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Optimal Seat and Footrest Positions of Manual Standing Wheelchair

机译:手动驻塞轮椅的最佳座椅和脚凳位置

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摘要

A standing wheelchair is highly recommended to an individual suffering from secondary complications due to long-term sitting in a standard wheelchair. However, the newly-designed standing wheelchair has hand rims separate from the wheels, likely affecting the biomechanical characteristics and the efficiency of propulsion. The objectives of this dissertation were aimed to propose a method to determine the optimal riding position by evaluating energy expenditure during manual standing wheelchair propulsion. Ten elderly male subjects were asked to propel the hand rims with nine different seat (while sitting) and footrest (while standing) positions. During the experiments, kinematic and kinetic data were simultaneously obtained using a 3D motion capture system and a brake-type wheelchair dynamometer, respectively. Upper-limb joint torques and total propulsion energy were determined using a planar link-segment model with the optimization technique based on minimal joint torque criteria. Shorter subjects had the lowest total propulsion energy expenditure in the downward-forward and middle-forward positions, while closest to the hand rims. However, taller subjects had the lowest total propulsion energy expenditure in the downward-center and middle-center positions, while a little further from the hand rims. We believe that these methods and results will be helpful in assessing the adequacy of the riding position of various types of wheelchair.
机译:由于长期坐在标准轮椅上,强烈建议使用常设轮椅对患有二次并发症的个体。然而,新设计的常设轮椅用手动轮辋与车轮分开,可能影响生物力学特性和推进效率。本论文的目标旨在提出一种通过评估手动常设轮椅推进的能量消耗来确定最佳骑行位置的方法。要求十名老年男性受试者推动用九个不同座位(坐着)和脚凳(在站立时)位置的手轮。在实验期间,使用3D运动捕获系统和制动式轮椅测力计同时获得运动和动力学数据。使用平面链路段模型与基于最小关节扭矩标准的优化技术的平面链路段模型确定上肢关节扭矩和总推进能。较短的受试者在向前和中前部位的总推进能耗中具有最低的总推进能耗,而最接近手轮。然而,更高的受试者在下中心和中间位置的总推进能耗中最低,而且来自手轮的进一步。我们认为,这些方法和结果将有助于评估各种类型轮椅的骑行位置的充分性。

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