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The RIC Arm—A Small Anthropomorphic Transhumeral Prosthesis

机译:RIC臂-一种小型拟人化的肱骨假体

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Recent advances in motor and gear designs have accelerated the development of multi-degree of freedom prosthetic limbs controlled by novel electromyographic signal processing techniques. Most of these new devices have focused on improved performance at the expense of other critical factors for clinical use, such as weight and bulk, which significantly affect cosmesis and comfort. This paper presents the mechatronic design of an anthropomorphic transhumeral prosthetic arm-the Rehabilitation Institute of Chicago (RIC) arm-that is small enough for a 25th percentile female and weighs only 1518 g. Specifically, we describe the design of the RIC arm, including the integration of custom external rotor motors, cycloid transmissions, nonbackdrivable clutches, and custom pattern recognition control. Mechanics and control performance of the RIC arm were evaluated within the laboratory, and clinical viability was preliminary evaluated during a take-home field trial by an individual with a transhumeral amputation.
机译:电动机和齿轮设计的最新进展加速了由新型肌电信号处理技术控制的多自由度假肢的发展。这些新设备中的大多数都集中在提高性能上,而牺牲了临床使用的其他关键因素,例如重量和体积,这些因素显着影响了美容和舒适度。本文介绍了拟人化的肱骨假肢手臂(芝加哥康复研究所(RIC)手臂)的机电设计,该机器人的体积足够容纳25%的女性,重量仅为1518 g。具体来说,我们描述了RIC臂的设计,包括定制外转子电动机,摆线变速器,不可逆转离合器和定制模式识别控制的集成。在实验室内评估了RIC臂的力学性能和控制性能,并在进行经肱骨截肢的个人进行的实地田间试验中初步评估了临床可行性。

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