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Biomechatronics design of a novel artificial arm

机译:新型人工手臂的生物机电设计

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This paper presents a biomechatronic approach to the design and fabrication of an artificial arm, focusing on designing artificial shoulder, biceps, wrist and hand. The proposed design provides a novel tool towards upper limb amputee rehabilitation process. Detail 3D designs of the artificial arm are described including an elbow powered by a car's power window motor, DC motor powered wrist and a string actuated Artificial Hand Gripper (AHG) with 5 artificial fingers which acts as slave controlled by a Smart Glove (master). The AHG incorporates a master-slave system which proven suitable for Mirror Visual Feedback (MVF) therapy experimented on subject towards the completion of this research. There are many hand prostheses which is commercially available, however, due to the disadvantages such as weight, expensive and complex mechanism, this paper proposed new ideas on problem solving by providing an artificial arm which gives good cosmetic appearance, functional, low-cost and users friendly.
机译:本文提出了一种用于设计和制造人造手臂的生物机电一体化方法,重点是设计人造肩膀,二头肌,手腕和手。提出的设计为上肢截肢者的康复过程提供了一种新颖的工具。描述了人造手臂的详细3D设计,包括由汽车电动窗电机提供动力的肘部,由直流电机提供动力的手腕以及带有5个人造手指的弦动人造手抓爪(AHG),其由Smart Glove(主手套)控制为从动件。 。 AHG集成了一个主从系统,事实证明该主从系统适用于在完成本研究后针对受试者进行了实验的镜像视觉反馈(MVF)治疗。市场上有很多手用假肢,但是由于其重量大,价格昂贵和机构复杂等缺点,本文提出了一种新的解决方法,即通过提供一种具有良好外观,功能性,低成本和高品质的人造手臂来解决问题。用户友好。

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