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A Soft High Force Hand Exoskeleton for Rehabilitation and Assistance of Spinal Cord Injury and Stroke Individuals

机译:柔软的高能手外骨骼,用于脊髓损伤和中风个体的康复和协助

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Individuals with spinal cord injury (SCI) and stroke who is lack of manipulation capability have a particular need for robotic hand exoskeletons. Among assistive and rehabilitative medical exoskeletons, there exists a sharp trade-off between device power on the one hand and ergonomics and portability on other, devices that provide stronger grasping assistance do so at the cost of patient comfort. This paper proposes using fin-ray-inspired, cable-driven finger orthoses to generate high fingertip forces without the painful compressive and shear stresses commonly associated with conventional cable-drive exoskeletons. With combination cable-driven transmission and segmented-finger orthoses, the exoskeleton transmitted larger forces and applied torques discretely to the fingers, leading to strong fingertip forces. A prototype of the finger orthoses and associated cable transmission was fabricated, and force transmission tests of the prototype in the finger flexion mode demonstrated a 2:1 input-output ratio between cable tension and fingertip force, with a maximum fingertip force of 22 N. Moreover, the proposed design provides a comfortable experience for wearers thanks to its lightweight and conformal properties to the hands.
机译:缺乏操纵能力的脊髓损伤(SCI)和中风患者特别需要机械手外骨骼。在辅助性和康复性医疗外骨骼中,一方面在设备功能与人机工程学和便携性之间存在着巨大的权衡,但提供更强抓握帮助的设备却以患者舒适为代价。本文提出了使用受鳍射线启发的,电缆驱动的手指矫形器来产生高指尖力的方法,而不会产生通常与常规电缆驱动外骨骼相关的痛苦的压缩应力和剪切应力。结合电缆驱动的传动装置和分段的手指矫形器,外骨骼可以传递更大的力,并离散地将扭矩施加到手指上,从而产生强大的指尖力。制作了手指矫形器的原型以及相关的缆线传输,并且在手指屈曲模式下对该原型进行的力传输测试表明,缆线张力与指尖力之间的输入输出比为2:1,最大指尖力为22N。此外,由于其轻巧的手形特性,建议的设计为佩戴者提供了舒适的体验。

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