Introducing V-Soft Pro: A Modular Platform for a Transhumeral Prosthesis with Controllable Stiffness.

Giuseppe Milazzo, Giorgio Grioli, Antonio Bicchi, Manuel G Catalano
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引用次数: 0

Abstract

Current upper limb prostheses aim to enhance user independence in daily activities by incorporating basic motor functions. However, they fall short of replicating the natural movement and interaction capabilities of the human arm. In contrast, human limbs leverage intrinsic compliance and actively modulate joint stiffness, enabling adaptive responses to varying tasks, impact absorption, and efficient energy transfer during dynamic actions. Inspired by this adaptability, we developed a transhumeral prosthesis with Variable Stiffness Actuators (VSAs) to replicate the controllable compliance found in biological joints. The proposed prosthesis features a modular design, allowing customization for different residual limb shapes and accommodating a range of independent control signals derived from users' biological cues. Integrated elastic elements passively support more natural movements, facilitate safe interactions with the environment, and adapt to diverse task requirements. This paper presents a comprehensive overview of the platform and its functionalities, highlighting its potential applications in the field of prosthetics.

V-Soft Pro:一个可控制刚度的肱骨假体模块化平台。
目前的上肢假肢旨在通过整合基本的运动功能来增强使用者在日常活动中的独立性。然而,它们无法复制人类手臂的自然运动和相互作用能力。相比之下,人的四肢利用固有的顺应性和主动调节关节刚度,在动态动作中实现对不同任务的自适应响应、冲击吸收和有效的能量传递。受这种适应性的启发,我们开发了一种带有可变刚度致动器(VSAs)的经肱骨假体,以复制生物关节中的可控顺应性。所提出的假肢采用模块化设计,允许定制不同的残肢形状,并适应来自用户生物线索的一系列独立控制信号。集成的弹性元件被动地支持更自然的运动,促进与环境的安全互动,并适应不同的任务要求。本文全面介绍了该平台及其功能,重点介绍了其在假肢领域的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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