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Effects of spine flexion and erector spinae maximal force on vertical squat jump height: a computational simulation study

机译:脊柱屈曲和直立脊柱最大力量对垂直下蹲跳高的影响:计算仿真研究

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摘要

The purpose of this study was to evaluate the single and combined effects of initial spine flexion and maximal isometric force of the erector spinae on maximal vertical jump height during maximal squat jumping. Seven initial flexions of the 'thorax-head-arm' segment (between 20.1 degrees and 71.6 degrees) and five maximal isometric forces of the erector spinae (between 5600 and 8600N) were tested. Thus, 35 squat jumps were simulated using a 2D simulation model of the musculoskeletal system. Vertical jump height varied at most about 0.094 and 0.021m when the initial flexion of the 'thorax-head-arm' segment and the maximal force of the erector spinae were, respectively, maximal. These results were explained for the most part by the variation of total muscle work. The latter was mainly influenced by the work produced by the erector spinae which increased at most about 57 and 110J when the initial flexion of the 'thorax-head-arm' segment and the maximal force of the erector spinae were, respectively, maximal. It was concluded that the increase in the initial flexion of the 'thorax-head-arm' segment and in the maximal isometric force of the erector spinae enables an increase in maximal vertical jump height during maximal squat jumping.
机译:这项研究的目的是评估最大蹲跳过程中初始脊柱屈曲和竖脊肌最大等距力对最大垂直跳高的单一和综合影响。测试了“胸部-头-臂”段的七个初始屈曲(在20.1度和71.6度之间)和竖立脊柱的五个最大等距力(在5600和8600N之间)。因此,使用肌肉骨骼系统的2D模拟模型模拟了35次深蹲跳跃。当“胸-头-臂”节的初始屈曲和直立脊柱的最大力分别最大时,垂直跳高最多变化约0.094和0.021m。这些结果大部分是通过总肌肉功的变化来解释的。后者主要受直立脊柱产生的功的影响,当“胸部-头-臂”节段的初始屈曲和直立脊柱的最大力分别最大时,直立脊柱产生的功最多增加了约57和110J。结论是,“胸-头-臂”节的初始屈曲的增加和竖脊肌的最大等轴测力的增加使得最大蹲跳过程中最大垂直跳动高度的增加。

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