...
首页> 外文期刊>Clinical biomechanics >Simulated effect of reaction force redirection on the upper extremity mechanical demand imposed during manual wheelchair propulsion
【24h】

Simulated effect of reaction force redirection on the upper extremity mechanical demand imposed during manual wheelchair propulsion

机译:反作用力重定向对手动轮椅推进过程中上肢机械需求的模拟影响

获取原文
获取原文并翻译 | 示例
           

摘要

Background: Manual wheelchair propulsion is associated with overuse injuries of the shoulder. Reaction force redirection relative to upper extremity segments was hypothesized as a means to redistribute mechanical load imposed on the upper extremity without decrements in wheelchair propulsion performance. Methods: Two individuals performed wheelchair propulsion under simulated inclined (graded) conditions using self-selected control strategies. Upper extremity kinematics and reaction forces applied to the wheel were quantified and used as input into an experiment-based multi-link inverse dynamics model that incorporates participant-specific experimental results. Reaction force direction was systematically modified to determine the mechanical demand imposed on the upper extremity (elbow and shoulder net joint moments and net joint forces) during wheelchair propulsion. Results were presented as solution spaces to examine the upper extremity load distribution characteristics within and between participants across a range of reaction force directions. Findings: Redirection of the reaction force relative to the upper extremity segments provides multiple solutions for redistributing mechanical demand across the elbow and shoulder without decrements in manual wheelchair propulsion performance. The distribution of load across RF directions was participant specific and was found to vary with time during the push phase. Interpretation: Solution spaces provide a mechanical basis for individualized interventions that aim to maintain function and redistribute load away from structures at risk for injury (e.g. reduce demand imposed on shoulder flexors (reduce shoulder net joint moment) or reduce potential for impingement (reduce shoulder net joint force).
机译:背景:手动轮椅推进与过度使用肩膀受伤有关。相对于上肢节段的反作用力重定向被认为是一种重新分配施加在上肢的机械负载而不会降低轮椅推进性能的方法。方法:两个人在模拟的倾斜(渐变)条件下使用自我选择的控制策略执行轮椅推进。量化施加到车轮的上肢运动学和反作用力,并将其用作基于实验的多链接逆动力学模型的输入,该模型结合了参与者特定的实验结果。系统地修改了反作用力方向,以确定在轮椅推进过程中施加在上肢的机械需求(肘和肩部的净关节力矩和净关节力)。结果显示为解决空间,以检查在一系列反作用力方向上参与者之间以及参与者之间的上肢负荷分布特征。研究结果:相对于上肢的反作用力重定向提供了多种解决方案,可在肘部和肩部重新分配机械需求,而不会降低手动轮椅推进性能。射频方向上的负载分布是特定于参与者的,并且在推送阶段会随时间而变化。解释:解决方案空间为个性化干预提供了机械基础,这些干预旨在保持功能并重新分配载荷,使结构远离受伤危险(例如,减少对肩屈肌的要求(减少肩净关节力矩)或减少撞击的可能性(减少肩净)联合力量)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号