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对流氧输送与疲劳。

Convective oxygen transport and fatigue.

作者信息

Amann Markus, Calbet Jose A L

机构信息

The John Rankin Laboratory of Pulmonary Medicine, University of Wisconsin-Madison Medical School, 4245 Medical Science Center, 1300 University Avenue, Madison, WI 53706.

出版信息

J Appl Physiol (1985). 2008 Mar;104(3):861-70. doi: 10.1152/japplphysiol.01008.2007. Epub 2007 Oct 25.

Abstract

During exercise, fatigue is defined as a reversible reduction in force- or power-generating capacity and can be elicited by "central" and/or "peripheral" mechanisms. During skeletal muscle contractions, both aspects of fatigue may develop independent of alterations in convective O(2) delivery; however, reductions in O(2) supply exacerbate and increases attenuate the rate of accumulation. In this regard, peripheral fatigue development is mediated via the O(2)-dependent rate of accumulation of metabolic by-products (e.g., inorganic phosphate) and their interference with excitation-contraction coupling within the myocyte. In contrast, the development of O(2)-dependent central fatigue is elicited 1) by interference with the development of central command and/or 2) via inhibitory feedback on central motor drive secondary to the peripheral effects of low convective O(2) transport. Changes in convective O(2) delivery in the healthy human can result from modifications in arterial O(2) content, blood flow, or a combination of both, and they can be induced via heavy exercise even at sea level; these changes are exacerbated during acute and chronic exposure to altitude. This review focuses on the effects of changes in convective O(2) delivery on the development of central and peripheral fatigue.

摘要

在运动过程中,疲劳被定义为力量或功率产生能力的可逆性降低,可由“中枢”和/或“外周”机制引发。在骨骼肌收缩过程中,疲劳的两个方面都可能在对流性氧气输送无改变的情况下发展;然而,氧气供应减少会加剧疲劳积累速度,而氧气供应增加则会减缓疲劳积累速度。在这方面,外周疲劳的发展是通过代谢副产物(如无机磷酸盐)依赖氧气的积累速率及其对肌细胞内兴奋-收缩偶联的干扰来介导的。相比之下,依赖氧气的中枢疲劳的发展是由以下两种情况引发的:1)对中枢指令发展的干扰,和/或2)由于低对流性氧气运输的外周效应而对中枢运动驱动产生的抑制性反馈。健康人体内对流性氧气输送的变化可能源于动脉血氧含量、血流量的改变或两者的结合,即使在海平面进行剧烈运动也可诱发这些变化;在急性和慢性高原暴露期间,这些变化会加剧。本综述重点关注对流性氧气输送变化对中枢和外周疲劳发展的影响。

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