用于创伤和瘫痪手的驱动外骨骼的预制设计

H. Baqapuri, Hamza Asif Nizami, S. Siddiqui, J. Iqbal, U. Shahbaz
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引用次数: 3

摘要

部分瘫痪通常是由于脊髓损伤引起的,这通常意味着患者手部的一些功能丧失。本文介绍了一种新的外骨骼模型设计,它将恢复手部的基本日常活动,如抓握和捏捏。这也适用于身体较弱的人,如老年人或患有神经肌肉疾病的人。这种设计制造起来很经济,因此一般人也负担得起。该结构由轻质材料制成,其设计密切基于肌腱驱动,这就是人手的功能。使用四个伺服电机来关闭和打开握把,拇指固定在特定位置,可以手动调整。螺纹通过伺服电机驱动外骨骼结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prefabrication design of an actuated exoskeleton for traumatized and paralytic hands
Partial Paralysis often occurs due to spinal cord injuries, which generally means some functionality loss in the hands of the affected. This paper covers a novel model design of an exoskeleton which will restore hand use for basic daily activities such as gripping and pinching. This also has applications for individuals who may be physically weaker such as the elderly or those with neuromuscular diseases. The design is economical to manufacture and hence affordable to the commoner. The structure is made of lightweight materials and the design is based closely on tendon actuation, which is how the human hand functions. Four servo motors are used to close and open the grip, with the thumb fixed in a specific position, which can be adjusted manually. Threads are used to actuate the exoskeleton structure by the servo motors.
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