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Evaluation of two wheelchair hand rim models: contact pressure distribution in straight line and curve trajectories

机译:两种轮椅手缘模型的评估:直线和曲线轨迹上的接触压力分布

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摘要

Manual wheelchairs are essential for people with disabilities or limited mobility. However, manual propulsion causes biomechanical loads, including contact pressures on the palms of the hands. The hand rim design has received little attention over time, remaining almost unchanged since its creation. This study investigated how two different designs of such devices - one standard and another with a contoured design - influence the contact pressure on the surface of the hands. The procedures included a figure-of-eight shape propulsion task on a regular floor, using both models on a wheelchair. A pressure-mapping system coupled with a pair of fabric gloves recorded the data. The results show that the contoured hand rim provides lower pressure in most of the analysed regions. Considering that manual propulsion is performed during a considerable part of the day as a routine activity, improving the hand rim interface may benefit the user's comfort and safety during wheelchair use. Practitioner summary: The design of the hand rim used in wheelchair propulsion influences the contact pressure on the hands. Conventional round tube rims tend to concentrate high levels of pressure on the distal phalanges and metacarpal regions. A contoured design generally provides better stability and promotes the distribution of pressure.
机译:手动轮椅对于残疾人或行动不便的人来说至关重要。但是,手动推进会引起生物机械负荷,包括手掌上的接触压力。随着时间的流逝,手轮圈设计几乎没有受到关注,自其创建以来几乎保持不变。这项研究调查了这种设备的两种不同设计(一种标准设计和另一种采用轮廓设计的设计)如何影响手表面的接触压力。程序包括在普通地板上使用两个模型在轮椅上进行八字形推进任务。压力映射系统与一副织物手套结合在一起记录数据。结果表明,轮廓化的手缘在大多数分析区域中提供了较低的压力。考虑到在一天的相当长的一段时间中作为日常活动进行手动推进,改善手缘界面可在轮椅使用期间有益于使用者的舒适性和安全性。从业者摘要:用于轮椅推进的手缘设计会影响手的接触压力。常规的圆管轮缘倾向于将高水平的压力集中在远端指骨和掌骨区域。轮廓设计通常提供更好的稳定性并促进压力分布。

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