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Crouched posture maximizes ground reaction forces generated by muscles

机译:蹲下姿势可使肌肉产生的地面反作用力最大化

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摘要

Crouch gait decreases walking efficiency due to the increased knee and hip flexion during the stance phase of gait. Crouch gait is generally considered to be disadvantageous for children with cerebral palsy; however, a crouched posture may allow biomechanical advantages that lead some children to adopt a crouch gait. To investigate one possible advantage of crouch gait, a musculoskeletal model created in OpenSim was placed in 15 different postures from upright to severe crouch during initial, middle, and final stance of the gait cycle for a total of 45 different postures. A series of optimizations was performed for each posture to maximize transverse plane ground reaction forces in the eight compass directions by modifying muscle forces acting on the model. We compared the force profile areas across all postures. Larger force profile areas were allowed by postures from mild crouch (for initial stance) to crouch (for final stance). The overall ability to generate larger ground reaction force profiles represents a mechanical advantage of a crouched posture. This increase in muscle capacity while in a crouched posture may allow a patient to generate new movements to compensate for impairments associated with cerebral palsy, such as motor control deficits.
机译:下蹲步态由于步态站立阶段膝盖和髋部屈曲增加而降低步行效率。蹲伏步态通常被认为对脑瘫患儿不利;但是,蹲下的姿势可能会带来生物力学上的优势,从而导致一些孩子采取蹲下的步态。为了研究蹲伏步态的一种可能优势,在步态周期的初始,中间和最终姿势中,将OpenSim中创建的肌肉骨骼模型放置在15种不同的姿势中,从直立蹲伏到严重蹲伏,共计45种姿势。针对每个姿势执行了一系列优化,以通过修改作用在模型上的肌肉力来最大化八个罗盘方向上的横向地面反作用力。我们比较了所有姿势下的力分布区域。从轻度蹲伏(用于初始姿势)到蹲伏(用于最终姿势)的姿势允许较大的力分布区域。产生更大的地面反作用力曲线的整体能力代表了蹲下姿势的机械优势。蹲下姿势时,肌肉容量的增加可能会使患者产生新的运动,以补偿与脑瘫相关的损伤,例如运动控制障碍。

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