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首页> 外文期刊>Journal of Biomechanics >A phenomenological model and validation of shortening-induced force depression during muscle contractions.
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A phenomenological model and validation of shortening-induced force depression during muscle contractions.

机译:肌肉收缩过程中短缩诱发力下降的现象学模型和验证。

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摘要

History-dependent effects on muscle force development following active changes in length have been measured in a number of experimental studies. However, few muscle models have included these properties or examined their impact on force and power output in dynamic cyclic movements. The goal of this study was to develop and validate a modified Hill-type muscle model that includes shortening-induced force depression and assess its influence on locomotor performance. The magnitude of force depression was defined by empirical relationships based on muscle mechanical work. To validate the model, simulations incorporating force depression were developed to emulate single muscle in situ and whole muscle group leg extension experiments. There was excellent agreement between simulation and experimental values, with in situ force patterns closely matching the experimental data (average RMS error <1.5N) and force depression in the simulated leg extension exercise being similar in magnitude to experimental values (6.0% vs. 6.5%, respectively). To examine the influence of force depression on locomotor performance, simulations of maximum power pedaling with and without force depression were generated. Force depression decreased maximum crank power by 20-40%, depending on the relationship between force depression and muscle work used. These results indicate that force depression has the potential to substantially influence muscle power output in dynamic cyclic movements. However, to fully understand the impact of this phenomenon on human movement, more research is needed to characterize the relationship between force depression and mechanical work in large muscles with different morphologies.
机译:在许多实验研究中,已经测量了随着长度的主动变化而对肌肉力量发展的历史依赖效应。但是,很少有肌肉模型包含这些属性或检查它们对动态循环运动中的力和动力输出的影响。这项研究的目的是开发和验证修改后的希尔型肌肉模型,其中包括缩短引起的力量压抑,并评估其对运动性能的影响。压力降低的大小由基于肌肉机械功的经验关系定义。为了验证该模型,开发了包含压力降低的模拟以模拟原位单个肌肉和整个肌肉群的腿部伸展实验。模拟值和实验值之间存在极好的一致性,原位力模式与实验数据非常接近(平均RMS误差<1.5N),模拟的腿部伸展运动中的力压降与实验值相似(6.0%与6.5) %, 分别)。为了检查力降低对运动性能的影响,生成了有或没有力降低时最大功率踏板的模拟。压力降低会使最大曲柄功率降低20-40%,具体取决于压力降低与所用肌肉功之间的关系。这些结果表明,力的降低有可能在动态循环运动中显着影响肌肉的力量输出。但是,要完全了解这种现象对人体运动的影响,需要进行更多的研究来表征具有不同形态的大块肌肉中力量下降与机械功之间的关系。

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