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Responses to increasing exercise upon reaching the anaerobic threshold and their control by the central nervous system

机译:达到无氧阈值后对增加运动的反应并由中枢神经系统控制

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摘要

The anaerobic threshold (AT) has been one of the most studied of all physiological variables. Many authors have proposed the use of several markers to determine the moment at with the AT is reached. The present work discusses the physiological responses made to exercise - the measurement of which indicates the point at which the AT is reached - and how these responses might be controlled by the central nervous system. The detection of the AT having been reached is a sign for the central nervous system (CNS) to respond via an increase in efferent activity via the peripheral nervous system (PNS). An increase in CNS and PNS activities are related to changes in ventilation, cardiovascular function, and gland and muscle function. The directing action of the central command (CC) allows for the coordination of the autonomous and motor systems, suggesting that the AT can be identified in the many ways: changes in lactate, ventilation, plasma catecholamines, heart rate (HR), salivary amylase and muscular electrical activity. This change in response could be indicative that the organism would face failure if the exercise load continued to increase. To avoid this, the CC manages the efferent signals that show the organism that it is running out of homeostatic potential.
机译:厌氧阈值(AT)是所有生理变量中研究最多的一种。许多作者建议使用几种标记来确定到达AT的时刻。本工作讨论了对运动产生的生理反应(其测量值指示到达AT的点)以及中枢神经系统如何控制这些反应。对AT的检测表明中枢神经系统(CNS)通过周围神经系统(PNS)的传出活动的增加做出反应。 CNS和PNS活性的增加与通气,心血管功能以及腺体和肌肉功能的变化有关。中央指挥部(CC)的指挥作用可实现自治系统和运动系统的协调,这表明可以通过多种方式识别AT:乳酸变化,通气,血浆儿茶酚胺,心率(HR),唾液淀粉酶和肌肉电活动。这种反应的变化可能表明如果运动负荷继续增加,有机体将面临衰竭。为避免这种情况,CC会处理传出的信号,这些信号向有机体显示其体内的潜在稳态力即将耗尽。

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