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首页> 外文期刊>Theoretical and Experimental Plant Physiology >Assessment of physiological performance and perception of pushing different wheelchairs on indoor modular units simulating a surface roughness often encountered in under-resourced settings
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Assessment of physiological performance and perception of pushing different wheelchairs on indoor modular units simulating a surface roughness often encountered in under-resourced settings

机译:在室内模块化单元上推动不同轮椅的生理性能和感知的评估通常遇到的资源粗糙度

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摘要

In under-resourced settings where motorized wheelchairs are rarely available, manual wheelchair users with limited upper-body strength and functionalities need to rely on assisting pushers for their mobility. Because traveling surfaces in under-resourced settings are often unpaved and rough, wheelchair pushers could experience high physiological loading. In order to evaluate pushers' physiological loading and to improve wheelchair designs, we built indoor modular units that simulate rough surface conditions, and tested a hypothesis that pushing different wheelchairs would result in different physiological performances and pushers' perception of difficulty on the simulated rough surface. Eighteen healthy subjects pushed two different types of pediatric wheelchairs (Moti-Go manufactured by Motivation, and KidChair by Hope Haven) fitted with a 50-kg dummy on the rough and smooth surfaces at self-selected speeds. Oxygen uptake, traveling distance for 6 minutes, and the rating of difficulty were obtained. The results supported our hypothesis, showing that pushing Moti-Go on the rough surface was physiologically less loading than KidChair, but on the smooth surface, the two wheelchairs did not differ significantly. These results indicate wheelchair designs to improve pushers' performance in under-resourced settings should be evaluated on rough surfaces.
机译:在资源不足的空间较少可用的资源中,上半身强度和功能有限的手动轮椅用户需要依靠辅助推动者进行流动性。由于资源不足设置的行驶表面通常是未铺砌和粗糙的,轮椅推动器可能会遇到高生理负载。为了评估推动者的生理负载和改进轮椅设计,我们建立了模拟粗糙表面条件的室内模块化单元,并测试了推动不同轮椅的假设会导致不同的生理性能和推动者对模拟粗糙表面的难度的看法。十八个健康的科目推动了两种不同类型的儿科轮椅(Moti-Go通过动机制造,Kidchair By Hape Haven),在自选速度下粗糙和光滑的表面上有50公斤的假人。氧气吸收,行驶距离6分钟,获得难度的额定值。结果支持我们的假设,表明推动的动机在粗糙的表面上的粗糙表面比Kidchair更少,但在光滑的表面上,两个轮椅没有显着差异。这些结果表示轮椅设计,以提高推动者在资源不足的环境中的性能,应在粗糙的表面上进行评估。

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