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首页> 外文期刊>Advanced Robotics: The International Journal of the Robotics Society of Japan >Soft medical robotics: clinical and biomedical applications, challenges, and future directions
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Soft medical robotics: clinical and biomedical applications, challenges, and future directions

机译:软医疗机器人:临床和生物医学应用,挑战和未来方向

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摘要

Bioinspired soft robotics allow for safer clinical interactions with human patients but conventional, hard robots, which are often built with rigid materials and complex control systems, compromise tissue integrity, freedom of movement, conformability, and overall human bio-compatibility. Soft, compliant materials intrinsically reduce mechanical complexity, accommodate their usage environment, and provide great practical potential for medical device developments. Previous review papers have generally covered the topics of materials, manufacturing processes, actuator modeling and control, and current trends. Here, we focus on recent developments in soft robotic applications for the medical field including advances in cardiac devices, surgical robots, and soft rehabilitation and assistance devices. In medical applications, soft robotic devices not only expedite the evolution of minimally invasive surgery but also improve the bio-compatibility of rehabilitation and assistance devices. Here, we evaluate design requirements, mechanisms, achievements and challenges in these key areas. Of particular note, this paper concludes with a discussion on advances in 3D printing and adapting neural networks for modeling and control frameworks that have facilitated the development of faster and less expensive soft medical devices.
机译:BioinSpired软机器人允许与人类患者的更安全的临床相互作用,但常规的硬机器人通常用刚性材料和复杂的控制系统构成,损害组织完整性,运动自由,适应性和总体生物相容性。柔软,柔顺的材料本质上减少机械复杂性,适应其使用环境,为医疗器械开发提供良好的实用潜力。以前的审查论文通常涵盖了材料的主题,制造工艺,执行器建模和控制以及当前趋势。在这里,我们专注于医疗领域的软机器人应用中的最新发展,包括心脏装置,手术机器人和软康复和辅助装置的进步。在医疗应用中,软机器人设备不仅加快了微创手术的演变,还可以提高康复和辅助设备的生物兼容性。在这里,我们评估这些关键领域的设计要求,机制,成果和挑战。特别注意,本文讨论了3D打印的进步,并适应了用于建模和控制框架的神经网络,这促进了更快,更便宜的软医疗设备的开发。

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