手动-电动混合轮椅推进系统对使用者肌肉力量的影响

IF 1 Q4 ENGINEERING, MECHANICAL Acta Mechanica et Automatica Pub Date : 2023-01-01 DOI:10.2478/ama-2023-0003
B. Wieczorek, Ł. Warguła, M. Kukla
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引用次数: 0

摘要

摘要自行轮椅有利于康复过程,迫使使用者进行身体活动。不幸的是,在大多数情况下,手动推进不能适应用户的个人需求和身体能力。本文介绍了装有混合动力推进系统的轮椅的运行测试结果,在该系统中,使用者产生的肌肉力量由两个独立的电动机辅助。本研究旨在研究应用控制算法和辅助因子(W)对使用推轮圈推动轮椅时肌肉力量(MA)值的影响。本研究使用了一种改良的ARmedical AR-405轮椅,该轮椅配有两个内置在轮椅轮毂中的MagicPie 5电动机,功率为500 W。试验在轮椅试验台上进行,模拟8-11 Nm范围内的阻力矩。表面肌电图用于测量MA,特别是四通道Noraxon Mini-DTS仪器。这项研究是在C50人体测量尺寸组的五名患者身上进行的。测量了四块肌肉的力量:三角肌前部、三角肌后部、肱三头肌和桡侧腕长伸肌。基于桡侧腕长伸肌观察了混合推进系统的有效性。在这种情况下,对于标准轮椅,MA在93%到123%之间。相反,对于配备混合动力推进系统的轮椅,当W=70%时,MA在43%–75%的范围内。
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Influence of a Hybrid Manual–Electric Wheelchair Propulsion System on the User’s Muscular Effort
Abstract Self-propelled wheelchairs favour the rehabilitation process, forcing the user to be physically active. Unfortunately, in most cases, the manual propulsion is not adapted to the individual needs and physical capabilities of the user. This paper presents the results of operational tests of a wheelchair equipped with a hybrid propulsion system in which the muscle strength generated by the user is assisted by two independent electric motors. The research aimed to investigate the influence of the applied control algorithm and the assistance factor (W) on the value of the muscular effort (MA) while propelling the wheelchair with the use of push rims. A modified ARmedical AR-405 wheelchair equipped with two MagicPie 5 electric motors built into the wheelchair’s hubs with a power of 500 W was used in this research. The tests were carried out on a wheelchair test bench simulating the moment of resistance within the range of 8–11 Nm. Surface electromyography was employed for the measurement of MA, specifically, a four-channel Noraxon Mini DTS apparatus. The research was carried out on five patients from the group of C50 anthropometric dimensions. The effort was measured for four muscles: deltoid–anterior part, deltoid–posteriori part, and triceps brachii and extensor carpi radialis longus. The effectiveness of the hybrid propulsion system was observed based on the extensor carpi radialis longus muscle. In this case, for the standard wheelchair, the MA ranged from 93% to 123%. In contrast, for a wheelchair equipped with the hybrid propulsion system, at W = 70%, the MA was within the range of 43%–75%.
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来源期刊
Acta Mechanica et Automatica
Acta Mechanica et Automatica ENGINEERING, MECHANICAL-
CiteScore
1.40
自引率
0.00%
发文量
45
审稿时长
30 weeks
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