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Patellofemoral and tibiofemoral forces during knee extension: simulations to strength training and rehabilitation exercises

机译:膝盖伸展过程中的ello股和胫股力量:模拟力量训练和康复运动

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Abstract Introduction: Limited evidence has been shown on ways to optimize the mechanical design of machines in order to minimize knee loads. Objective: This study compared six computer simulated models of open kinetic knee extension exercises for patellofemoral pressure and tibiofemoral forces. Methods: A musculoskeletal model of the lower limb was developed using six different cam radius to change resistive forces. A default machine, a constant cam radius, a torque-angle model, a free-weight model and two optimized models were simulated. Optimized models reduced cam radius at target knee flexion angles to minimize knee forces. Cam radius, human force, tibiofemoral compressive and shear force, and patellofemoral pressure were compared for the six models using data from five knee flexion angles. Results: Large reductions in cam radius comparing the free-weight model to other models (73-180%) were limited to the large human force for the constant cam model to other models (9-36%). Larger human force (13 -36%) was estimated to perform knee extension using a constant cam radius compared other models without large effects in knee joint forces. Conclusion: Changes in cam design effected human without a potential impact in knee loads.
机译:摘要简介:关于如何优化机器的机械设计以最大程度地减小膝部负担的证据很少。目的:本研究比较了六个开放式动态膝盖伸展运动对pa股压力和胫股力量的计算机模拟模型。方法:利用六个不同的凸轮半径来改变阻力,从而开发了下肢的肌肉骨骼模型。模拟了默认机器,恒定凸轮半径,扭矩角模型,自由重量模型和两个优化模型。优化的模型在目标膝盖弯曲角度处减小了凸轮半径,以最大程度地减小膝盖力。使用来自五个膝盖屈曲角度的数据,对六个模型的凸轮半径,人的力量,胫股压缩力和剪切力以及pa股压力进行了比较。结果:与自由重量模型相比,凸轮半径的大减小(73-180%)仅限于恒定凸轮模型与其他模型相比较大的人力(9-36%)。与其他模型相比,在没有较大影响膝关节力的情况下,使用恒定的凸轮半径估计更大的人力(13 -36%)可以进行膝盖伸展。结论:凸轮设计的变化影响了人类,但没有潜在的膝盖负荷影响。

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