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运动作为研究整合生理学的有力模型:效率、经济性与功率关系

Locomotion as a Powerful Model to Study Integrative Physiology: Efficiency, Economy, and Power Relationship.

作者信息

Peyré-Tartaruga Leonardo Alexandre, Coertjens Marcelo

机构信息

Exercise Research Laboratory, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.

Postgraduate Program in Pneumological Sciences, Hospital de Clínicas de Porto Alegre, Porto Alegre, Brazil.

出版信息

Front Physiol. 2018 Dec 11;9:1789. doi: 10.3389/fphys.2018.01789. eCollection 2018.

Abstract

Locomotion is the most common form of movement in nature. Its study allows analysis of interactions between muscle functions (motor) and lever system arrangements (transmission), thereby facilitating performance analysis of various body organs and systems. Thus, it is a powerful model to study various aspects of integrative physiology. The results of this model can be applied in understanding body functions and design principles as performance outputs of interest for medical and biological sciences. The overall efficiency ( ) during locomotion is an example of an integrative parameter, which results from the ratio between mechanical output and metabolic input. Although the concepts of cost (i.e., metabolic expenditure relative to distance) and power (i.e., metabolic expenditure relative to time) are included in its calculation, the establishes peculiar relations with these variables. For a better approach to these aspects, in this study, we presented the physical-mathematical formulation of efficiency, as well as its conceptual definitions and applications. Furthermore, the concepts of efficiency, cost, and power are discussed from the biological and medical perspectives. Terrestrial locomotion is a powerful model to study integrative physiology in humans, because by analyzing the mechanical and metabolic determinants, we may verify the efficiency and economy relationship through locomotion type, and its characteristics and restrictions. Thus, it is possible to elaborate further on various improved intervention strategies, such as physical training, competition strategies, and ergogenic supplementation.

摘要

运动是自然界中最常见的运动形式。对其进行研究能够分析肌肉功能(运动)与杠杆系统结构(传动)之间的相互作用,从而有助于对身体各个器官和系统的性能进行分析。因此,它是研究整合生理学各个方面的有力模型。该模型的结果可应用于理解身体功能和设计原则,作为医学和生物科学感兴趣的性能输出。运动过程中的整体效率( )是一个整合参数的例子,它由机械输出与代谢输入的比值得出。尽管其计算中包含了成本(即相对于距离的代谢消耗)和功率(即相对于时间的代谢消耗)的概念,但 与这些变量建立了特殊的关系。为了更好地探讨这些方面,在本研究中,我们给出了效率的物理 - 数学公式,以及其概念定义和应用。此外,还从生物学和医学角度讨论了效率、成本和功率的概念。陆地运动是研究人类整合生理学的有力模型,因为通过分析机械和代谢决定因素,我们可以通过运动类型验证效率和经济性的关系,以及其特征和限制。因此,有可能进一步阐述各种改进的干预策略,如体育训练、竞赛策略和机能增进补充剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2164/6297284/09f62f0705db/fphys-09-01789-g001.jpg

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