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[年轻健康个体在递增运动强度下的气体交换、血液酸碱平衡及肌肉机械效率]

[Gas exchange, blood acid-base balance and mechanical muscle efficiency during incremental levels of exertion in young healthy individuals].

作者信息

Zoładź J A, Duda K, Majerczak J, Kulpa J

机构信息

Instytutu Fizjologii Człowieka Akademii, Wychowania Fizycznego w Krakowie.

出版信息

Pneumonol Alergol Pol. 1998;66(3-4):163-72.

PMID:9857660
Abstract

UNLABELLED

In this study we have evaluated the changes in gas exchange variables, blood acid-base balance and the mechanical efficiency of muscle in healthy young men during an incremental exercise test. Twenty-six healthy men: age 22.1 +/- 1.4 (mean +/- SD) years, body mass 73.6 +/- 7.4 kg, height 179 +/- 8 cm, were subjects in this study. The subjects performed an incremental exercise test on a cycloergometer at a pedalling rate of 70 rev.min-1. The exercise test started at a power output of 30 W, followed by an increase of power output by 30 W every 3 minutes. Gas exchange variables were measured continuously (breath by breath). Antecubital blood samples for acid-base balance variables and plasma lactate concentration [La]pl were taken at the end of each 3-minute step. The lactate threshold (LT) in this study was defined as the highest power output above which [La]pl showed a sustained increase of > 0.5 mmol.l-1.step-1. The power output at LT amounted to 127 +/- 28 W. It corresponded to 45% of the maximal power output (MPO) reached at maximal oxygen uptake (VO2 max). The oxygen uptake at the LT amounted to 1734 +/- 282 ml.min-1 and corresponded to 48% of VO2 max (3726 +/- 363 ml.min-1). The minute ventilation at the LT amounted to 47.8 +/- 7.5 l, and its increase to the level of 125.7 +/- 19.7 l reached at the MPO was obtained mainly by intensification of breathing frequency from 23.8 +/- 3.31.min-1 to 43 +/- 5.91.min-1, for LT and MPO respectively. Analysis of the changes in PETCO2 during the incremental exercise test showed significant differences between subjects. One could recognise a group of subjects (n = 8) with high values of PETCO2 (above 45 mmHg) and a group of subjects (n = 8) with lower values of PETCO2 (below 43 mmHg). However, no significant differences in exercise tolerance, expressed by the level of MPO and maximal oxygen uptake, were found between those groups of subjects. The mechanical efficiency calculated on the basis of power output/net oxygen uptake ratio during cycling at a power output of 60 W amounted to 24.1 +/- 3.8 percent, at the LT 25.8 +/- 2.1%, whereas at the maximal power output a significant (p < 0.01) drop in muscle efficiency occurred, to the value of 23.1 +/- 1.6%. This drop in muscle efficiency occurring at the MPO may be an important factor limiting exercise tolerance when performing high power output exercise.

IN CONCLUSION

The above presented data illustrate the physiological responses to incremental exercise and the level of exercise tolerance, which may serve as a reference point for the population of healthy, young physically active Polish students.

摘要

未标注

在本研究中,我们评估了健康年轻男性在递增运动试验期间气体交换变量、血液酸碱平衡和肌肉机械效率的变化。26名健康男性参与了本研究,他们的年龄为22.1±1.4(均值±标准差)岁,体重73.6±7.4千克,身高179±8厘米。受试者以70转/分钟的蹬踏速率在自行车测力计上进行递增运动试验。运动试验从30瓦的功率输出开始,随后每3分钟功率输出增加30瓦。连续(逐次呼吸)测量气体交换变量。在每个3分钟阶段结束时采集用于酸碱平衡变量和血浆乳酸浓度[La]pl的肘前静脉血样。本研究中的乳酸阈值(LT)定义为功率输出高于该值时[La]pl持续增加>0.5毫摩尔/升·步⁻¹的最高功率输出。LT时的功率输出为127±28瓦。它相当于在最大摄氧量(VO₂max)时达到的最大功率输出(MPO)的45%。LT时的摄氧量为1734±282毫升/分钟,相当于VO₂max(37

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