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肌肉骨骼适应抗阻训练的数学模型及其在适应负荷的计算机模拟中的应用。

A mathematical model of neuromuscular adaptation to resistance training and its application in a computer simulation of accommodating loads.

机构信息

Trinity College, Trinity Street, Cambridge CB2 1TQ, UK.

出版信息

Eur J Appl Physiol. 2010 Oct;110(3):523-38. doi: 10.1007/s00421-010-1526-3. Epub 2010 Jun 11.

Abstract

A large corpus of data obtained by means of empirical study of neuromuscular adaptation is currently of limited use to athletes and their coaches. One of the reasons lies in the unclear direct practical utility of many individual trials. This paper introduces a mathematical model of adaptation to resistance training, which derives its elements from physiological fundamentals on the one side, and empirical findings on the other. The key element of the proposed model is what is here termed the athlete's capability profile. This is a generalization of length and velocity dependent force production characteristics of individual muscles, to an exercise with arbitrary biomechanics. The capability profile, a two-dimensional function over the capability plane, plays the central role in the proposed model of the training-adaptation feedback loop. Together with a dynamic model of resistance the capability profile is used in the model's predictive stage when exercise performance is simulated using a numerical approximation of differential equations of motion. Simulation results are used to infer the adaptational stimulus, which manifests itself through a fed back modification of the capability profile. It is shown how empirical evidence of exercise specificity can be formulated mathematically and integrated in this framework. A detailed description of the proposed model is followed by examples of its application-new insights into the effects of accommodating loading for powerlifting are demonstrated. This is followed by a discussion of the limitations of the proposed model and an overview of avenues for future work.

摘要

目前,通过对神经肌肉适应的实证研究获得的大量数据,对于运动员及其教练来说,其用途有限。原因之一在于许多单独试验的直接实际应用不明确。本文介绍了一种阻力训练适应的数学模型,该模型的要素一方面来源于生理学基础,另一方面来源于经验发现。所提出模型的关键要素是这里所说的运动员能力谱。这是对单个肌肉的长度和速度相关力量产生特性的概括,适用于任意生物力学的运动。能力谱是一个二维函数,位于能力平面上,在训练适应反馈回路的拟议模型中起着核心作用。与阻力的动态模型一起,当使用运动微分方程的数值逼近来模拟运动表现时,能力谱用于模型的预测阶段。模拟结果用于推断适应刺激,该刺激通过能力谱的反馈修改来表现出来。本文展示了如何用数学形式表述运动特异性的经验证据,并将其纳入该框架。接着详细描述了所提出的模型,并举例说明了其在举重适应负荷方面的应用,展示了新的见解。然后讨论了所提出模型的局限性,并概述了未来工作的方向。

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