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New developments in prosthetic arm systems

机译:假肢系统的新发展

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摘要

Absence of an upper limb leads to severe impairments in everyday life, which can further influence the social and mental state. For these reasons, early developments in cosmetic and body-driven prostheses date some centuries ago, and they have been evolving ever since. Following the end of the Second World War, rapid developments in technology resulted in powered myoelectric hand prosthetics. In the years to come, these devices were common on the market, though they still suffered high user abandonment rates. The reasons for rejection were trifold – insufficient functionality of the hardware, fragile design, and cumbersome control. In the last decade, both academia and industry have reached major improvements concerning technical features of upper limb prosthetics and methods for their interfacing and control. Advanced robotic hands are offered by several vendors and research groups, with a variety of active and passive wrist options that can be articulated across several degrees of freedom. Nowadays, elbow joint designs include active solutions with different weight and power options. Control features are getting progressively more sophisticated, offering options for multiple sensor integration and multi-joint articulation. Latest developments in socket designs are capable of facilitating implantable and multiple surface electromyography sensors in both traditional and osseointegration-based systems. Novel surgical techniques in combination with modern, sophisticated hardware are enabling restoration of dexterous upper limb functionality. This article is aimed at reviewing the latest state of the upper limb prosthetic market, offering insights on the accompanying technologies and techniques. We also examine the capabilities and features of some of academia’s flagship solutions and methods.
机译:上肢的缺失会导致日常生活中的严重障碍,从而可能进一步影响社会和精神状态。由于这些原因,化妆品假肢和人体假肢的早期发展可以追溯到几个世纪前,并且自那时以来一直在发展。第二次世界大战结束后,技术的飞速发展产生了动力性的肌电手假体。在未来的几年中,这些设备在市场上很普遍,尽管它们仍然遭受很高的用户放弃率。拒绝的原因有三方面:硬件功能不足,设计脆弱以及控制麻烦。在过去的十年中,学术界和工业界在上肢假体的技术特征以及接口和控制方法上都取得了重大进步。多家供应商和研究小组提供了先进的机械手,并提供了多种主动和被动手腕选项,这些选项可以在多个自由度上进行连接。如今,肘关节设计包括具有不同重量和功率选项的主动解决方案。控制功能越来越复杂,为多种传感器集成和多关节铰接提供了选择。插座设计的最新发展能够促进传统和基于骨整合的系统中的植入式和多表面肌电传感器。新颖的外科手术技术与现代先进的硬件相结合,可以恢复灵巧的上肢功能。本文旨在回顾上肢假体市场的最新状况,提供有关随附技术的见解。我们还将研究一些学术界旗舰解决方案和方法的功能和特性。

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