Starfish Inspired Milli Soft Robot With Omnidirectional Adaptive Locomotion Ability
暂无分享,去创建一个
Yajing Shen | Rong Tan | Haojian Lu | Xiong Yang | Yajing Shen | Haojian Lu | Xiong Yang | Rong Tan
[1] Qiang Huang,et al. A bioinspired multilegged soft millirobot that functions in both dry and wet conditions , 2018, Nature Communications.
[2] Zhongyuan Wang,et al. Bio-Inspired Adhesive Footpad for Legged Robot Climbing under Reduced Gravity: Multiple Toes Facilitate Stable Attachment , 2018 .
[3] S. Quake,et al. From micro- to nanofabrication with soft materials. , 2000, Science.
[4] Youfu Li,et al. RRV: A Spatiotemporal Descriptor for Rigid Body Motion Recognition , 2016, IEEE Transactions on Cybernetics.
[5] Samir AL-Sadder,et al. Finite difference scheme for large-deflection analysis of non-prismatic cantilever beams subjected to different types of continuous and discontinuous loadings , 2006 .
[6] C. Young,et al. Feeding mechanism of the brisingid starfish Novodinia antillensis , 1994 .
[7] Tianqi Xu,et al. Millimeter-scale flexible robots with programmable three-dimensional magnetization and motions , 2019, Science Robotics.
[8] H. McNeill,et al. Intracellular manipulation and measurement with multipole magnetic tweezers , 2019, Science Robotics.
[9] Gang Chen,et al. Morphing control of a new bionic morphing UAV with deep reinforcement learning , 2019, Aerospace Science and Technology.
[10] Katia Bertoldi,et al. Kirigami skins make a simple soft actuator crawl , 2018, Science Robotics.
[11] Kyu-Jin Cho,et al. Hygrobot: A self-locomotive ratcheted actuator powered by environmental humidity , 2018, Science Robotics.
[12] Xiufeng Yang,et al. An 88-milligram insect-scale autonomous crawling robot driven by a catalytic artificial muscle , 2020, Science Robotics.
[13] Wei Gao,et al. A microrobotic system guided by photoacoustic computed tomography for targeted navigation in intestines in vivo , 2019, Science Robotics.
[14] Xinyu Wu,et al. An agglutinate magnetic spray transforms inanimate objects into millirobots for biomedical applications , 2020, Science Robotics.
[15] D. Wiersma,et al. Structured light enables biomimetic swimming and versatile locomotion of photoresponsive soft microrobots. , 2016, Nature materials.
[16] S. C. Brown,et al. Histology and ultrastructure of the tube foot epithelium in the phanerozonian starfish, Astropecten. , 1972, Tissue & cell.
[17] Jie Yang,et al. A new soft bionic starfish robot with multi-gaits , 2013, 2013 IEEE/ASME International Conference on Advanced Intelligent Mechatronics.
[18] Kyung Hyun Choi,et al. 3D printing for soft robotics – a review , 2018, Science and technology of advanced materials.
[19] Sang Yoon Park,et al. Self-Emitting Artificial Cilia Produced by Field Effect Spinning. , 2019, ACS applied materials & interfaces.
[20] De Xu,et al. Robust Insertion Control for Precision Assembly With Passive Compliance Combining Vision and Force Information , 2019, IEEE/ASME Transactions on Mechatronics.
[21] Daniela Rus,et al. Exploration of underwater life with an acoustically controlled soft robotic fish , 2018, Science Robotics.