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Rolling resistance and propulsion efficiency of manual and power-assisted wheelchairs

机译:手动和电动轮椅的滚动阻力和推进效率

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Rolling resistance is one of the main forces resisting wheelchair propulsion and thus affecting stress exerted on the upper limbs. The present study investigates the differences in rolling resistance, propulsion efficiency and energy expenditure required by the user during power-assisted and manual propulsion. Different tire pressures (50%, 75%, 100%) and two different levels of motor assistance were tested. Drag force, energy expenditure and propulsion efficiency were measured in 10 able-bodied individuals under different experimental settings on a treadmill. Results showed that drag force levels were significantly higher in the 50%, compared to the 75% and 100% inflation conditions. In terms of wheelchair type, the manual wheelchair displayed significantly lower drag force values than the power-assisted one. The use of extra-power-assisted wheelchair appeared to be significantly superior to conventional power-assisted and manual wheelchairs concerning both propulsion efficiency and energy expenditure required by the user. Overall, the results of the study suggest that the use of power-assisted wheelchair was more efficient and required less energy input by the user, depending on the motor assistance provided. (C) 2015 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:滚动阻力是抵抗轮椅推进并因此影响施加在上肢上的压力的主要力量之一。本研究调查了用户在动力辅助和手动推进过程中所需的滚动阻力,推进效率和能量消耗的差异。测试了不同的轮胎压力(50%,75%,100%)和两种不同水平的马达辅助。在跑步机上的不同实验设置下,对10位强健的个体进行了阻力,能量消耗和推进效率的测量。结果表明,与75%和100%的充气条件相比,在50%的阻力水平明显更高。就轮椅类型而言,手动轮椅的拖曳力值明显低于电动轮椅。在使用者的推进效率和能量消耗方面,使用超电动轮椅似乎明显优于传统的电动轮椅和手动轮椅。总体而言,研究结果表明,根据所提供的运动辅助,使用电动轮椅更为有效,并且用户所需的能量输入更少。 (C)2015年IPEM。由Elsevier Ltd.出版。保留所有权利。

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