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用于混合神经假体的液压动力辅助系统的可行性。

Feasibility of a Hydraulic Power Assist System for Use in Hybrid Neuroprostheses.

作者信息

Foglyano Kevin M, Kobetic Rudi, To Curtis S, Bulea Thomas C, Schnellenberger John R, Audu Musa L, Nandor Mark J, Quinn Roger D, Triolo Ronald J

机构信息

Advanced Platform Technology Center, Louis Stokes Cleveland Department of Veterans Affairs Medical Center, Cleveland, OH 44106, USA.

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Appl Bionics Biomech. 2015;2015:205104. doi: 10.1155/2015/205104. Epub 2015 Mar 18.

Abstract

Feasibility of using pressurized hydraulic fluid as a source of on-demand assistive power for hybrid neuroprosthesis combining exoskeleton with functional neuromuscular stimulation was explored. Hydraulic systems were selected as an alternative to electric motors for their high torque/mass ratio and ability to be located proximally on the exoskeleton and distribute power distally to assist in moving the joints. The power assist system (PAS) was designed and constructed using off-the-shelf components to test the feasibility of using high pressure fluid from an accumulator to provide assistive torque to an exoskeletal hip joint. The PAS was able to provide 21 Nm of assistive torque at an input pressure of 3171 kPa with a response time of 93 ms resulting in 32° of hip flexion in an able-bodied test. The torque output was independent of initial position of the joint and was linearly related to pressure. Thus, accumulator pressure can be specified to provide assistive torque as needed in exoskeletal devices for walking or stair climbing beyond those possible either volitionally or with electrical stimulation alone.

摘要

探讨了将加压液压流体用作结合外骨骼与功能性神经肌肉刺激的混合神经假体的按需辅助动力源的可行性。选择液压系统作为电动机的替代方案,因为其具有高扭矩/质量比,并且能够位于外骨骼的近端并向远端分配动力以协助关节运动。使用现成的组件设计并构建了动力辅助系统(PAS),以测试使用蓄能器中的高压流体为外骨骼髋关节提供辅助扭矩的可行性。在健全测试中,PAS能够在3171kPa的输入压力下提供21 Nm的辅助扭矩,响应时间为93ms,从而实现32°的髋关节屈曲。扭矩输出与关节的初始位置无关,并且与压力呈线性关系。因此,可以指定蓄能器压力,以根据需要在外骨骼装置中提供辅助扭矩,用于行走或爬楼梯,这超出了单独通过意志或电刺激所能实现的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73f5/4745429/9c292b4ecf6a/ABB2015-205104.001.jpg

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