首页> 外文期刊>Archives of Physical Medicine and Rehabilitation >Impact of surface type, wheelchair weight, and axle position on wheelchair propulsion by novice older adults.
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Impact of surface type, wheelchair weight, and axle position on wheelchair propulsion by novice older adults.

机译:新手老年人的表面类型,轮椅重量和轴位置对轮椅推进力的影响。

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OBJECTIVE: To examine the impact of surface type, wheelchair weight, and rear axle position on older adult propulsion biomechanics. DESIGN: Crossover trial. SETTING: Biomechanics laboratory. PARTICIPANTS: Convenience sample of 53 ambulatory older adults with minimal wheelchair experience (65-87y); men, n=20; women, n=33. INTERVENTION: Participants propelled 4 different wheelchair configurations over 4 surfaces: tile, low carpet, high carpet, and an 8% grade ramp (surface, chair order randomized). Chair configurations included (1) unweighted chair with an anterior axle position, (2) 9.05 kg weighted chair with an anterior axle position, (3) unweighted chair with a posterior axle position (Delta0.08 m), and (4) 9.05 kg weighted chair with a posterior axle position (Delta0.08 m). Weight was added to a titanium folding chair, simulating the weight difference between very light and depot wheelchairs. Instrumented wheels measured propulsion kinetics. MAIN OUTCOME MEASURES: Average self-selected velocity, push frequency, stroke length, peak resultant and tangential force. RESULTS: Velocity decreased as surface rolling resistance or chair weight increased. Peak resultant and tangential forces increased as chair weight increased, as surface resistance increased, and with a posterior axle position. The effect of a posterior axle position was greater on high carpet and the ramp. The effect of weight was constant, but was more easily observed on high carpet and ramp. The effects of axle position and weight were independent of one another. CONCLUSION: Increased surface resistance decreases self-selected velocity and increases peak forces. Increased weight decreases self-selected velocity and increases forces. Anterior axle positions decrease forces, more so on high carpet. The effects of weight and axle position are independent. The greatest reductions in peak forces occur in lighter chairs with anterior axle positions.
机译:目的:研究表面类型,轮椅重量和后轴位置对老年人推进生物力学的影响。设计:交叉试验。单位:生物力学实验室。参加者:53名非卧床老年人的便利性样本,他们的轮椅经验最少(65-87岁);男人,n = 20;女人,n = 33。干预:参与者在4个表面上推进了4种不同的轮椅配置:瓷砖,低地毯,高地毯和8%坡度(表面,椅子顺序随机)。椅子配置包括(1)前轴位置的失重椅子,(2)前轴位置的失重椅子9.05 kg,(3)后轴位置的失重椅子(Delta0.08 m)和(4)9.05 kg后轴位置(Delta0.08 m)的配重椅子。将重量添加到钛合金折叠椅上,模拟非常轻便的轮椅和仓库轮椅之间的重量差异。装有仪表的车轮测量了推进动力学。主要观察指标:平均自选速度,推动频率,冲程长度,峰值合力和切向力。结果:速度随着表面滚动阻力或椅子重量的增加而降低。峰值合力和切向力随着椅子重量的增加,表面阻力的增加以及后轴位置的增加而增加。后轴位置对高地毯和坡道的影响更大。重量的影响是恒定的,但在高地毯和坡道上更容易观察到。轴位置和重量的影响彼此独立。结论:增加的表面电阻会降低自选速度并增加峰值力。重量增加会降低自选速度并增加作用力。前轴位置减小了作用力,高地毯上的作用更是如此。重量和轴位置的影响是独立的。峰值力的最大减小发生在前轴位置较轻的椅子上。

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