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首页> 外文期刊>Journal of Biomechanics >The influence of altering push force effectiveness on upper extremity demand during wheelchair propulsion.
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The influence of altering push force effectiveness on upper extremity demand during wheelchair propulsion.

机译:轮椅推进过程中改变推力效果对上肢需求的影响。

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Manual wheelchair propulsion has been linked to a high incidence of overuse injury and pain in the upper extremity, which may be caused by the high load requirements and low mechanical efficiency of the task. Previous studies have suggested that poor mechanical efficiency may be due to a low effective handrim force (i.e. applied force that is not directed tangential to the handrim). As a result, studies attempting to reduce upper extremity demand have used various measures of force effectiveness (e.g., fraction effective force, FEF) as a guide for modifying propulsion technique, developing rehabilitation programs and configuring wheelchairs. However, the relationship between FEF and upper extremity demand is not well understood. The purpose of this study was to use forward dynamics simulations of wheelchair propulsion to determine the influence of FEF on upper extremity demand by quantifying individual muscle stress, work and handrim force contributions at different values of FEF. Simulations maximizing and minimizing FEF resulted in higher average muscle stresses (23% and 112%) and total muscle work (28% and 71%) compared to a nominal FEF simulation. The maximal FEF simulation also shifted muscle use from muscles crossing the elbow to those at the shoulder (e.g., rotator cuff muscles), placing greater demand on shoulder muscles during propulsion. The optimal FEF value appears to represent a balance between increasing push force effectiveness to increase mechanical efficiency and minimize upper extremity demand. Thus, care should be taken in using force effectiveness as a metric to reduce upper extremity demand.
机译:手动轮椅推进与过度使用上肢受伤和上肢疼痛的发生率高有关,这可能是由于任务的高负荷要求和低机械效率引起的。先前的研究表明,较差的机械效率可能是由于有效的手腕力低(即施加的力未切向手缘)造成的。结果,试图减少上肢需求的研究已经使用了各种力量有效性测量方法(例如,分数有效力,FEF)作为修改推进技术,制定康复计划和配置轮椅的指南。但是,人们对FEF与上肢需求之间的关系还不甚了解。这项研究的目的是使用轮椅推进的前向动力学模拟,通过量化在不同FEF值下的个体肌肉压力,功和手腕力贡献,来确定FEF对上肢需求的影响。与标称FEF模拟相比,最​​大化和最小化FEF的模拟产生了更高的平均肌肉压力(23%和112%)和总的肌肉功(28%和71%)。最大的FEF模拟还将肌肉的使用从横过肘部的肌肉转移到肩部的肌肉(例如肩袖肌),从而在推进过程中对肩部肌肉提出了更高的要求。最佳FEF值似乎代表着增加推力效果,提高机械效率和最小化上肢需求之间的平衡。因此,应注意使用力量有效性作为减少上肢需求的指标。

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