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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Case-study of a user-driven prosthetic arm design: bionic hand versus customized body-powered technology in a highly demanding work environment
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Case-study of a user-driven prosthetic arm design: bionic hand versus customized body-powered technology in a highly demanding work environment

机译:用户驱动的假肢设计案例研究:在高要求的工作环境中仿生手与定制人体动力技术的比较

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BackgroundProsthetic arm research predominantly focuses on “bionic” but not body-powered arms. However, any research orientation along user needs requires sufficiently precise workplace specifications and sufficiently hard testing. Forensic medicine is a demanding environment, also physically, also for non-disabled people, on several dimensions (e.g., distances, weights, size, temperature, time). MethodsAs unilateral below elbow amputee user, the first author is in a unique position to provide direct comparison of a “bionic” myoelectric iLimb Revolution (Touch Bionics) and a customized body-powered arm which contains a number of new developments initiated or developed by the user: (1) quick lock steel wrist unit; (2) cable mount modification; (3) cast shape modeled shoulder anchor; (4) suspension with a soft double layer liner (Ohio Willowwood) and tube gauze (Molnlycke) combination. The iLimb is mounted on an epoxy socket; a lanyard fixed liner (Ohio Willowwood) contains magnetic electrodes (Liberating Technologies). An on the job usage of five years was supplemented with dedicated and focused intensive two-week use tests at work for both systems. ResultsThe side-by-side comparison showed that the customized body-powered arm provides reliable, comfortable, effective, powerful as well as subtle service with minimal maintenance; most notably, grip reliability, grip force regulation, grip performance, center of balance, component wear down, sweat/temperature independence and skin state are good whereas the iLimb system exhibited a number of relevant serious constraints. ConclusionsResearch and development of functional prostheses may want to focus on body-powered technology as it already performs on manually demanding and heavy jobs whereas eliminating myoelectric technology’s constraints seems out of reach. Relevant testing could be developed to help expediting this. This is relevant as Swiss disability insurance specifically supports prostheses that enable actual work integration. Myoelectric and cosmetic arm improvement may benefit from a less forgiving focus on perfecting anthropomorphic appearance.
机译:背景技术假肢研究主要集中在“仿生”武器上,而不是身体动力武器。但是,任何基于用户需求的研究方向都需要足够精确的工作场所规范和足够的硬性测试。法医医学对身体残障人士来说也是一个苛刻的环境,在几个方面(例如,距离,重量,大小,温度,时间)。方法作为肘部截肢者的单侧使用者,第一作者处于独特的位置,可以直接比较“仿生”肌电iLimb Revolution(Touch仿生学)和定制的人体动力手臂,该手臂包含许多由人体学引发或开发的新技术。用户:(1)快速锁定钢制腕带单元; (2)电缆固定架的修改; (3)铸造造型的肩锚; (4)悬浮液与柔软的双层衬里(俄亥俄州Willowwood)和管纱布(Molnlycke)结合使用。 iLimb安装在环氧树脂插座上;挂绳固定衬里(俄亥俄州Willowwood)包含磁性电极(解放技术)。五年的在职使用情况在两个系统的工作中都进行了专门且集中的密集两周使用测试的补充。结果并排比较表明,定制的身体动力手臂可提供可靠,舒适,有效,强大且细腻的服务,且维护成本极低;最值得注意的是,抓地力可靠性,抓地力调节力,抓地力性能,平衡中心,组件磨损,汗液/温度独立性和皮肤状态都不错,而iLimb系统则表现出许多相关的严重限制。结论功能性假体的研究和开发可能希望专注于身体动力技术,因为它已经完成了手动工作和繁重的工作,而消除肌电技术的限制似乎遥不可及。可以开发相关的测试来帮助加快这一过程。这很重要,因为瑞士伤残保险专门支持可实现实际工作整合的假肢。肌电和美容臂的改善可能受益于对拟人化外观的不太宽容的关注。

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