<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Kaijun Lin | Micro Nano Robotics Lab</title><link>https://micronanorobotics.github.io/MNRLab.github.io/author/kaijun-lin/</link><atom:link href="https://micronanorobotics.github.io/MNRLab.github.io/author/kaijun-lin/index.xml" rel="self" type="application/rss+xml"/><description>Kaijun Lin</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><lastBuildDate>Mon, 01 Jan 2024 00:00:00 +0000</lastBuildDate><image><url>https://micronanorobotics.github.io/MNRLab.github.io/media/icon_hu_b75d732ddc2eff0c.png</url><title>Kaijun Lin</title><link>https://micronanorobotics.github.io/MNRLab.github.io/author/kaijun-lin/</link></image><item><title>Deep Learning-Guided Single-Cell Encapsulation through photo-crosslinking for Advanced 3D Culture</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2024-deep-learning-guided-single-cell-encapsulation-through-photo-crosslink/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2024-deep-learning-guided-single-cell-encapsulation-through-photo-crosslink/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Yanfeng Zhao, Kaijun lin, Haotian Yang, Xinyi Dong, Tao Sun, Qing Shi, Qiang Huang,Huaping Wang*., &amp;ldquo;Deep Learning-Guided Single-Cell Encapsulation through photo-crosslinking for Advanced 3D Culture,&amp;rdquo; 2024 IEEE International Conference on Mechatronics and Automation (ICMA), Tianjin, China, 2024, pp. 1831-1836, doi: 10.1109/ICMA61710.2024.10633074.&lt;/p&gt;</description></item><item><title>Dual-modal Motion of Magnetically Controlled Soft Microrobots with Environmentally Responsive Reversible Deformation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2024-dual-modal-motion-of-magnetically-controlled-soft-microrobots-with-env/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2024-dual-modal-motion-of-magnetically-controlled-soft-microrobots-with-env/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhengyuan Xin, Anping Wu, Kailun Bai, Haotian Yang, Kaijun Lin, Qing Shi, Huaping Wang, Yaozhen Hou., &amp;ldquo;Dual-modal Motion of Magnetically Controlled Soft Microrobots with Environmentally Responsive Reversible Deformation,&amp;rdquo; 2024 2nd International Conference on Frontiers of Intelligent Manufacturing and Automation (CFIMA 2024), Baotou, China, 2024.&lt;/p&gt;</description></item><item><title>Dynamic Control Framework for Automated Particle Transport Based on Optically Induced Dielectrophoresis</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-dynamic-control-framework-for-automated-particle-transport-based-on-op/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-dynamic-control-framework-for-automated-particle-transport-based-on-op/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Jiaxin Liu, Huaping Wang, Qing Shi, Xinyi Dong, Kaijun Lin, Tao Sun, Qiang Huang, Toshio Fukuda, “Dynamic Control Framework for Automated Particle Transport Based on Optically Induced Dielectrophoresis”, 2022 IEEE International Conference on Real-Time Computing and Robotics, pp. 225-230, Guiyang, China, 2022.DOI: 10.1109/RCAR54675.2022.9872252（收录号：无）&lt;/p&gt;</description></item><item><title>Extraction of Key Foreground Information from Visual Feedback Images for Contact Micromanipulation in Liquid Environment</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-extraction-of-key-foreground-information-from-visual-feedback-images-f/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-extraction-of-key-foreground-information-from-visual-feedback-images-f/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Jiancong Chen; Huaping Wang; Kailun Bai; Kaijun Lin; Qing Shi; Tao Sun, Qiang Huang, Toshio Fukuda. &amp;ldquo;Extraction of Key Foreground Information from Visual Feedback Images for Contact Micromanipulation in Liquid Environment&amp;rdquo;, 2022 IEEE International Conference on Cyborg and Bionic Systems (CBS). IEEE, 2023: 116-121.&lt;/p&gt;</description></item><item><title>Rail-Guided Multi-Robot System for the Cooperative Manipulation of Cross-Scale Targets</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-rail-guided-multi-robot-system-for-the-cooperative-manipulation-of-cro/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-rail-guided-multi-robot-system-for-the-cooperative-manipulation-of-cro/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Han Tao, Huaping Wang, Yaozhen Hou, Siyu Guo, Kaijun Lin, Maolin Wang, Qiang Huang, Toshio Fukuda, “Rail-Guided Multi-Robot System for the Cooperative Manipulation of Cross-Scale Targets”, 2022 IEEE International Conference on Cyborg and Bionic Systems (CBS), pp. 128-133, Wuhan, China, 2023.(DOI:10.1109/CBS55922.2023.10115406)（收录号：WOS:000995252700023）&lt;/p&gt;</description></item></channel></rss>