Suppr超能文献

相对于乳酸阈值的稳态运动的代谢和通气反应。

Metabolic and ventilatory responses to steady state exercise relative to lactate thresholds.

作者信息

Ribeiro J P, Hughes V, Fielding R A, Holden W, Evans W, Knuttgen H G

出版信息

Eur J Appl Physiol Occup Physiol. 1986;55(2):215-21. doi: 10.1007/BF00715008.

Abstract

The metabolic and ventilatory responses to steady state submaximal exercise on the cycle ergometer were compared at four intensities in 8 healthy subjects. The trials were performed so that, after a 10 min adaptation period, power output was adjusted to maintain steady state VO2 for 30 min at values equivalent to: (1) the aerobic threshold (AeT); (2) between the aerobic and the anaerobic threshold (AeTAnT); (3) the anaerobic threshold (AnT); and (4) between the anaerobic threshold and VO2max (AnTmax). Blood lactate concentration and ventilatory equivalents for O2 and CO2 demonstrated steady state values during the last 20 min of exercise at the AeT, AeAnT and AnT intensities, but increased progressively until fatigue in the AnTmax trial (mean time = 16 min). Serum glycerol levels were significantly higher at 40 min of exercise on the AeAnT and the AnT when compared to AeT, while the respiratory exchange ratios were not significantly different from each other. Thus, metabolic and ventilatory steady state can be maintained during prolonged exercise at intensities up to and including the AnT, and fat continues to be a major fuel source when exercise intensities are increased from the AeT to the AnT in steady state conditions. The blood lactate response to exercise suggests that, for the organism as a whole, anaerobic glycolysis plays a minor role in the energy release system at exercise intensities upt to and including the AnT during steady state conditions.

摘要

在8名健康受试者中,比较了他们在四种强度下于自行车测力计上进行稳态次最大运动时的代谢和通气反应。试验过程如下:在10分钟的适应期后,调整功率输出,以在相当于以下值的情况下维持30分钟的稳态VO2:(1)有氧阈值(AeT);(2)有氧阈值与无氧阈值之间(AeTAnT);(3)无氧阈值(AnT);以及(4)无氧阈值与VO2max之间(AnTmax)。在AeT、AeAnT和AnT强度运动的最后20分钟内,血乳酸浓度以及O2和CO2的通气当量显示为稳态值,但在AnTmax试验中(平均时间=16分钟),这些值逐渐增加直至疲劳。与AeT相比,在AeAnT和AnT强度运动40分钟时血清甘油水平显著更高,而呼吸交换率彼此之间无显著差异。因此,在强度高达并包括AnT的长时间运动过程中可以维持代谢和通气稳态,并且在稳态条件下,当运动强度从AeT增加到AnT时,脂肪仍然是主要的燃料来源。运动时的血乳酸反应表明,对于整个机体而言,在稳态条件下,运动强度高达并包括AnT时,无氧糖酵解在能量释放系统中起次要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验