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具有上游运动能力的超快微型机器人游泳器。

Ultrafast Miniature Robotic Swimmers with Upstream Motility.

作者信息

Wang Yibin, Chen Hui, Law Junhui, Du Xingzhou, Yu Jiangfan

机构信息

School of Science and Engineering, The Chinese University of Hong Kong, Shenzhen, China.

Shenzhen Institute of Artificial Intelligence and Robotics for Society, Shenzhen, China.

出版信息

Cyborg Bionic Syst. 2023;4:0015. doi: 10.34133/cbsystems.0015. Epub 2023 Mar 15.

Abstract

With the development of materials science and micro-nano fabrication techniques, miniature soft robots at millimeter or submillimeter size can be manufactured and actuated remotely. The small-scaled robots have the unique capability to access hard-to-reach regions in the human body in a noninvasive manner. To date, it is still challenging for miniature robots to accurately move in the diverse and dynamic environments in the human body (e.g., in blood flow). To effectively locomote in the vascular system, miniature swimmers with upstream swimming capability are required. Herein, we design and fabricate a miniature robotic swimmer capable of performing ultrafast swimming in a fluidic environment. The maximum velocity of the swimmer in water is 30 cm/s, which is 60 body lengths. Moreover, in a tubular environment, the swimmer can still obtain a swimming velocity of 17 cm/s. The swimmer can also perform upstream swimming in a tubular environment with a velocity of 5 cm/s when the flow speed is 10 cm/s. The ultrasound-guided navigation of the swimmer in a phantom mimicking a blood vessel is also realized. This work gives insight into the design of agile undulatory milliswimmers for future biomedical applications.

摘要

随着材料科学和微纳制造技术的发展,毫米级或亚毫米级的微型软机器人能够被制造出来并实现远程驱动。这些小型机器人具有以非侵入方式进入人体难以到达区域的独特能力。迄今为止,微型机器人要在人体多样且动态的环境(如血流中)精确移动仍具有挑战性。为了在血管系统中有效移动,需要具备向上游游动能力的微型游动器。在此,我们设计并制造了一种能够在流体环境中进行超快游动的微型机器人游动器。该游动器在水中的最大速度为30厘米/秒,相当于60个身体长度。此外,在管状环境中,游动器仍能获得17厘米/秒的游动速度。当流速为10厘米/秒时,该游动器还能在管状环境中以5厘米/秒的速度向上游游动。同时,还实现了在模拟血管的仿体中对游动器进行超声引导导航。这项工作为未来生物医学应用中敏捷波动型微型游动器的设计提供了思路。

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