运动医学中估算心肺耦合强度的意义。

Frontiers in network physiology Pub Date : 2023-01-04 eCollection Date: 2022-01-01 DOI:10.3389/fnetp.2022.1114733
Raphael Martins de Abreu, Beatrice Cairo, Alberto Porta
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摘要

心肺耦合(CRC)作为描述真正由呼吸驱动的心脏神经调节的重要工具,正在引起运动生理学的兴趣。应用于运动医学时,心肺耦合测量可提供有关训练效果、赛前压力以及压力刺激时心血管调节的信息。此外,由于心肺耦合受体力活动的影响很大,对心肺耦合的研究可以指导应用特定的训练方法,优化自律神经活动与心脏之间的耦合,从而对运动表现产生可能的影响。然而,人们尚未就心肺耦合的生理机制以及量化心肺耦合的金标准方法达成共识,因此限制了心肺耦合在实验环境中的应用。这篇综述支持在运动医学中评估心肺耦合的相关性,研究了其中可能涉及的生理机制,并列出了一系列方法学方法。与久坐不动的受试者相比,运动员的心肺耦合强度似乎有所提高,此外,心肺耦合还与积极的生理结果有关,如神经子系统可能更好地相互作用,以应对压力刺激。此外,心肺耦合似乎会受到特定训练模式的影响,如吸气肌训练。然而,心肺耦合对运动表现的影响仍需通过专门的体育锻炼测试和方案进行更好的探索。此外,本综述还强调,已经提出了几种双变量和多变量方法来评估心肺耦合,从而为估计运动员的心肺相互作用提供了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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On the significance of estimating cardiorespiratory coupling strength in sports medicine.

The estimation of cardiorespiratory coupling (CRC) is attracting interest in sports physiology as an important tool to characterize cardiac neural regulation genuinely driven by respiration. When applied in sports medicine, cardiorespiratory coupling measurements can provide information on the effects of training, pre-competition stress, as well as cardiovascular adjustments during stressful stimuli. Furthermore, since the cardiorespiratory coupling is strongly affected by physical activity, the study of the cardiorespiratory coupling can guide the application of specific training methods to optimize the coupling between autonomic activity and heart with possible effects on performance. However, a consensus about the physiological mechanisms, as well as methodological gold standard methods to quantify the cardiorespiratory coupling, has not been reached yet, thus limiting its application in experimental settings. This review supports the relevance of assessing cardiorespiratory coupling in the sports medicine, examines the possible physiological mechanisms involved, and lists a series of methodological approaches. cardiorespiratory coupling strength seems to be increased in athletes when compared to sedentary subjects, in addition to being associated with positive physiological outcomes, such as a possible better interaction of neural subsystems to cope with stressful stimuli. Moreover, cardiorespiratory coupling seems to be influenced by specific training modalities, such as inspiratory muscle training. However, the impact of cardiorespiratory coupling on sports performance still needs to be better explored through ad hoc physical exercise tests and protocols. In addition, this review stresses that several bivariate and multivariate methods have been proposed to assess cardiorespiratory coupling, thus opening new possibilities in estimating cardiorespiratory interactions in athletes.

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