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Optimal Control and Biomechanics of Ambulation with Spring-Loaded Crunches

机译:弹簧加载的拐杖的最佳控制和生物力学

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Standard underarm or forearm crutches have some drawbacks induced by their rigid legs. Spingloaded crutches can reduce the impact effect. However, whether or not they also improve propulsion is an open problem. We formulate a problem of the optimal performance of spring-loaded crutches and propose a numerical approach to solve the problem. Then, the numerical optimal values are incorporated to the innovative design of a pair of spring-loaded crutches. To evaluate the crutches' performance, we have conducted standard biomechanical experiments for a number of male subjects under two conditions: walking with standard crutches and with spring-loaded crutches. Three dimensional kinematic data and ground reaction force were recorded and analysed. It was observed that optimized spring-loaded crutches can efficiently propel the crutch walkers, which conforms to the theory.
机译:标准的腋下或前臂拐杖由于其刚性的腿而具有一些缺点。 load着拐杖可以减少撞击的影响。但是,它们是否也能改善推进力是一个悬而未决的问题。我们提出了弹簧式拐杖的最佳性能问题,并提出了一种数值方法来解决该问题。然后,将数值最优值合并到一对弹簧式拐杖的创新设计中。为了评估拐杖的性能,我们在两个条件下对许多男性受试者进行了标准的生物力学实验:带标准拐杖和弹簧式拐杖走路。记录并分析了三维运动学数据和地面反作用力。据观察,优化的弹簧拐杖可以有效地推动拐杖助行器,这符合理论。

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