<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Tao Sun | Micro Nano Robotics Lab</title><link>https://micronanorobotics.github.io/MNRLab.github.io/author/tao-sun/</link><atom:link href="https://micronanorobotics.github.io/MNRLab.github.io/author/tao-sun/index.xml" rel="self" type="application/rss+xml"/><description>Tao Sun</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><lastBuildDate>Thu, 01 Jan 2026 00:00:00 +0000</lastBuildDate><image><url>https://micronanorobotics.github.io/MNRLab.github.io/media/icon_hu_b75d732ddc2eff0c.png</url><title>Tao Sun</title><link>https://micronanorobotics.github.io/MNRLab.github.io/author/tao-sun/</link></image><item><title>Fish-Diversity-Inspired Multiple Soft Millirobots System with Morphology-Encoded Selective Control</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2026-fish-diversity-inspired-multiple-soft-millirobots-system-with-morpholo/</link><pubDate>Thu, 01 Jan 2026 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2026-fish-diversity-inspired-multiple-soft-millirobots-system-with-morpholo/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhengyuan Xin, Zhiqiang Zheng, Yaozhen Hou, Hen-wei Huang, Qing Shi, Toshio Fukuda, Metin Sitti, Huaping Wang*. Fish-Diversity-Inspired Multiple Soft Millirobots System with Morphology-Encoded Selective Control, Science Advances. 2026, 12(20): eaed6170. DOI: 10.1126/sciadv.aed6170（中科院工程技术1区TOP，JCR 1区）[JIF:12.5] [Google学术引用:0] [SCI他引:0] （无收录号）&lt;/p&gt;</description></item><item><title>Data-driven Parallel Adaptive Control for Magnetic Helical Microrobots with Derivative Structure in Uncertain Environments</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-5/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-5/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Wang Huaping, Zhong Shihao, Zheng Zhiqiang*, Shi Qing, Sun Tao, Huang Qiang, Fukuda Toshio, &amp;ldquo;Data-driven Parallel Adaptive Control for Magnetic Helical Microrobots with Derivative Structure in Uncertain Environments&amp;rdquo;, IEEE Transactions on Systems, Man and Cybernetics: System. vol. 54, no. 7, pp. 4139-4150, July 2024, DOI: 10.1109/TSMC.2024.3374071, 2024.(中科院计算机科学1区，JCR 1区) [JIF:8.6] [Google学术引用:11] [SCI他引:9] （收录号：WOS:001193848500001）&lt;/p&gt;</description></item><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>Digital Holography Based Three-Dimensional Multi-Target Locating for Automated Cell Micromanipulation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-digital-holography-based-three-dimensional-multi-target-locating-for-a/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-digital-holography-based-three-dimensional-multi-target-locating-for-a/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Wang Huaping*, Bai Kailun, Chen Jiancong, Shi Qing, Sun Taom Cui Juan, Huang Qiang, Fukuda Toshio, &amp;ldquo;Digital Holography Based Three-Dimensional Multi-Target Locating for Automated Cell Micromanipulation&amp;rdquo;, IEEE Transactions on Automation Science and Engineering, vol. 21(1), pp: 332-342, Jan. 2024. (DOI: 10.1109/TASE.2022.3228809)(中科院计算机科学1区，JCR 1区) [JIF:5.9] [Google学术引用:2] [SCI他引:1] （DOI：10.1109/TASE.2022.3228809，收录号：WOS:000903740200001）&lt;/p&gt;</description></item><item><title>Double-Modal Locomotion of a Hydrogel Ultra-Soft Magnetic Miniature Robot with Switchable Forms</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-10/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-10/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhong Shihao#, Xin Zhengyuan#, Hou Yaozhen, Li Yang, Huang Hen-Wei, Sun Tao, Shi Qing, Wang Huaping* &amp;lsquo;&amp;lsquo;Double-Modal Locomotion of a Hydrogel Ultra-Soft Magnetic Miniature Robot with Switchable Forms&amp;rsquo;&amp;rsquo;, Cyborg and Bionic Systems, vol. 5, no. 0077 2024.（DOI:10.34133/cbsystems.0077） （JCR 1区，高起点新期刊论文，高校认定重要期刊）[JIF:10.5] [Google学术引用:14] [SCI他引:11] （无收录号）&lt;/p&gt;</description></item><item><title>Engineered tissue micro-rings fabricated from aggregated fibroblasts and microfibres for a bottom-up tissue engineering approach</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-engineered-tissue-micro-rings-fabricated-from-aggregated-fibroblasts-a/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-engineered-tissue-micro-rings-fabricated-from-aggregated-fibroblasts-a/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Sun Tao, Shi Qing*, Yao Yibing, Sun Junzhong, Wang huaping, Huang Qiang, Toshio Fukuda , Engineered tissue micro-rings fabricated from aggregated fibroblasts and microfibres for a bottom-up tissue engineering approach; Biofabrication; 11:035029. (中科院医学2区，JCR 1区) [JIF:8.2] [Google学术引用:12] [SCI他引:11] DOI：10.1088/1758-5090/ab1ee5 收录号：&lt;/p&gt;</description></item><item><title>Fabrication of vascular smooth muscle-like tissues based on self-organization of circumferentially aligned cells in microengineered hydro</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-fabrication-of-vascular-smooth-muscle-like-tissues-based-on-self-organ/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-fabrication-of-vascular-smooth-muscle-like-tissues-based-on-self-organ/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Sun Tao, Shi Qing*, Liang Qian, Yao Yibing, Wang Huaping,Sun Junzhong, Huang Qiang, Toshio Fukuda , Fabrication of vascular smooth muscle-like tissues based on self-organization of circumferentially aligned cells in microengineered hydrogels, Lab on a Chip; 20:3120-3131; (中科院工程技术2区，JCR 1区) [JIF:6.1] [Google学术引用:18] [SCI他引:14]DOI:10.1039/d0lc00544d（收录号：WOS:000562594400022）&lt;/p&gt;</description></item><item><title>Paired Interactions of Magnetic Millirobots in Confined Spaces Through Data-Driven Disturbance Rejection Control Under Global Input</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-paired-interactions-of-magnetic-millirobots-in-confined-spaces-through/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-paired-interactions-of-magnetic-millirobots-in-confined-spaces-through/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhong Shihao, Guo Siyu, Shi Qing, Li Yang, Huang Hen-Wei, Huang Qiang, Fukuda Toshio, Wang Huaping* &amp;ldquo;Paired Interactions of Magnetic Millirobots in Confined Spaces Through Data-Driven Disturbance Rejection Control Under Global Input&amp;rdquo;, IEEE/ASME Transactions on Mechatronics, DOI:10.1109/TMECH.2024.3521085, 2025.(中科院工程技术1区，JCR 1区) [JIF:6.1] [Google学术引用:0] [SCI他引:0] （收录号：WOS:）&lt;/p&gt;</description></item><item><title>Template-based fabrication of spatially organized 3D bioactive constructs using magnetic low-concentration gelation methacrylate (GelMA) microfibers</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-template-based-fabrication-of-spatially-organized-3d-bioactive-constru/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2024-template-based-fabrication-of-spatially-organized-3d-bioactive-constru/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Sun Tao#, Yao Yibing#, Shi Qing*, Wang Huaping, Paolo Dario, Sun Junzhong, Huang Qiang, Toshio Fukuda, Template-based fabrication of spatially organized 3D bioactive constructs using magnetic low-concentration gelation methacrylate (GelMA) microfibers; Soft Matter;16:3902-3913. (中科院化学3区，JCR 2区) [JIF:2.9] [Google学术引用:4] [SCI他引:4] DOI:10.1039/c9sm01945f（收录号：WOS:000530499300024）&lt;/p&gt;</description></item><item><title>TPP-Based Microfluidic Chip Design and Fabrication Method for Optimized Nerve Cells Directed Growth</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-8/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/ja-8/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Liu Menghua, Wu Anping, Liu Jiaxin, Zhao Yanfeng, Dong Xinyi, Sun Tao, Shi Qing, WangHuaping* &amp;ldquo;TPP-Based Microfluidic Chip Design and Fabrication Method for Optimized Nerve Cells Directed Growth&amp;rdquo;, Cyborg and Bionic Systems, vol. 2024, May. 2024.（DOI:10.34133/cbsystems.0095） （JCR 1区，高起点新期刊论文，高校认定重要期刊）[JIF:10.5] [Google学术引用:0] [SCI他引:暂无] （无收录号）&lt;/p&gt;</description></item><item><title>Design and Control of a Surface-Dimple-Optimized Helical Microdrill for Motions in High­-Viscosity Fluids</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2023-design-and-control-of-a-surface-dimple-optimized-helical-microdrill-fo/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2023-design-and-control-of-a-surface-dimple-optimized-helical-microdrill-fo/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Hou Yaozhen, Wang Huaping*, Zhong Shihao, Qiu Yukang, Shi Qing, Sun Tao, Huang Qiang, Fukuda Toshio, &amp;ldquo;Design and Control of a Surface-Dimple-Optimized Helical Microdrill for Motions in High­-Viscosity Fluids&amp;rdquo;, IEEE/ASME Transactions on Mechatronics, vol. 28, no. 1, pp. 429-439, Feb. 2023. (DOI: 10.1109/TMECH.2022.3201012) (中科院工程技术1区，JCR 1区) [JIF:6.1] [Google学术引用:21] [SCI他引:14；2024年高被引论文] （收录号：WOS:000852232400001）&lt;/p&gt;</description></item><item><title>Magnetically-Assisted Microfluidic Printing for the Fabrication of Anisotropic Skeletal Muscle Structure</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2023-magnetically-assisted-microfluidic-printing-for-the-fabrication-of-ani/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2023-magnetically-assisted-microfluidic-printing-for-the-fabrication-of-ani/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Wei Zihou, Yu Xiao, Chen Shuibin, Cong Rong, Wang Huaping, Shi Qing, Fukuda Toshio, Sun Tao, Magnetically-Assisted Microfluidic Printing for the Fabrication of Anisotropic Skeletal Muscle Structure. IEEE Robotics and Automation Letters, 2023, Vol 8, No 5, pp.2661-2667. MAY 2023 . (中科院计算机科学2区，JCR 2区) [JIF:4.6] [Google学术引用:暂无] [SCI他引:29] DOI:10.1109/LRA.2023.3248373（收录号：WOS:000960675100001）&lt;/p&gt;</description></item><item><title>Zhong Shihao,Wang Huaping*, Shi Qing, Hou Yaozhen, Qiu Yukang, Sun Tao, Huang Qiang, Fukuda Toshio, Path Tracking Contro</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2023-zhong-shihao-wang-huaping-shi-qing-hou-yaozhen-qiu-yukang-sun-tao-huan/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2023-zhong-shihao-wang-huaping-shi-qing-hou-yaozhen-qiu-yukang-sun-tao-huan/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhong Shihao,Wang Huaping*, Shi Qing, Hou Yaozhen, Qiu Yukang, Sun Tao, Huang Qiang, Fukuda Toshio, Path Tracking Control for Helical Microrobots Based on Fusion of Geometric and Model-Free Method, 2023 IEEE 13th International Conference on CYBER Technology in Automation, Control, and Intelligent Systems (CYBER), pp. 118-123, Qinhuangdao, China, 2023 DOI: 10.1109/CYBER59472.2023.10256450（收录号：无）&lt;/p&gt;</description></item><item><title>Accurate Modulation of Photoprinting under Stiffness Imaging Feedback for Engineering ECMs with High-Fidelity Mechanical Properties</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-accurate-modulation-of-photoprinting-under-stiffness-imaging-feedback/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-accurate-modulation-of-photoprinting-under-stiffness-imaging-feedback/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Li Xin, Wang Huaping*, Dong Xinyi, Shi Qing, Sun Tao, Shimoda Shingo, Huang Qiang, Fukuda Toshio, “Accurate Modulation of Photoprinting under Stiffness Imaging Feedback for Engineering ECMs with High-Fidelity Mechanical Properties”, Microsystems &amp;amp; Nanoengineering, vol. 8(3), pp. 1-11, Jun. 2, 2022. (DOI: 10.1038/s41378-022-00394-y) (中科院工程技术1区，JCR 1区) [JIF:7.3] [Google学术引用:3] [SCI他引:3]（收录号：WOS:000805175200001）&lt;/p&gt;</description></item><item><title>Bio-inspired engineering of a perfusion culture platform for guided three-dimensional nerve cell growth and differentiation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-bio-inspired-engineering-of-a-perfusion-culture-platform-for-guided-th/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-bio-inspired-engineering-of-a-perfusion-culture-platform-for-guided-th/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Wei Zihou#, Sun Tao#, Shingo Shimoda, Chen Zhe, Chen Xie, Wang Huaping, Huang Qiang, Toshio Fukuda, Shi Qing*. Bio-inspired engineering of a perfusion culture platform for guided three-dimensional nerve cell growth and differentiation, Lab on a Chip, 2022, 22: 1006-1017. (中科院工程技术2区，JCR 1区) [JIF:6.1] [Google学术引用:18] [SCI他引:14] DOI:10.1039/d1lc01149a（收录号：WOS:000754026000001）&lt;/p&gt;</description></item><item><title>Design and Control of a Porous Helical Microdrill with a Magnetic Field for Motions</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-design-and-control-of-a-porous-helical-microdrill-with-a-magnetic-fiel/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-design-and-control-of-a-porous-helical-microdrill-with-a-magnetic-fiel/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Yaozhen Hou, Huaping Wang, Qing Shi, Shihao Zhong, Yukang Qiu, Tao Sun, Qiang Huang, and Toshio Fukuda, “Design and Control of a Porous Helical Microdrill with a Magnetic Field for Motions”, 15th International Conference on Intelligent Robotics and Applications, pp. 200–208, Harbin, China, 2022. DOI：10.1007/978-3-031-13844-7_20（收录号：WOS:000870504300020）&lt;/p&gt;</description></item><item><title>Design of a Miniaturized Magnetic Actuation System for Motion Control of Micro/Nano Swimming Robots</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-design-of-a-miniaturized-magnetic-actuation-system-for-motion-control/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-design-of-a-miniaturized-magnetic-actuation-system-for-motion-control/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Liwen Sun, Huaping Wang, Qing Shi, Siyu Guo, Zhiqiao Gao, Tao Sun, Qiang Huang, Toshio Fukuda, “Design of a Miniaturized Magnetic Actuation System for Motion Control of Micro/Nano Swimming Robots”, 2022 IEEE International Conference on Real-Time Computing and Robotics,pp.594-599,Guiyang,China,2022.DOI: 10.1109/RCAR54675.2022.9872234（收录号：无）&lt;/p&gt;</description></item><item><title>Development of an in vitro perfusable neural interface model for sequential connection of nerve cells</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-development-of-an-in-vitro-perfusable-neural-interface-model-for-seque/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2022-development-of-an-in-vitro-perfusable-neural-interface-model-for-seque/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Menghua Liu, Huaping Wang, Qing Shi, Yaozhen Hou, Jiaxin Liu, Tao Sun, Qiang Huang, Toshio Fukuda, “Development of an in vitro perfusable neural interface model for sequential connection of nerve cells”, 2022 IEEE International Conference on Cyborg and Bionic Systems (CBS), pp. 122-127, Wuhan, China, 2023.(DOI: 10.1109/CBS55922.2023.10115337)（收录号：WOS:000995252700022）&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>POMDP-Based Real-Time Path Planning for Manipulation of Multiple Microparticles via Optoelectronic Tweezers</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-pomdp-based-real-time-path-planning-for-manipulation-of-multiple-micro/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-pomdp-based-real-time-path-planning-for-manipulation-of-multiple-micro/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Liu Jiaxin, Wang Huaping*, Liu Menghua, Zhao Ran, Zhao Yanfeng, Sun Tao, Shi Qing, &amp;lsquo;&amp;lsquo;POMDP-Based Real-Time Path Planning for Manipulation of Multiple Microparticles via Optoelectronic Tweezers&amp;rsquo;&amp;rsquo;, Cyborg and Bionic Systems, vol. 2022, Nov. 2022.（DOI:10.34133/2022/9890607） （JCR 1区，高起点新期刊论文，高校认定重要期刊）[JIF:10.5] [Google学术引用:7] [SCI他引:6] （无收录号）&lt;/p&gt;</description></item><item><title>Shi Qing*. A Clamp-free micro-stretching system for evaluating the viscoelastic response of cell-laden microfibers</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-shi-qing-a-clamp-free-micro-stretching-system-for-evaluating-the-visco/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2022-shi-qing-a-clamp-free-micro-stretching-system-for-evaluating-the-visco/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Chen Xie#, Sun Tao#, Wei Zihou, Chen Zhe, Wang Huaping, Huang Qiang, Fukuda Toshio, Shi Qing*. A Clamp-free micro-stretching system for evaluating the viscoelastic response of cell-laden microfibers. Biosensors and Bioelectronics, 2022, 214:114517. (中科院生物学1区，JCR 1区) [JIF:10.7] [Google学术引用:4] [SCI他引:3] DOI:10.1016/j.bios.2022.114517（收录号：WOS:000826714300002）&lt;/p&gt;</description></item><item><title>Ionic Shape-Morphing Microrobotic End-Effectors for Environmentally Adaptive Targeting, Releasing, and Sampling</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2021-ionic-shape-morphing-microrobotic-end-effectors-for-environmentally-ad/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2021-ionic-shape-morphing-microrobotic-end-effectors-for-environmentally-ad/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zheng Zhiqiang, Wang Huaping*, Dong Lixin, Shi Qing, Li Jianing, Sun Tao, Huang Qiang*, Fukuda Toshio, “Ionic Shape-Morphing Microrobotic End-Effectors for Environmentally Adaptive Targeting, Releasing, and Sampling”, Nature Communications, vol. 12(1), pp. 1-12, Jan. 2021.（DOI:10.1038/s41467-020-20697-w） (中科院综合性期刊1区，JCR 1区) [JIF: 14.7] [Google学术引用:126] [SCI他引: 105；2021年论文高引用阈值103、热点论文2023-1阈值1]（收录号：WOS:000611509500001）&lt;/p&gt;</description></item><item><title>Micro Robotic Manipulation System for the Force Stimulation of Muscle Fiber-like Cell Structure</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2021-micro-robotic-manipulation-system-for-the-force-stimulation-of-muscle/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2021-micro-robotic-manipulation-system-for-the-force-stimulation-of-muscle/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Xie Chen, Qing Shi, Shimoda Shingo, Tao Sun, Huaping Wang, Qiang Huang, and Toshio Fukuda, “Micro Robotic Manipulation System for the Force Stimulation of Muscle Fiber-like Cell Structure”, IEEE International Conference on Robotics and Automation, pp. 7249-7254, Xi&amp;rsquo;an, China, 2021. (DOI:10.1109/ICRA48506.2021.9560846)（机器人领域顶级国际会议）（收录号：WOS:000771405400061）&lt;/p&gt;</description></item><item><title>Permeable Hollow 3D Tissue-Like Constructs Engineered by On-Chip Hydrodynamic-Driven Assembly of Multicellular Hierarchical Micromodules</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2020-permeable-hollow-3d-tissue-like-constructs-engineered-by-on-chip-hydro/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2020-permeable-hollow-3d-tissue-like-constructs-engineered-by-on-chip-hydro/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Cui Juan, Wang Huaping*, Shi Qing, Pietro Ferraro, Sun Tao, Paolo Dario, Huang Qiang, Fukuda Toshio, “Permeable Hollow 3D Tissue-Like Constructs Engineered by On-Chip Hydrodynamic-Driven Assembly of Multicellular Hierarchical Micromodules”, Acta Biomaterialia, vol. 113, pp. 328-338, Sep. 2020.(DOI:10.1016/j.actbio.2020.06.010) (中科院工程技术1区，JCR 1区) [JIF:9.4] [Google学术引用:14] [SCI他引:10]（DOI：10.1016/j.actbio.2020.06.010，收录号：WOS:000558174200023）&lt;/p&gt;</description></item><item><title>3D Construction of Shape-Controllable Tissues through Self-Bonding of Multicellular Microcapsules</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-3d-construction-of-shape-controllable-tissues-through-self-bonding-of/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-3d-construction-of-shape-controllable-tissues-through-self-bonding-of/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zheng Zhiqiang, Wang Huaping*, Li Jianing, Shi Qing, Cui Juan, Sun Tao, Huang Qiang, Fukuda Toshio, “3D Construction of Shape-Controllable Tissues through Self-Bonding of Multicellular Microcapsules”, ACS Applied Materials &amp;amp; Interfaces, vol. 11(26), pp. 22950-22961, Jul. 03, 2019. (中科院材料科学2区，JCR 1区) [JIF:8.3] [Google学术引用:21] [SCI他引:18] DOI：10.1021/acsami.9b05108 收录号：WOS:000474670100006&lt;/p&gt;</description></item><item><title>Automated Sorting of Rare Cells Based on Autofocusing Visual Feedback in Fluorescence Microscopy</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-automated-sorting-of-rare-cells-based-on-autofocusing-visual-feedback/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-automated-sorting-of-rare-cells-based-on-autofocusing-visual-feedback/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Kailun Bai, Huaping Wang, Qing Shi, Zhiqiang Zheng, Juan Cui, Tao Sun, Qiang Huang, Paolo Dario, Toshio Fukuda， “Automated Sorting of Rare Cells Based on Autofocusing Visual Feedback in Fluorescence Microscopy”，IEEE/RSJ International Conference on Intelligent Robots and Systems, pp. 1567-1572, Macau, China,,03-08 November 2019. DOI：10.1109/iros40897.2019.8968207，WOS:000544658401081&lt;/p&gt;</description></item><item><title>Biped Walking of Magnetic Microrobot in Oscillating Field for Indirect Manipulation of Non-magnetic Objects</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-biped-walking-of-magnetic-microrobot-in-oscillating-field-for-indirect/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-biped-walking-of-magnetic-microrobot-in-oscillating-field-for-indirect/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Li Jianing, Wang Huaping*, Shi Qing, Zheng Zhiqiang, Cui Juan, Sun Tao, Pietro Ferraro, Huang Qiang, Fukuda Toshio, “Biped Walking of Magnetic Microrobot in Oscillating Field for Indirect Manipulation of Non-magnetic Objects”, IEEE Transactions on Nanotechnology, vol. 19(1), pp. 21-24, Nov. 2019. (中科院工程技术3区，JCR 3区) [JIF:2.1] [Google学术引用:18] [SCI他引:10] DOI：10.1109/TNANO.2019.2954312，WOS:000583692800004&lt;/p&gt;</description></item><item><title>Fabrication of Perfusable 3D hepatic Lobule-Like Constructs through Assembly of Multiple Cell Type Laden Hydrogel Microstructures</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-fabrication-of-perfusable-3d-hepatic-lobule-like-constructs-through-as/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-fabrication-of-perfusable-3d-hepatic-lobule-like-constructs-through-as/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Cui Juan, Wang Huaping*, Zheng Zhiqiang, Shi Qing, Sun Tao, Huang Qiang, Fukuda Toshio, “Fabrication of Perfusable 3D hepatic Lobule-Like Constructs through Assembly of Multiple Cell Type Laden Hydrogel Microstructures”, Biofabrication, vol. 11, Jan. 2019. (中科院工程技术1区，JCR 1区) [JIF:8.2] [Google学术引用:46] [SCI他引:39] DOI：10.1088/1758-5090/aaf3c9，WOS:000454550900005&lt;/p&gt;</description></item><item><title>Magnetic Micromachine Using Nickel Nanoparticles for Propelling and Releasing in Indirect Assembly of Cell-Laden Micromodules</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-magnetic-micromachine-using-nickel-nanoparticles-for-propelling-and-re/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-magnetic-micromachine-using-nickel-nanoparticles-for-propelling-and-re/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Li Jianing, Wang Huaping*, Cui Juan, Shi Qing, Zheng Zhiqiang, Sun Tao, Huang Qiang, Fukuda Toshio, “Magnetic Micromachine Using Nickel Nanoparticles for Propelling and Releasing in Indirect Assembly of Cell-Laden Micromodules”, Micromachines, vol. 10(6), Jun. 01, 2019. (中科院工程技术3区，JCR 2区) [JIF:3.0] [Google学术引用:13] [SCI他引:15] DOI：10.3390/mi10060370，WOS:000475350100022&lt;/p&gt;</description></item><item><title>Morphologic Reconstruction of 2D cellular Micro-scaffold Based on Digital Holographic Feedback</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-morphologic-reconstruction-of-2d-cellular-micro-scaffold-based-on-digi/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-morphologic-reconstruction-of-2d-cellular-micro-scaffold-based-on-digi/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Xin Li, Huaping Wang, Qing Shi, Juan Cui, Tao Sun, Hongpeng Qin, Qiang Huang, Toshio Fukuda, “Morphologic Reconstruction of 2D cellular Micro-scaffold Based on Digital Holographic Feedback”，The 12th International Conference on Intelligent Robotics and Applications, pp. 196–208, Shenyang, China,8-11 August 2019. DOI：10.1007/978-3-030-27526-6_18，WOS:000569253500018&lt;/p&gt;</description></item><item><title>Multicellular Co-Culture in Three-Dimensional Gelatin Methacryloyl Hydrogels for Liver Tissue Engineering</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-multicellular-co-culture-in-three-dimensional-gelatin-methacryloyl-hyd/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-multicellular-co-culture-in-three-dimensional-gelatin-methacryloyl-hyd/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Cui Juan, Wang Huaping*, Shi Qing, Sun Tao, Huang Qiang, Fukuda Toshio, “Multicellular Co-Culture in Three-Dimensional Gelatin Methacryloyl Hydrogels for Liver Tissue Engineering”, Molecules, vol. 24 (6), May. 2019. (中科院化学2区，JCR 2区) [JIF:4.2] [Google学术引用:45] [SCI他引:40] DOI: 10.3390/molecules24091762 (收录号： WOS:000469518100121)&lt;/p&gt;</description></item><item><title>Three-Dimensional Autofocusing Visual Feedback for Automated Rare Cells Sorting in Fluorescence Microscopy</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-three-dimensional-autofocusing-visual-feedback-for-automated-rare-cell/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2019-three-dimensional-autofocusing-visual-feedback-for-automated-rare-cell/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Wang Huaping*, Bai Kailun, Cui Juan, Shi Qing, Sun Tao, Huang Qiang, Dario Paolo, Fukuda Toshio, “Three-Dimensional Autofocusing Visual Feedback for Automated Rare Cells Sorting in Fluorescence Microscopy”, Micromachines, vol. 10(9), Aug. 27, 2019. (中科院工程技术3区，JCR 2区) [JIF:3.0] [Google学术引用:6] [SCI他引:5] DOI：10.3390/mi10090567，&lt;/p&gt;</description></item><item><title>Untethered Micromachines Using Magnetic Nanoparticles for Wireless Assembly of Cell-laden Heterogeneous Micromodules</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-untethered-micromachines-using-magnetic-nanoparticles-for-wireless-ass/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2019-untethered-micromachines-using-magnetic-nanoparticles-for-wireless-ass/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Jianing Li, Huaping Wang, Qing Shi, Zhiqiang Zheng, Juan Cui, Tao Sun, Qiang Huang, Toshio Fukuda, “Untethered Micromachines Using Magnetic Nanoparticles for Wireless Assembly of Cell-laden Heterogeneous Micromodules”, The 19th IEEE Conference on Nanotechnology, pp. 546-551, Macao, China, 22-26 July 2019. DOI：10.1109/nano46743.2019.8993898，&lt;/p&gt;</description></item><item><title>Assembly of Cellular Microstructures into Lobule-Like 3D Microtissues based on Microrobotic Manipulation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2018-assembly-of-cellular-microstructures-into-lobule-like-3d-microtissues/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2018-assembly-of-cellular-microstructures-into-lobule-like-3d-microtissues/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Juan Cui, Huaping Wang, Qing Shi, Jianing Li, Zhiqiang Zheng, Tao Sun, Qiang Huang, and Toshio Fukuda, “Assembly of Cellular Microstructures into Lobule-Like 3D Microtissues based on Microrobotic Manipulation,” International Conference on Manipulation, Automation and Robotics at Small Scales, pp. 638-643, Nagoya, Japan, 2018.&lt;/p&gt;</description></item><item><title>Automated Fluidic Assembly of Microvessel-Like Structures Using a Multi-Micromanipulator System</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-toshio-fukuda-automated-fluidic-assembly-of-microvessel-like-structure/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-toshio-fukuda-automated-fluidic-assembly-of-microvessel-like-structure/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Xiaoming Liu, Qing Shi*, Huaping Wang, Tao Sun, Ning Yu, Qiang Huang, Toshio Fukuda. Automated Fluidic Assembly of Microvessel-Like Structures Using a Multi-Micromanipulator System. IEEE/ASME Transactions on Mechatronics, 2018, 23(2): 667-678. (中科院工程技术1区，JCR 1区) [JIF:6.1] [Google学术引用:22] [SCI他引:暂无]&lt;/p&gt;</description></item><item><title>Construction of 3D Micro-Tissue based on Electrodeposition and Robot Manipulation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2018-construction-of-3d-micro-tissue-based-on-electrodeposition-and-robot-m/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2018-construction-of-3d-micro-tissue-based-on-electrodeposition-and-robot-m/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Zhiqiang Zheng, Huaping Wang, Qing Shi, Jianing Li, Juan Cui, Tao Sun, Qiang Huang, Fellow, IEEE and Toshio Fukuda, “Construction of 3D Micro-Tissue based on Electrodeposition and Robot Manipulation,” IEEE International Conference on CYBER Technology in Automation, Control, and Intelligent Systems, pp. 404-409, Tianjin, China, 2018. DOI: 10.1109/CYBER.2018.8688074 收录号：WOS:000468941800072&lt;/p&gt;</description></item><item><title>Development of a Highly Compact Microgripper Capable of Online Calibration for Multi-Sized Microobject Manipulation</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-development-of-a-highly-compact-microgripper-capable-of-online-calibra/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-development-of-a-highly-compact-microgripper-capable-of-online-calibra/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Qing Shi*, Zhiqiang Yu, Huaping Wang, Tao Sun, Qiang Huang and Toshio Fukuda, Development of a Highly Compact Microgripper Capable of Online Calibration for Multi-Sized Microobject Manipulation, IEEE Transactions on Nanotechnology, 2018,17(4):657-661. (中科院工程技术4区，JCR 3区) [JIF:2.1] [Google学术引用:29] [SCI他引:暂无]&lt;/p&gt;</description></item><item><title>Microfluidic Spun Alginate Hydrogel Microfibers and Their Application in Tissue Engineering</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-qiang-huang-and-toshio-fukuda-microfluidic-spun-alginate-hydrogel-micr/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2018-qiang-huang-and-toshio-fukuda-microfluidic-spun-alginate-hydrogel-micr/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Tao Sun *, Xingfu Li, Qing Shi, Huaping Wang, Qiang Huang and Toshio Fukuda. Microfluidic Spun Alginate Hydrogel Microfibers and Their Application in Tissue Engineering. Gels, 2018, 4:38. (中科院化学3区，JCR 1区) [JIF:5.0] [Google学术引用:37] [SCI他引:32]&lt;/p&gt;</description></item><item><title>3-D Visual Feedback for Automated Sorting of Cells with Ultra-Low Proportion under Dark Field</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2017-3-d-visual-feedback-for-automated-sorting-of-cells-with-ultra-low-prop/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2017-3-d-visual-feedback-for-automated-sorting-of-cells-with-ultra-low-prop/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Jieyu Tan, Huaping Wang, Qing Shi, Zhiqiang Zhen, Juan Cui, Tao Sun, Qiang Huang, Toshio Fukuda, “3-D Visual Feedback for Automated Sorting of Cells with Ultra-Low Proportion under Dark Field ,” IEEE International Symposium on Robot and Human Interactive Communication, pp. 874-879, Tianjin, China, 2017.&lt;/p&gt;</description></item><item><title>Automated Contact Assembly of Vessel-Mimetic Microstructure through Position and Orientation Estimation based on Object Detection</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2017-automated-contact-assembly-of-vessel-mimetic-microstructure-through-po/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2017-automated-contact-assembly-of-vessel-mimetic-microstructure-through-po/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Yanan Li, Huaping Wang, Qing Shi, Juan Cui, Jianing Li, Tao Sun, Zhiqiang Zheng, Toshio Fukuda, “Automated Contact Assembly of Vessel-Mimetic Microstructure through Position and Orientation Estimation based on Object Detection,” pp. 1118-1123, Macao, China, 2017.&lt;/p&gt;</description></item><item><title>Magnetically-guided Assembly of Microfluidic Fibers for Ordered Construction of Diverse Netlike Modules</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2017-qiang-huang-and-toshio-fukuda-magnetically-guided-assembly-of-microflu/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/journal-2017-qiang-huang-and-toshio-fukuda-magnetically-guided-assembly-of-microflu/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Xingfu Li, Qing Shi*, Huaping Wang, Tao Sun, Qiang Huang and Toshio Fukuda. Magnetically-guided Assembly of Microfluidic Fibers for Ordered Construction of Diverse Netlike Modules. Journal of Micromechanics and Microengineering, vol. 27, no. 12, 125014, 2017. (中科院工程技术4区，JCR 2区) [JIF:2.4] [Google学术引用:4] [SCI他引:4]&lt;/p&gt;</description></item><item><title>Magnetically-guided Manipulation of Microfiber for Fabrication of Porous Cell Scaffold</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2016-magnetically-guided-manipulation-of-microfiber-for-fabrication-of-poro/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2016-magnetically-guided-manipulation-of-microfiber-for-fabrication-of-poro/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Xingfu Li, Qing Shi, Huaping Wang, Tao Sun, Jianing Li, Ning Yu, Qiang Huang and Toshio Fukuda, “Magnetically-guided Manipulation of Microfiber for Fabrication of Porous Cell Scaffold,” IEEE International Conference on Mechatronics and Automation, pp. 2419-2424, Haerbin, China, 2016.&lt;/p&gt;</description></item><item><title>3D Magnetic Assembly of Cellular Structures with “Printing” Manipulation by Microrobot-controlled Microfluidic System</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-3d-magnetic-assembly-of-cellular-structures-with-printing-manipulation/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-3d-magnetic-assembly-of-cellular-structures-with-printing-manipulation/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Pengyun Li, Qing Shi, Huaping Wang, Xiaolan Tu, Tao Sun, Xiaoming Liu, Qiang Huang, Toshio Fukuda, “3D Magnetic Assembly of Cellular Structures with “Printing” Manipulation by Microrobot-controlled Microfluidic System,” IEEE Conference on Robotics and Biomimetics, pp. 1967-1972, Zhuhai, China, 2015.&lt;/p&gt;</description></item><item><title>Automated Biomanipulation to Assemble Cellular Microstructure with Railed Multi-Microrobotic System</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-automated-biomanipulation-to-assemble-cellular-microstructure-with-rai/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-automated-biomanipulation-to-assemble-cellular-microstructure-with-rai/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Huaping Wang, Qing Shi, Qiang Huang, Tao Sun, Toshio Fukuda, Masahiro Nakajima, et al., “Automated Biomanipulation to Assemble Cellular Microstructure with Railed Multi-Microrobotic System,” IEEE International Conference on Information and Automation, pp. 743-748, Lijiang, China, 2015.&lt;/p&gt;</description></item><item><title>Automated Micro-Assembly of Hydrogel Modules based on Defocus Feature</title><link>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-automated-micro-assembly-of-hydrogel-modules-based-on-defocus-feature/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://micronanorobotics.github.io/MNRLab.github.io/publication/conference-2015-automated-micro-assembly-of-hydrogel-modules-based-on-defocus-feature/</guid><description>&lt;h2 id="source-record"&gt;Source record&lt;/h2&gt;
&lt;p&gt;Shaoqi Chen, Qiang Huang, Qing Shi, Huaping Wang, Tao Sun, Xiaoming Liu, Toshio Fukuda, “Automated Micro-Assembly of Hydrogel Modules based on Defocus Feature,” IEEE International Conference on Cyber Technology in Automation, Control and Intelligent Systems, pp. 1229-1234, Shenyang, China, 2015.&lt;/p&gt;</description></item></channel></rss>