd7ec1c057eaa86217984d4099ecaf8c7ac7e19281870dbec89ace&scene=0&xtrack=1#rd 34 | Fri, 12 Dec 2025 09:53:12 +0800 35 |
36 | 37 | <![CDATA[【专家观点】Element:对乙酰氨基酚与自闭症关联-存在科学证据鸿沟,自闭症更需科学关注!]]> 38 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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39 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488392&idx=1&sn=5953baa1c3b78fb9b383a3c908f2a93b&chksm=c0c60163f003c5b7e9ddd9aa24d5abe5d5f017a776f641879fd71d9282a4b21ccdd518a88494&scene=0&xtrack=1#rd 40 | Tue, 18 Nov 2025 17:02:25 +0800 41 |
42 | 43 | <![CDATA[会议通知|ISZB 2026 – Call for Abstracts]]> 44 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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45 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488388&idx=1&sn=4128876209bd4db0cd7a073af946f9aa&chksm=c0e73e13bae5e798d8e96fa7bf8f86a65b3dafa2913067bd2a09f6afd5f478f08c7afd2fd015&scene=0&xtrack=1#rd 46 | Thu, 06 Nov 2025 09:59:42 +0800 47 |
48 | 49 | <![CDATA[“医学前沿与健康促进会”在京召开,聚焦环境暴露、重大慢病与先进技术融合]]> 50 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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51 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488382&idx=1&sn=54c58b7d285e9530f3dd184f734daedc&chksm=c0307b27a6a090d0c2f0022a90db1ba74179432b7cb4f5e579f49175a49e8ab1c9fcfaa70c97&scene=0&xtrack=1#rd 52 | Fri, 24 Oct 2025 21:10:11 +0800 53 |
54 | 55 | <![CDATA[王福俤主编-Element 根基·元素 | OAE新刊正式起航]]> 56 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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57 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488376&idx=1&sn=540c7d3c76cc9eefbf3880ba598d3964&chksm=c045ac16c227248493eedf95de74babe0a2ea3293e234bdffc3cbb9f3a6799fa20699568f540&scene=0&xtrack=1#rd 58 | Wed, 01 Oct 2025 18:07:11 +0800 59 |
60 | 61 | <![CDATA[喜讯|浙江大学王福俤教授团队荣获2024年度中华医学科技奖]]> 62 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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63 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488361&idx=1&sn=00ffc9c26a99f5e209549d9ab95fe11c&chksm=c0568aece007dcddde9970282830f0bc77dd3747a0741985146b59ea809a03c6dc3d3ac28684&scene=0&xtrack=1#rd 64 | Thu, 25 Sep 2025 15:34:41 +0800 65 |
66 | 67 | <![CDATA[铁学团队封面#31丨王福俤的铜科学成果再度登上Science Bulletin封面,法国居里研究所学者高度评价]]> 68 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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69 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488359&idx=1&sn=bc05627e1b647d10c9e0237120c50006&chksm=c0ace8886322f5db22ca83202cce41562007e9b2ec1ed23c5c4f089167f064f2b765d6401727&scene=0&xtrack=1#rd 70 | Wed, 24 Sep 2025 15:48:50 +0800 71 |
72 | 73 | <![CDATA[锌成果|PNAS: 王福俤/闵军霞团队发现肾脏疾病治疗新靶点和新策略]]> 74 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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75 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488336&idx=1&sn=378c9242b74110a4dab9c61ba003d22f&chksm=c0aab37bf18b12a08f5c4f1c80ea2411c337c75a808c45d4f7555a3aea3693e1774f65866abe&scene=0&xtrack=1#rd 76 | Wed, 17 Sep 2025 12:51:25 +0800 77 |
78 | 79 | <![CDATA[特邀综述|BMC Biology:铁死亡在人类健康与疾病中的作用]]> 80 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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81 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488310&idx=1&sn=cc3385c2f721e11e9b46e0dac7409f26&chksm=c0fa757913f7242ad1b217c44e46e7ae15ee6bec28a194fbf02112116ac711e7cff2d4641a1d&scene=0&xtrack=1#rd 82 | Tue, 16 Sep 2025 18:18:35 +0800 83 |
84 | 85 | <![CDATA[铁成果|男性为何容易肾损伤?最新Nature论文证实,雌激素可抵抗铁死亡及其所致的急性肾损伤]]> 86 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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87 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488290&idx=1&sn=14a8b90d90e1d403fb08281522cd8787&chksm=c03e45542f059452021bbeaae29aaa0e2525e9d554c279ecdbe297a1464092b579ce63d52b19&scene=0&xtrack=1#rd 88 | Mon, 18 Aug 2025 09:41:57 +0800 89 |
90 | 91 | <![CDATA[欢迎参会交流|成都:铁死亡及铁科学新时代]]> 92 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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93 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488285&idx=1&sn=ce23ef1fa54e25fb2215d0ed8f618c9c&chksm=c0c9e7252a0f44b5c07f790a2ae06fcd19df0a861a12d1e7ff10c50ac1a44227983608982fd9&scene=0&xtrack=1#rd 94 | Thu, 31 Jul 2025 02:32:05 +0000 95 |
96 | 97 | <![CDATA[特邀综述|铁-心血管健康的双刃剑]]> 98 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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99 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488264&idx=1&sn=60dd367e64f2de46f15139ec6c7694fe&chksm=c0758f481ec667828ec87ffc8dde6b2b4620402b010cedc3485136db4fceb0d582f77f24cc6c&scene=0&xtrack=1#rd 100 | Sun, 27 Jul 2025 09:18:58 +0000 101 |
102 | 103 | <![CDATA[虚位以待|王福俤&闵军霞铁科学团队招聘博士后,加速你的科研梦想!]]> 104 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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105 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488252&idx=1&sn=654cd288f1da8a1104ac38d388a1968c&chksm=c0b437d61c3cbc80f971f7ca99f0fe485d7f23c1defa800281c6c66155d4d25db4e2172638e3&scene=0&xtrack=1#rd 106 | Sat, 12 Jul 2025 08:10:00 +0000 107 |
108 | 109 | <![CDATA[铁科学团队封面#30丨Bone Research: 灵蛇衔福-解锁铁死亡防治肌肉疾病]]> 110 |

关于我们铁死亡Club公众号为铁死亡科学家联盟(全球)官方公众号。联盟由213位铁死亡领域教授PI组成的学术委员会、中国生物物理学会生物微量元素分会及3000余位热爱铁死亡科教的教师/博士后/研究生协

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111 | http://mp.weixin.qq.com/s?__biz=MzkxMTE4MDQxMQ==&mid=2247488238&idx=1&sn=b6930cb6cc128fb076557c252fa07f91&chksm=c0cdda855f6a2a2058ae90b967e5b98917c420b3658c87603b75359a5d544614db3b1e337647&scene=0&xtrack=1#rd 112 | Thu, 29 May 2025 12:54:52 +0000 113 |
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-------------------------------------------------------------------------------- /channels/gh_6fec50c6ef0d.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | <![CDATA[AI公园]]> 9 | 10 | 11 | https://mp.weixin.qq.com/ 12 | 13 | 14 | 15 | 16 | 17 | zh-cn 18 | 19 | 20 | 21 | 22 | 23 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM6ndXePbCthicHibpI3ZkO3Xz3tk8Fg6yfq3NnVRmqD5t9Q/132 24 | 25 | 26 | gh_6fec50c6ef0d 27 | 28 | 29 | 30 | 31 | 32 | 33 | 34 | 35 | 36 | 37 | 38 | 39 | 40 | 41 | 42 | 43 | 44 | 45 | 46 | 47 | <![CDATA[D-FINE:在DETR中将回归任务作为分布来细化]]> 48 |

导读我们的方法显著增强了各种DETR模型的性能,最多提高了5.3% 的AP,而额外的参数和训练成本几乎可以忽略不计。摘要我们介绍了D-FINE,这是一种强大的实时目标检测器,通过重新定义DETR模型中

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49 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498495&idx=1&sn=a9aa12008f57082895bfc8b42ad32fde&chksm=c17ccd7278136ac3a83423ba3e35c4eb33f6be14e7ddd8dd3cd09018d0a8794bea3cc6cab8d3&scene=0&xtrack=1#rd 50 | Tue, 14 Jan 2025 02:00:00 +0000 51 |
52 | 53 | 54 | 55 | <![CDATA[InfoBatch:通过无偏数据裁剪来加速并实现无损训练]]> 56 | 57 | 58 |

导读作为一个即插即用且架构无关的框架,InfoBatch在分类、语义分割、视觉预训练以及指令微调任务上始终能够获得无损训练结果。摘要数据裁剪旨在以较低的整体成本获得无损性能。一种常见的方法是过滤掉对训

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59 | 60 | 61 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498472&idx=1&sn=804589202fbe15dc92bba63dfcea6e57&chksm=c1e7998771d8c52f92947bbc601eb273ad44baae1d78cf02790ab2d2db45a779fbd9c1989cde&scene=0&xtrack=1#rd 62 | 63 | 64 | Mon, 13 Jan 2025 02:00:00 +0000 65 | 66 | 67 |
68 | 69 | 70 | 71 | <![CDATA[DEIM: 在DETR中使用多对一匹配的策略加快收敛]]> 72 | 73 | 74 |

导读与RT-DETRv2配合使用时,DEIM仅需在NVIDIA 4090 GPU上训练一天就能达到53.2%的平均精度(AP)。摘要我们介绍了一种名为DEIM的创新且高效的训练框架,旨在加速基于Tra

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75 | 76 | 77 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498443&idx=1&sn=cabe520445f6798c1b832320a585c08f&chksm=c1aa27898ed909094f8f6ea6f79e05c08490528673ab9d44088a3eea44e5f16f7caf0cd6fff8&scene=0&xtrack=1#rd 78 | 79 | 80 | Fri, 03 Jan 2025 01:00:00 +0000 81 | 82 | 83 |
84 | 85 | 86 | 87 | <![CDATA[Frozen-DETR: 使用冻结的基础大模型来增强DETR的能力]]> 88 | 89 | 90 |

导读通过这种新颖的范式,我们在COCO验证集上,使用R50作为检测器的主干网络并训练12个epoch后,分别整合一个或两个基础模型,将最先进的基于查询的检测器DINO的AP(平均精度)从49.0%提升

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91 | 92 | 93 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498422&idx=1&sn=482f670922af4a4d5275d81cccb6bf58&chksm=c1cf65e7745e9cb9a67522ed9fa51304f281cda94ea1447a6f954c2c95a9857978e0bbc38076&scene=0&xtrack=1#rd 94 | 95 | 96 | Tue, 24 Dec 2024 01:00:00 +0000 97 | 98 | 99 |
100 | 101 | 102 | 103 | <![CDATA[基于拓扑集合约束的动态蛇形卷积用于准确分割管状结构,如血管和道路]]> 104 | 105 | 106 |

导读在本研究中,我们注意到管状结构的特殊性,并利用这一知识指导我们的DSCNet同时在三个阶段增强感知能力:特征提取、特征融合和损失约束。摘要准确分割拓扑管状结构,如血管和道路,在各个领域中至关重要,

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107 | 108 | 109 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498398&idx=1&sn=d0ce30dd732e0b335d040830e1adc877&chksm=c17e0ad3fd0492ed520ccb582afd1646d4b8982d9ac72b45cd3fed1a525514b137a3ed4ef93f&scene=0&xtrack=1#rd 110 | 111 | 112 | Mon, 11 Nov 2024 04:00:00 +0000 113 | 114 | 115 |
116 | 117 | 118 | 119 | <![CDATA[LDConv:线性可变形卷积,将参数数量增长修正为线性增长]]> 120 | 121 | 122 |

导读LDConv将标准卷积和可变形卷积的参数数量增长趋势修正为线性增长。摘要基于卷积操作的神经网络在深度学习领域取得了显著的成果,但标准卷积操作存在两个固有的缺陷。一方面,卷积操作局限于局部窗口,因此

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123 | 124 | 125 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498368&idx=1&sn=356ffd50dc47d4250912dd4f22f06fdb&chksm=c118e0d63e33b3777ffdc8fce695b2edc176c2d107025286e8daa07e40240c026040f0f88e3b&scene=0&xtrack=1#rd 126 | 127 | 128 | Thu, 07 Nov 2024 04:00:00 +0000 129 | 130 | 131 |
132 | 133 | 134 | 135 | <![CDATA[基于拓扑几何约束的动态蛇形卷积用于管状结构分割]]> 136 | 137 | 138 |

导读在本研究中,我们注意到管状结构的特殊性,并利用这一知识指导我们的DSCNet同时在三个阶段增强感知能力:特征提取、特征融合和损失约束。摘要准确分割拓扑管状结构,如血管和道路,在各个领域中至关重要,

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139 | 140 | 141 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498342&idx=1&sn=9d70e5f0d61686e2cd342a2a56e93ee5&chksm=c15fef4f527d3a6ccf168aa7325e7f7df6855fd369fcb283988e274f5e0308bf21363d159ef5&scene=0&xtrack=1#rd 142 | 143 | 144 | Wed, 06 Nov 2024 04:00:00 +0000 145 | 146 | 147 |
148 | 149 | 150 | 151 | <![CDATA[使用不确定性来进行大规模数据集裁剪]]> 152 | 153 | 154 |

导读我们提出了一种简单而有效的数据集裁剪方法,该方法通过探索预测的不确定性以及训练的动力学特性。广泛的实验结果表明,我们的方法超越了现有技术,并在ImageNet-1K和ImageNet-21K上实现

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155 | 156 | 157 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498317&idx=1&sn=bf2d3530f99304be3a3b249634ea6128&chksm=c1565d85e1b8ebc13f8a95ebf13cdcfff27b0a64008db3a3c19993459feb6485ba5f82046f1a&scene=0&xtrack=1#rd 158 | 159 | 160 | Tue, 05 Nov 2024 04:00:00 +0000 161 | 162 | 163 |
164 | 165 | 166 | 167 | <![CDATA[数据裁剪在目标ReID上的应用方法,减少35%数据量,几乎不影响准确率(<0.1%)]]> 168 | 169 | 170 |

导读通过充分利用训练过程中的logit历史记录,我们的方法提供了一个更准确和全面的量化样本重要性的指标,同时还能纠正错误标记的样本和识别异常值。此外,我们的方法具有很高的效率,相比于现有方法,它能够将

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171 | 172 | 173 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498298&idx=1&sn=b32985f5d0b681fdd52944c697993db8&chksm=c1cf5a6f20db5a3b7c35dd92eda2a6195c3fcc4202e3b0910ec057beaceb7d50bc970b74690c&scene=0&xtrack=1#rd 174 | 175 | 176 | Mon, 04 Nov 2024 04:00:00 +0000 177 | 178 | 179 |
180 | 181 | 182 | 183 | <![CDATA[并不是所有数据都有用:一种端到端的自适应数据集裁剪框架,可以提升模型表现和效率]]> 184 | 185 | 186 |

导读即使在裁剪高达10-30%的训练数据之后,AdaPruner仍能显著提高模型性能。值得注意的是,这些改进伴随着内存和计算成本的大幅节省。定性和定量实验表明,AdaPruner在很大程度上优于其他最

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187 | 188 | 189 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498276&idx=1&sn=22b5ad8db4f9ef8cd9325bb7f72181b6&chksm=c1bceed8a64e5cbf0ef26542102bb10b3858ada13ae1b002093d0f0a9965333bc7c9c9eb47ae&scene=0&xtrack=1#rd 190 | 191 | 192 | Fri, 01 Nov 2024 04:00:00 +0000 193 | 194 | 195 |
196 | 197 | 198 | 199 | <![CDATA[数据集裁剪:通过检查泛化能力的影响来裁剪数据集]]> 200 | 201 | 202 |

导读所提出的方法在CIFAR-10数据集上修剪了40%的训练样本,使收敛时间减半,同时测试准确率仅降低了1.3%,这一表现优于之前的基于评分的样本选择方法。摘要深度学习的巨大成功在很大程度上依赖于日益

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203 | 204 | 205 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498252&idx=1&sn=e3d0b3dc8cde0fabe65fd5207953814f&chksm=c1c729023f86237d9931f12dd07c19cbadb7e205300dda1cedbe2d59c4bc109c957fd8895a68&scene=0&xtrack=1#rd 206 | 207 | 208 | Thu, 31 Oct 2024 04:00:00 +0000 209 | 210 | 211 |
212 | 213 | 214 | 215 | <![CDATA[超越scaling laws:通过数据裁剪来降低资源消耗,同时不影响甚至提升模型效果]]> 216 | 217 | 218 |

导读本文关注的是错误率随数据集规模的变化,并展示理论上如果能够获得一个高质量的数据裁剪度量标准,该标准可以对应该丢弃哪些训练样本以达到任何裁剪后的数据集大小进行排序,我们就可以超越幂律缩放,甚至可能将

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219 | 220 | 221 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498218&idx=1&sn=a5a4ba0141a9aa6f6f142dde145b2e85&chksm=c18986cf1e145626f67a95815073e1dd4645a4950f3631fa0a7e82fbda8e6b3866f1ba2c3855&scene=0&xtrack=1#rd 222 | 223 | 224 | Wed, 30 Oct 2024 04:00:00 +0000 225 | 226 | 227 |
228 | 229 | 230 | 231 | <![CDATA[ESOD:在高分辨率图上进行小目标检测的高效方法]]> 232 | 233 | 234 |

导读在本文中,我们提出了重用检测器主干网络来进行特征级别的目标搜索和区域切割的方法,这可以避免冗余的特征提取并降低计算成本。结合一个稀疏检测头,我们能够对高分辨率输入(例如1080P或更高)上的小物体

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235 | 236 | 237 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498205&idx=1&sn=dfa85092f2c05f05b482d4a74191cf5b&chksm=c11a66c15457a259b6384c2430b41adb2a72d14c2cb7d60b7866f9d3b6dd37816a2219e5e654&scene=0&xtrack=1#rd 238 | 239 | 240 | Tue, 29 Oct 2024 04:00:00 +0000 241 | 242 | 243 |
244 | 245 | 246 | 247 | <![CDATA[理解DETR应用到自然图像和医疗图像之间的差异]]> 248 | 249 | 250 |

导读我们的分析表明,来自自然图像领域的常用设计选择,如复杂的编码器架构、多尺度特征融合、查询初始化和迭代边界框精炼,并未改善,有时甚至削弱了医学影像中的目标检测性能。相反,更简单和更浅层的架构通常能达

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251 | 252 | 253 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498162&idx=1&sn=fbd626583525a7d23841bc1561ba315e&chksm=c1e3b21fdc51339e3be1d84f6ec8a1057b0a216e4928b3ca78dcb8142747edcb3cef81266e5a&scene=0&xtrack=1#rd 254 | 255 | 256 | Mon, 28 Oct 2024 04:00:00 +0000 257 | 258 | 259 |
260 | 261 | 262 | 263 | <![CDATA[Grounding DINO:将DINO与有基础的预训练相结合以实现开放集目标检测]]> 264 | 265 | 266 |

导读Grounding DINO在COCO零样本检测基准上达到了52.5的平均精度(AP)。它在ODinW零样本基准上创下了平均26.1 AP的新纪录。摘要在本文中,我们开发了一种开集目标检测器,称为

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267 | 268 | 269 | http://mp.weixin.qq.com/s?__biz=Mzg5ODAzMTkyMg==&mid=2247498139&idx=1&sn=c03923c5a4c227682a551e756144593f&chksm=c16ea61769bce3d9515365667622ed3ab8ab664c55edf91f3ca122c9721673b5de39a7e6eac7&scene=0&xtrack=1#rd 270 | 271 | 272 | Fri, 25 Oct 2024 04:00:00 +0000 273 | 274 | 275 |
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277 | 278 | 279 |
280 | -------------------------------------------------------------------------------- /channels/gh_0da88782c73a.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[生物材料前沿进展]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM5xgLicN5tFE7QECb6hJOkcdZDdeBAWgsrmU1K4rE5icOkg/132 10 | gh_0da88782c73a 11 | 12 | 13 | <![CDATA[Advanced Materials!分子铁电实现96.2%肿瘤抑制率]]> 14 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Organomolecular Ferroelectric Nanocatalyst Augments Tumor Immunot

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15 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487463&idx=1&sn=9bb546acde73bc7e0acd38ba76f74ece&chksm=ce47a2a0a933bafe5b7221584fedf4574481da5b3294637f667275e31a7867a76d8d8dcfe2f0&scene=0&xtrack=1#rd 16 | Mon, 24 Nov 2025 23:59:00 +0800 17 |
18 | 19 | <![CDATA[施剑林院士团队Nature Communications压电治疗肿瘤:拆掉肿瘤“糖盔甲”,压电刺激ROS产生]]> 20 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“ Ultrasound-triggered and glycosylation inhibition-enhanced tumor

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21 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487448&idx=1&sn=ea05cc69a05a385dc4c3c6411308e4d7&chksm=ce1e9b84b448d8c27df1a18662c59ed103750cab544ed194eff3c6bacb0d65b766f158f9e46f&scene=0&xtrack=1#rd 22 | Sat, 22 Nov 2025 23:59:00 +0800 23 |
24 | 25 | <![CDATA[Nature Materials “压电创可贴”:“贴”在干细胞上的纳米发电机,5 分钟超声“充电”]]> 26 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Ultrasound-activated piezoelectric nanostickers for neural stem c

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27 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487434&idx=1&sn=42f094b4e3fcd149b1028c3a06650422&chksm=ceef94d5c38d82f5e388732289be70ed5513ba1791ae138798a0faed86a44464be238089e554&scene=0&xtrack=1#rd 28 | Thu, 20 Nov 2025 23:59:00 +0800 29 |
30 | 31 | <![CDATA[Biomaterials: 水凝胶可逆力学性能经L型钙通道-黏着斑轴机械转导内皮细胞实现快速血管化]]> 32 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Reversible shear stress-mediated mechanoregulation of endothelial

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33 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487422&idx=1&sn=494dcdc0c8d932fd7537509219b2c92f&chksm=ce62f81d455a7a765213654ba8830c56f2f44ffe57895993152613bbc3b93c78f60de2b9e44d&scene=0&xtrack=1#rd 34 | Sat, 02 Aug 2025 17:14:06 +0000 35 |
36 | 37 | <![CDATA[【科研招聘】北京大学材料科学与工程学院雷霆课题组招聘启事]]> 38 |

北京大学材料科学与工程学院雷霆课题组面向海内外诚聘博士后或科研助理若干名,欢迎具有化学合成、材料与器件加工、生物电子等相关专业背景的人才加入。我们是一个跨学科的科研团队,成员背景涵盖材料、化学、物理、

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39 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487412&idx=1&sn=5696fea3cd736a310ddc05f82916dfd6&chksm=cefafbe863afc78de849288db1479d1ed3c9cae973c5e8a12117abd827cd49b049b26d7f1cac&scene=0&xtrack=1#rd 40 | Wed, 18 Jun 2025 12:30:00 +0000 41 |
42 | 43 | <![CDATA[相聚贵阳![7月18-21雅迪尔酒店]2025全国纤维材料创新技术暨多元应用高端研讨会]]> 44 |

邀请函尊敬的各位专家、学者和同仁:在当今科技迅猛发展的时代浪潮下,纤维材料领域不断涌现出令人瞩目的创新技术和应用突破。为进一步推动纤维材料产业的蓬勃发展,加强业内的学术交流与深度合作,由我单位主

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45 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487408&idx=1&sn=ead1190d1768fc13ad1991f7596865a2&chksm=cea050a15404a46b3bdd93a97eff36e36b6af3706583689da9aacd3b55709c67ee10c35db831&scene=0&xtrack=1#rd 46 | Fri, 13 Jun 2025 00:00:00 +0000 47 |
48 | 49 | <![CDATA[Nature子刊: 基于声敏压电二苯丙氨酸的广谱抗菌肽]]> 50 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“A sonosensitive diphenylalanine-based broad-spectrum antimicrobia

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51 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487403&idx=1&sn=11678297f73713204eb21996dc1a5fdd&chksm=ce32972f5a5c16ee00ef060ecf29ad03a2024bd0171bacb945888e070056e131e7e2711d0355&scene=0&xtrack=1#rd 52 | Thu, 05 Jun 2025 16:00:00 +0000 53 |
54 | 55 | <![CDATA[JACS:生物矿化中肽自组装的生物催化调控]]> 56 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Biocatalytic Regulation of Peptide Self-Assembly for Biomineraliz

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57 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487391&idx=1&sn=cec66afb62a0f250f9a66632edeffd07&chksm=ce6e1ba9b279c90b51297fc7d478c4326c9efa171b60f6e9d5582e4e2c6bdb20585531f45359&scene=0&xtrack=1#rd 58 | Mon, 02 Jun 2025 16:20:44 +0000 59 |
60 | 61 | <![CDATA[Biosensors and Bioelectronics:迭代随机搜索算法和对接评估对目标蛋白进行从头肽设计]]> 62 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“PISAD: De novo peptide design for target protein with iterative s

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63 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487391&idx=2&sn=f14fe23ca98bcf0cb5fa0f73f586c439&chksm=ce0f51540dd135fe38528ee3f70516f185a9fd24f3ed45e39bb4e418271fb8df6d6ef48eb8aa&scene=0&xtrack=1#rd 64 | Mon, 02 Jun 2025 16:20:44 +0000 65 |
66 | 67 | <![CDATA[Nature Materials:双网络启发的机械超材料]]> 68 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Double-network-inspired mechanical metamaterials” 01—研究背景在材料科学

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69 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487390&idx=1&sn=36e14b5269cef7069feeb0f1d6b0ae15&chksm=ce1f74a1bf1e151c2dbfb585a0c3a1464dcbac02910ae385c59f2a775b89004174dd311a5c09&scene=0&xtrack=1#rd 70 | Sun, 01 Jun 2025 15:49:38 +0000 71 |
72 | 73 | <![CDATA[Advanced science: DNA折纸靶向治疗增强软骨再生和缓解骨关节炎进展]]> 74 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“DNA Origami-Based CD44-Targeted Therapy Silences Stat3 Enhances C

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75 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487389&idx=1&sn=389ca9b3cd78341a6e06741b91f2c64b&chksm=cede86f9cca46e7cd09977772e915bd1f7b152150ad1f59edde288c53c1776c8dca24778541f&scene=0&xtrack=1#rd 76 | Thu, 29 May 2025 16:00:00 +0000 77 |
78 | 79 | <![CDATA[合肥肽库生物科技,专业多肽定制合成]]> 80 |

合肥肽库生物科技有限公司 是一家致力于多肽合成研究及多肽定制合成的高新技术企业,公司坐落于安徽合肥滨湖云谷创新园,拥有1500平方现代化办公/研发实验基地,公司主营多肽合成、多肽定制、PET探针前体合

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81 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487365&idx=1&sn=7f9454927b7113471fb7b482d2a403c5&chksm=ce6184a9886678d087d4c035dd17f761d910520980a522a61bef0fd184a5f6f3d7dce143da93&scene=0&xtrack=1#rd 82 | Mon, 26 May 2025 07:00:00 +0000 83 |
84 | 85 | <![CDATA[Nature Materials:高度自愈合强韧纳米限域水凝胶]]> 86 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Stiff and self-healing hydrogels by polymer entanglements in co-p

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87 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487358&idx=1&sn=3921c31166666d7a6689a9c1a60793a5&chksm=ceb59ed5c7883da58c78e43baa9a7fb759226b5573dbbbe8d2e186d48d752f3f2d09c4ed8588&scene=0&xtrack=1#rd 88 | Fri, 23 May 2025 16:00:00 +0000 89 |
90 | 91 | <![CDATA[Nature communications:流线型金属基水凝胶促进干细胞分化、细胞外基质稳态和雄性大鼠软骨修复]]> 92 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Streamlined metal-based hydrogel facilitates stemcell differentia

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93 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487348&idx=1&sn=3c108a1db79e876843171e3223ad04a1&chksm=ce895c6140c12a4244d746e99c57ad5a0517412412f9e9575bd0dbc96f1fce7b2002cace9925&scene=0&xtrack=1#rd 94 | Sat, 17 May 2025 16:00:00 +0000 95 |
96 | 97 | <![CDATA[【会议邀请-初步会议日程已更新】2025全国新型胶体与界面化学及功能化探索研讨会——5月23日-25日.桂林]]> 98 |

尊敬的各位专家、学者和同仁: 在科技飞速发展的当下,胶体与界面化学作为多学科交叉的前沿领域,不断孕育着新的突破与创新。从微观尺度的分子相互作用,到宏观世界的材料性能调控,它在能源、生物医学、环境科

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99 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487348&idx=2&sn=9be12c3b127613c375dee97214b25509&chksm=ce3b2fb56b50e3c5941b611e72fefbcda38af837fb9e07aac6fec2e0a401b6e8af77fcd5d41e&scene=0&xtrack=1#rd 100 | Sat, 17 May 2025 16:00:00 +0000 101 |
102 | 103 | <![CDATA[Advanced Materials:用于糖尿病伤口愈合治疗的微针中形态可转换的金纳米线和血红蛋白-白藜芦醇纳米颗粒的共同递送]]> 104 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Co-Delivery of Morphologically Switchable Au Nanowire and Hemoglo

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105 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487340&idx=1&sn=debbf33850db3fd429740b1fcc3f0204&chksm=cecb82a022f0f7cb9defb53086ca932e9db09c74196939ddaa3cd1b2b90a3c82b012f101ac24&scene=0&xtrack=1#rd 106 | Sat, 10 May 2025 16:00:00 +0000 107 |
108 | 109 | <![CDATA[Nature Materials:生物指令性支架增强干细胞植入促进功能性组织再生]]> 110 |

点击上方一键订阅两步添加生物材料前沿进展为星标,把握生物材料前沿研究“Bioinstructive scaffolds enhance stem cell engraftment for functi

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111 | http://mp.weixin.qq.com/s?__biz=Mzg3OTg4Mzg5MQ==&mid=2247487339&idx=1&sn=27bd6c70e7b4fcbc5c6225b4eea3dfab&chksm=ce49d0860b3e863aa0dbe9ac53474d6be7285c1e7f3c7ed0de9fa56051bb19771eb0ba83e821&scene=0&xtrack=1#rd 112 | Thu, 08 May 2025 16:00:00 +0000 113 |
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-------------------------------------------------------------------------------- /channels/gh_931619690305.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[哈工大国际应用力学中心]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM7ujcTHZr2cKyn0eibCaiaFiaLaYbpjV5DeFXiaDYYmwn5HSA/132 10 | gh_931619690305 11 | 12 | 13 | <![CDATA[【倒计时5天】第三届中日韩复合材料研讨会]]> 14 |

第三届中日韩复合材料研讨会将于2025年11月22日至24日在广州白天鹅酒店隆重举行。

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15 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484913&idx=1&sn=ef38055b881af5df578b520a89edcf6f&chksm=c15d1f259146c482e758e02f95cdd4e776fb9f01224b4d0dcb9310703a8824c58de07e1ce6eb&scene=0&xtrack=1#rd 16 | Mon, 17 Nov 2025 23:52:45 +0800 17 |
18 | 19 | <![CDATA[【会议通知第七轮】第三届中日韩复合材料研讨会]]> 20 |

第三届中日韩复合材料研讨会将于2025年11月22日至24日在广州白天鹅酒店隆重举行。

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21 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484907&idx=1&sn=dabf3652d7cd0ad6ff4741b96d907f38&chksm=c1f107a40fce889fea7b28210a8f2381bcd9ca700281154ce79e3eff944ca6e87c9b9527583f&scene=0&xtrack=1#rd 22 | Fri, 24 Oct 2025 19:54:23 +0800 23 |
24 | 25 | <![CDATA[【2025年11月21日9:00】英国诺丁汉大学李曙光教授讲座]]> 26 |

应哈尔滨工业大学国际应用力学中心何佳泽教授、International Journal of Smart and Nano Materials编辑部邀请英国诺丁汉大学李曙光教授、南航和西北工

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27 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484904&idx=1&sn=fa05ae95f12e344c206d654d79ccb457&chksm=c10069039fe7f08b171a48cb3327325c79c76eb95caa91994e2554ebf677babcc3129234460c&scene=0&xtrack=1#rd 28 | Wed, 22 Oct 2025 17:13:05 +0800 29 |
30 | 31 | <![CDATA[【讲座通知】德国开姆尼茨工业大学Oliver G. Schmidt院士]]> 32 |

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33 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484894&idx=1&sn=e754dcfafae3d232c502057f6006161f&chksm=c1baef0b0b71bbc92c250a5d1c5fc7813c50734f0ae0ef0fa361bae4105ca0ee1d89b399f65a&scene=0&xtrack=1#rd 34 | Mon, 20 Oct 2025 11:35:46 +0800 35 |
36 | 37 | <![CDATA[【讲座通知】德国开姆尼茨工业大学Oliver G. Schmidt院士]]> 38 |

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39 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484892&idx=1&sn=78d1b0e36f97011d751aba33041866f0&chksm=c198fe570257966ec3168f0d8446b956b7421310f95492421d854a457425f26f863e7869e6e6&scene=0&xtrack=1#rd 40 | Sun, 19 Oct 2025 18:02:00 +0800 41 |
42 | 43 | <![CDATA[美国工程院院士Stephen W.Tsai学术报告]]> 44 |

观众链接 https://welink.huaweicloud.com/meeting/#/j/886377097537/43e820535785d434ff8656c39fac7441ca201bd

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45 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484884&idx=1&sn=182a31d94e4ba7234897eebc5f2c8d80&chksm=c150a87e8ae7cbe9889a4c71d8a39d928059a45dd7cea71794978104f41a7abe45e7ade28bb3&scene=0&xtrack=1#rd 46 | Tue, 14 Oct 2025 17:26:19 +0800 47 |
48 | 49 | <![CDATA[【线上系列讲座通知】比利时鲁汶大学Stepan V. Lomov教授和意大利米兰理工大学Valter Carvelli教授讲座]]> 50 |

应哈尔滨工业大学航天学院孙毅、果立成教授团队姚辽军副教授邀请,比利时鲁汶大学Stepan V. Lomov教授(全球前2%顶尖科学家(终身科学影响力))、意大利米兰理工大学Valter C

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51 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484884&idx=2&sn=19cff6de8401e7d06ea27f2e6e83187b&chksm=c1e897c219ce9a705bf1a10f238a34f36a8fb4917dc989a2cf21a6cd12928a75ca0c465d991b&scene=0&xtrack=1#rd 52 | Tue, 14 Oct 2025 17:26:19 +0800 53 |
54 | 55 | <![CDATA[【会议通知第六轮】第三届中日韩复合材料研讨会]]> 56 |

第三届中日韩复合材料研讨会将于2025年11月22日至24日在广州白天鹅酒店隆重举行。

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57 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484884&idx=3&sn=9f3a1c4da17221f98daad2380e7e3432&chksm=c14d6d6dba2f53425c069402d2a7692a845663f5d5d5adeeb05a10d54dfedbea5d0c8568e7ef&scene=0&xtrack=1#rd 58 | Tue, 14 Oct 2025 17:26:19 +0800 59 |
60 | 61 | <![CDATA[【会议通知第五轮】第三届中日韩复合材料研讨会]]> 62 |

第三届中日韩复合材料研讨会将于2025年11月22日至24日在广州白天鹅酒店隆重举行。

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63 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484877&idx=1&sn=09d49e416bdb3c8782de305c73e0a747&chksm=c1bbad82a398062ae0d463031e8f9c80a8dd1c80f9177f3dd12c1f4ffbf06e4203654a9016b4&scene=0&xtrack=1#rd 64 | Tue, 30 Sep 2025 15:34:46 +0800 65 |
66 | 67 | <![CDATA[【会议通知第四轮】第三届中日韩复合材料研讨会]]> 68 |

第三届中日韩复合材料研讨会将于2025年11月22日至24日在广州白天鹅酒店隆重举行。

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69 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484872&idx=1&sn=3d28a48be19bdd79fed5bdf9c5193f2f&chksm=c196d2f2e3de17f0a4400a407fb49bdf3b4827499ca1721517c62c51e8910ee6f4fea5077313&scene=0&xtrack=1#rd 70 | Tue, 16 Sep 2025 10:08:01 +0800 71 |
72 | 73 | <![CDATA[【线上系列讲座通知】比利时鲁汶大学Stepan V. Lomov教授讲座]]> 74 |

应哈尔滨工业大学航天学院孙毅、果立成教授团队姚辽军副教授邀请,比利时鲁汶大学Stepan V. Lomov教授(全球前2%顶级科学家)、意大利米兰理工大学Valter Carvelli教授(全

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75 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484864&idx=1&sn=fbd921095843b540a3053bcae880c645&chksm=c1698dce07b11091df16c6750196307a5ab189fe1f01832e3a1b880870422a9117bd685f72f3&scene=0&xtrack=1#rd 76 | Mon, 01 Sep 2025 14:55:48 +0800 77 |
78 | 79 | <![CDATA[【讲座通知】西北工业大学周生喜教授]]> 80 |

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81 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484861&idx=1&sn=301c44094034bc0eb9495859d0092730&chksm=c1f3fe3be8703285db13d9cf9e4f7629ae0a2c11833cec299b198a9fd0b585382cc21102c0d7&scene=0&xtrack=1#rd 82 | Tue, 26 Aug 2025 16:54:14 +0800 83 |
84 | 85 | <![CDATA[【讲座通知】英国物理学会出版社王小华]]> 86 |

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87 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484861&idx=2&sn=a8a844581a5ce4b17689d45e097eec3e&chksm=c13ef3bcd526cabe40de3a6e693b14683e511bfedeecb51c3f63a981dd5a87214b779803fecb&scene=0&xtrack=1#rd 88 | Tue, 26 Aug 2025 16:54:14 +0800 89 |
90 | 91 | <![CDATA[【线上系列讲座通知】英国帝国理工大学Ferri M. H. Aliabadi教授讲座]]> 92 |

应哈尔滨工业大学航天学院航天科学与力学系陈延红教授邀请,英国帝国理工Ferri M. H. Aliabadi教授将举行计算固体力学相关的在线讲座。具体信息如下,欢迎感兴趣的专家、学者和学生参会

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93 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484845&idx=1&sn=c3bb230d1eb42e0c68b5e8c7e385212b&chksm=c1d242defdfb559c7b79af1066ae126d3b02701e5d600bfe454c09679fd2cba6cef0ee8662e1&scene=0&xtrack=1#rd 94 | Thu, 10 Jul 2025 16:00:47 +0000 95 |
96 | 97 | <![CDATA[【讲座通知】伯明翰大学王永靖副教授]]> 98 |

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99 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484842&idx=1&sn=5e4ee6978bf31bfa8f1848bd9e3256bf&chksm=c19e1080107531a9dc9fb9e474cf099c25ad99fa277d526cd461921c9727c45d435bfe8dfac4&scene=0&xtrack=1#rd 100 | Thu, 10 Jul 2025 07:11:37 +0000 101 |
102 | 103 | <![CDATA[【会议通知第三轮】第三届中日韩复合材料研讨会]]> 104 |

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105 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484835&idx=1&sn=a3602635a942682f5bc4d37bbba56a33&chksm=c11b8f95acc4fb2cf0df6393eece27e9657073280692771875b498b117c256dbb077cf4f1116&scene=0&xtrack=1#rd 106 | Tue, 08 Jul 2025 06:54:10 +0000 107 |
108 | 109 | <![CDATA[【会议通知第二轮】第三届中日韩复合材料研讨会]]> 110 |

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111 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484830&idx=1&sn=2e7fd20d3797f7b8cf0305fb95c03a26&chksm=c17a2426adb660d757808c6858056c1503c20a67a0c80c5c6cdafc90b54084bfc79bd31d7451&scene=0&xtrack=1#rd 112 | Sat, 24 May 2025 05:21:09 +0000 113 |
114 | 115 | <![CDATA[【会议通知第二轮】第三届中日韩复合材料研讨会]]> 116 |

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117 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484823&idx=1&sn=631a427b3acaf6f788e2f3be65fe5d92&chksm=c130b5ed9ba966ad71c5ebc9c9662c8317cb66717923c9c953ec5bc65a009beb15f201dc4197&scene=0&xtrack=1#rd 118 | Fri, 23 May 2025 09:25:18 +0000 119 |
120 | 121 | <![CDATA[【会议通知第二轮】第三届中日韩复合材料研讨会]]> 122 |

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123 | http://mp.weixin.qq.com/s?__biz=Mzg5Nzk0NDQ2OQ==&mid=2247484803&idx=1&sn=0fcaba61db6833790a6284c1d137dfdc&chksm=c1826245c8495a734e81a60cae6869f60226709cdb3d19a1257a242ab33d4fb98e287f9bc479&scene=0&xtrack=1#rd 124 | Thu, 22 May 2025 13:27:52 +0000 125 |
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-------------------------------------------------------------------------------- /channels/gh_c191f350723c.xml: -------------------------------------------------------------------------------- 1 | 2 | 3 | 4 | <![CDATA[IntelligentOptics]]> 5 | https://mp.weixin.qq.com/ 6 | 7 | zh-cn 8 | 9 | https://wx.qlogo.cn/mmhead/Q3auHgzwzM68ezDmcOmWmmxsOCJJJv6bCgKOsOxU95k0NGckL3Viang/132 10 | gh_c191f350723c 11 | 12 | 13 | <![CDATA[学术交流 | 港大WeLight@SIGAsia: Scratches; Neural Lighting; Holography]]> 14 |

Discover SIGGRAPH Asia 2025——港大计算成像与混合呈现实验室本期导读ACM SIGGRAPH Asia 2025 召开之际,充满令人惊叹的Graphhics技术、演示、创新体

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15 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487403&idx=1&sn=4d83d273b4791666c78c260ab62c4e8b&chksm=eb59129fd6f3843ba0bde1134289e2995181c3ee41d502c6d673b46e84521ba00caef1ec4420&scene=0&xtrack=1#rd 16 | Fri, 12 Dec 2025 20:37:59 +0800 17 |
18 | 19 | <![CDATA[成像专题 | 基于严重退化估计框架的高质量衍射透镜红外计算成像(IEEE TCI)]]> 20 |

基于严重退化估计框架的高质量衍射透镜红外计算成像High-Quality Diffractive Lens Infrared Computational Imaging via Severe De

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21 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487396&idx=1&sn=34d794fea5d72fe51fbd1cd2635ee51c&chksm=eb5f435b8ee7650746f64130fc3892c4320d056a443ed1415cdce5f6299305a9220b871cfcc5&scene=0&xtrack=1#rd 22 | Thu, 04 Dec 2025 11:26:00 +0800 23 |
24 | 25 | <![CDATA[成像专题 | 探究数据驱动RGB重建光谱的有效性和局限性(IEEE TCI)]]> 26 |

从RGB重建光谱的有效性探究——以光学视角分析数据驱动光谱重建的局限性Limitations of Data-driven Spectral Reconstruction: Optics-aware

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27 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487378&idx=1&sn=e969b43970e512844a26a1bb9b80f5b6&chksm=eb7f9d0113ea129ad79ad0c0b8a8b43bb6be57f39979fd7815f87737c9e3612b7bcd12517ec6&scene=0&xtrack=1#rd 28 | Wed, 26 Nov 2025 12:55:25 +0800 29 |
30 | 31 | <![CDATA[显示专题 | 时分复用助力全息显示动态瞳孔采样的空间信息损失补偿(Optica OE)]]> 32 |

时分复用助力全息显示动态瞳孔采样的空间信息损失补偿Compensating Spatial Information Loss Caused by Dynamic Eye Pupil Samplin

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33 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487364&idx=1&sn=1e9ce058d1f09f04b5712a068c2b82c9&chksm=ebc2f1e96918f0fb13ba8b542bfd034bb212f01454839c71d3e0bd118c09fcdb668326eb4ac0&scene=0&xtrack=1#rd 34 | Mon, 10 Nov 2025 11:50:15 +0800 35 |
36 | 37 | <![CDATA[计算专题 | 耦合光学微分算法助力高效地被动深度成像 (IJCV)]]> 38 |

耦合光学微分算法助力高效地被动深度成像Depth from Coupled Optical Differentiation本期导读在传统的被动深度成像中,想要通过单个相机在自然光下“看出”物体的三维形

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39 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487352&idx=1&sn=97b8bd01c571e965d24aa31500b1870c&chksm=eb595ce55c17236a5190fcf1f2651c9ea7c9aeda95e055a14829cbe6d22d421039058425247c&scene=0&xtrack=1#rd 40 | Tue, 21 Oct 2025 11:03:05 +0800 41 |
42 | 43 | <![CDATA[显示专题 | 动态三维眼动跟踪助力Pinlight AR显示眼瞳箱扩展(IEEE TVCG)]]> 44 |

动态三维眼动跟踪助力Pinlight AR显示眼瞳箱扩展Dynamic Eyebox Steering for Improved Pinlight AR Near-eye Displays本期导读

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45 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487342&idx=1&sn=d5ff94b0fbd318b08ebf03c486b4fc99&chksm=eb81080d99cd2bee2639fe56c14bd0d524a31b624e2b3570a02b23be0d379922743a2a98950a&scene=0&xtrack=1#rd 46 | Sat, 11 Oct 2025 11:30:00 +0800 47 |
48 | 49 | <![CDATA[计算专题 | 进阶的速度场建模助力动态场景高斯视频重建(IEEE ISMAR)]]> 50 |

进阶的速度场建模助力动态场景高斯视频重建Enhanced Velocity Feld Modeling for Gaussian Video Reconstruction本期导读增强现实与混合现实的沉

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51 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487321&idx=1&sn=55576a9ba7f73cdbb1818fdd784fa39d&chksm=ebfb285ea1d1340523623f791f08d7c3290ab0ccff5d63cc0b5fecbc8f967201410e951a1e3e&scene=0&xtrack=1#rd 52 | Wed, 08 Oct 2025 11:33:43 +0800 53 |
54 | 55 | <![CDATA[显示专题 | 多光源干涉照明助力眼瞳箱扩展的计算全息显示(IEEE TVCG)]]> 56 |

多光源干涉照明助力眼瞳箱扩展的计算全息显示Multi-illumination-interfered Neural Holography with Expanded Eyebox本期导读全息术通过重

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57 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487293&idx=1&sn=bd9ba8df4519360efe4a43920c3ab4cd&chksm=eba729a0eb4e9b0318ee0242fc37cf930a99085fe29b91b6a436310f050c21dc8fea4b42f821&scene=0&xtrack=1#rd 58 | Tue, 30 Sep 2025 11:42:13 +0800 59 |
60 | 61 | <![CDATA[感知专题 | 事件相机助力高动态范围波前传感(LPR)]]> 62 |

事件相机助力高动态范围波前传感Angle-Based Neuromorphic Wave Normal Sensing本期导读基于角度的波前传感(angle-based wavefront sensi

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63 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487274&idx=1&sn=0572d37d1ff5e489d9a1ce78fbc6eeed&chksm=ebad48a36137338bd3e0ae1a3eb2384aef4f4f92899c26bd84a83c9a8930633d78d3b4858601&scene=0&xtrack=1#rd 64 | Mon, 15 Sep 2025 11:15:00 +0800 65 |
66 | 67 | <![CDATA[成像专题 | 单向Transformer助力、可学习折衍光学实现大视场角成像 (IJCV)]]> 68 |

单向Transformer助力、可学习折衍光学实现大视场角成像Learning Refractive-Diffractive Optics with Unidirectional Transforme

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69 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487265&idx=1&sn=31cb7a05e3667b799b1a7c180273c2d6&chksm=eb15b351529fd42db8d46af8875cbfc4fba92fa6f2945763e0cf2d9aa926d0069de1248c3e82&scene=0&xtrack=1#rd 70 | Tue, 09 Sep 2025 11:35:41 +0800 71 |
72 | 73 | <![CDATA[成像专题 | 基于孔径阵列的自监督高光谱超分辨成像 (IEEE TGRS)]]> 74 |

基于孔径阵列的自监督高光谱超分辨成像Aperture Array-based Self-Supervised Hyperspectral Super-Resolution Imaging本期导读光谱作

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75 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487254&idx=1&sn=d2ff223c5e12c54ec17fc943a2f6a933&chksm=eb2ae387e08c540d31ec53302828bd41d991daf53dd8f99bf109b1652b42637d78afef6b4de3&scene=0&xtrack=1#rd 76 | Tue, 02 Sep 2025 19:01:45 +0800 77 |
78 | 79 | <![CDATA[计算专题 | 基于地面望远镜的卫星三维重建(IEEE TPAMI)]]> 80 |

基于地面望远镜的卫星三维重建Reconstructing Satellites in 3D from Amateur Telescope Images本期导读人造卫星数量迅速增长带来了越来越多轨道目标

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81 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487243&idx=1&sn=2e61a7797f3018a920ce2fc4d782ae73&chksm=eb06e022b320c9aa623dbe6829faa7919d8f9516bbd651bc213c2630ee3431e5a2a974f4163a&scene=0&xtrack=1#rd 82 | Wed, 13 Aug 2025 14:58:07 +0800 83 |
84 | 85 | <![CDATA[显示专题 | 基于Light-Pipe的带宽无损AR全息显示(ACM SIGGRAPH)]]> 86 |

基于Light-Pipe的带宽无损AR全息显示Light Pipe Holographic Display: Bandwidth-preserved Kaleidoscopic Guiding for

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87 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487187&idx=1&sn=04173131075e69d4d4519106b05d6bfd&chksm=ebc3f1e3bc4d33e090ac56fde413dd370d072c7c6952dc3679e0a1e5829ffa3fc646fdc5a28e&scene=0&xtrack=1#rd 88 | Wed, 09 Jul 2025 04:32:39 +0000 89 |
90 | 91 | <![CDATA[成像专题 | 拓展挑战性场景三维重建:衍射与偏振深度线索融合助力单目三维成像(Optica)]]> 92 |

拓展挑战性场景三维重建:衍射与偏振深度线索融合助力高效单目三维成像Extended Monocular 3D Imaging via the Fusion of Diffraction- and Po

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93 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487177&idx=1&sn=35bba034d24ee12ec56d67a8178d3553&chksm=eb715d5dff99fdca293613825561054b206fbe966f72a62377f5b74315b13904f2b8789db1ac&scene=0&xtrack=1#rd 94 | Tue, 24 Jun 2025 03:45:00 +0000 95 |
96 | 97 | <![CDATA[学术交流 | SIGGRAPH Asia 2025 XR 投稿速递]]> 98 |

SIGGRAPH Asia 2025 XR专题Demo-Call for submissions本期导读时光尚早,未来可期。诚邀您与我们携手共塑XR的未来!👓在 ACM SIGGRAPH Asia 2

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99 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487168&idx=1&sn=99c76c738084d5ed8c5ba75f1f1a4a0e&chksm=ebb42948335f00e367cceaa6bbdb1bd83eff5e7d208f7ba02bd4fe6f95cb74b976593ae085a6&scene=0&xtrack=1#rd 100 | Fri, 20 Jun 2025 03:40:50 +0000 101 |
102 | 103 | <![CDATA[学术交流 | ICCV 2025 Workshop Responsible Imaging投稿速递]]> 104 |

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105 | http://mp.weixin.qq.com/s?__biz=MzI2MzIyNTM4Mw==&mid=2247487158&idx=1&sn=805290dece547c69bf2be41991d55c7f&chksm=eb7b193ac5b7c424498bad1158d1595118252b3bac84fdd95157a5772421c70f646246adb1c1&scene=0&xtrack=1#rd 106 | Thu, 19 Jun 2025 04:35:12 +0000 107 |
108 | 109 | <![CDATA[计算专题 | 基于低成本偏振采集的高光物体三维重建(IEEE CVPR Highlight)]]> 110 |

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114 | 115 | <![CDATA[成像专题 | UltraFusion:基于扩散生成模型的超高动态范围成像(IEEE CVPR)]]> 116 |

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