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运动引起的人体血浆钾和通气阈值的变化。

Exercise-induced changes in plasma potassium and the ventilatory threshold in man.

作者信息

McLoughlin P, Popham P, Linton R A, Bruce R C, Band D M

机构信息

Laboratory of Applied Physiology, United Medical and Dental School, St Thomas's Hospital, London.

出版信息

J Physiol. 1994 Aug 15;479 ( Pt 1)(Pt 1):139-47. doi: 10.1113/jphysiol.1994.sp020283.

Abstract
  1. It has been reported that, during incremental exercise testing, the patterns of change in ventilation (VE) and arterial K+ (Ka+) are similar, suggesting that changing Ka+ may lead to the phenomenon of the ventilatory threshold through its action on the peripheral chemoreceptors. 2. Expiratory ventilation, oxygen consumption, CO2 production (VE, VO2, VCO2), arterialized venous PCO2 (Pav, CO2; see Methods), pH (pHav), K+ (Kav+) and lactate were measured during incremental exercise tests undertaken by six normal male subjects under control conditions and during lactic acidosis following severe exercise (experimental trial). 3. A ventilatory threshold, associated with a period of isocapnic buffering, was observed under both control and experimental conditions. During the control trial, plots of Kav+ against VO2 showed an inflexion close to the ventilatory threshold. Throughout the experimental trial Kav+ rose linearly relative to VO2. In both control and experimental trials Kav+ concentrations were similar at the ventilatory threshold. 4. These results suggest that the pattern of change of Ka+ cannot account for the phenomenon of the ventilatory threshold. The possibility that the peripheral chemoreceptor response is non-linear above a critical value of Ka+ requires further investigation.
摘要
  1. 据报道,在递增运动测试期间,通气量(VE)和动脉血钾(Ka+)的变化模式相似,这表明Ka+的变化可能通过作用于外周化学感受器导致通气阈值现象。2. 在6名正常男性受试者进行的递增运动测试中,于对照条件下以及剧烈运动后的乳酸性酸中毒期间(实验试验),测量了呼气通气量、耗氧量、二氧化碳产生量(VE、VO2、VCO2)、动脉化静脉血PCO2(Pav, CO2;见方法)、pH(pHav)、K+(Kav+)和乳酸。3. 在对照和实验条件下均观察到与等碳酸缓冲期相关的通气阈值。在对照试验期间,Kav+与VO2的关系图在接近通气阈值处出现拐点。在整个实验试验期间,Kav+相对于VO2呈线性上升。在对照和实验试验中,通气阈值时的Kav+浓度相似。4. 这些结果表明,Ka+的变化模式不能解释通气阈值现象。外周化学感受器在Ka+的临界值以上的反应是非线性的这一可能性需要进一步研究。

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