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A new procedure to determine external power output during handrim wheelchair propulsion on a roller ergometer: a reliability study.

机译:确定在轮式测力计上的手腕轮椅推进过程中外部动力输出的新程序:可靠性研究。

摘要

This study presents a mathematical model by which power output (PO) delivered to the rear wheel during handrim wheelchair propulsion on a roller ergometer can be determined for individual wheelchair-user combinations. PO is calculated from the torque applied to the wheel and its angular velocity. The torque applied is a function of one total internal torque of the wheelchair-ergometer system, the rotational moment of inertia of the rear wheel, the one of the roller and its angular acceleration. The total internal torque reflects all internal friction forces and is determined with a deceleration test. To assess the reliability of this approach, 11 able-bodied subjects underwent progressively increasing exercise tests on two different occasions. PO values ranged from 12 to 63 W and were highly reliable (r2 > 0.95). Peak physiological responses were never different from test 1 and 2 (repeated measures ANOVA; p: N.S.) and correlations were 0.90, 0.72, 0.88, 0.82, 0.70 and 0.85 for PO, oxygen uptake (VO2), heart rate, minute ventilation, carbon dioxide production and blood lactate concentration, respectively. After an initial increase, gross mechanical efficiency dropped at higher velocities, with values ranging from 4.64 to 11.26%. In conclusion, the roller ergometer, the mathematical model to determine PO and the protocol used seem to be adequate to exercise test people in a handrim wheelchair. It is feasible to apply the theoretical procedure to other roller ergometers which would allow for comparisons of exercise intensities and protocols between different devices used in exercise physiology and rehabilitation.
机译:这项研究提出了一个数学模型,通过该模型,可以确定单个轮椅使用者组合在手轮测力计上推动手轮椅时在后轮上传递到后轮的功率输出(PO)。 PO由施加到车轮的扭矩及其角速度计算得出。施加的扭矩是轮椅测力计系统的一个总内部扭矩,后轮的转动惯量,一个滚轮及其角加速度的函数。内部总扭矩反映所有内部摩擦力,并通过减速测试确定。为了评估这种方法的可靠性,在两种不同的情况下,对11名身体健全的受试者进行了逐渐增加的运动测试。 PO值介于12到63 W之间,非常可靠(r2> 0.95)。峰值生理反应与测试1和2相同(重复测量ANOVA; p:NS),PO,氧摄取(VO2),心率,分钟通气,碳的相关性分别为0.90、0.72、0.88、0.82、0.70和0.85二氧化碳的产生和血液中乳酸的浓度。初始增加后,总机械效率在较高速度时下降,范围为4.64至11.26%。总之,轮式测功机,确定PO的数学模型和所使用的规程似乎足以使坐轮椅的人接受测试。将理论程序应用于其他滚筒测功机是可行的,这将允许比较运动强度和运动生理学和康复中使用的不同设备之间的运动强度和协议。

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