Exercise Physiology Laboratory, National Institute of Traumatology and Orthopedics, Ministry of Health, Rio de Janeiro, RJ, 20230-024, Brazil.
Med Biol Eng Comput. 2011 Mar;49(3):305-11. doi: 10.1007/s11517-010-0693-z. Epub 2010 Nov 4.
The present work quantifies, through principal components analysis (PCA) the relationships among the variability of breath-by-breath ventilatory parameters [minute-ventilation (VE), tidal volume (Vt), and respiratory rate (FR)] during a maximal progressive exercise test. The results show that the first and second eigenvalues of the covariant matrix contains almost 90% of the variables' variance possible to see through the PCA, which means that the problem can be reduced by a two-dimensional analysis. The results show a close similarity between the global variability in two groups test, athletes and sedentary (control). For the athletes group, the parameter Vt is responsible for the high VE variability values while in the sedentary group the FR is more relevant for VE variability. The result improves the knowledge about respiratory variability during exercise, showing that Vt's and FR's variabilities contribute in different ways to global ventilation variability during a maximal cardiopulmonary exercise test in athletes and sedentary men.
本研究通过主成分分析(PCA)量化了在最大递增运动试验中,呼吸参数(分钟通气量(VE)、潮气量(Vt)和呼吸频率(FR))逐次变化之间的关系。结果表明,协方差矩阵的第一和第二个特征值包含了通过 PCA 可能看到的变量方差的近 90%,这意味着可以通过二维分析来简化问题。结果表明,两组测试(运动员和久坐者(对照组))的整体变异性非常相似。对于运动员组,参数 Vt 负责 VE 变异性的高值,而在久坐者组中,FR 对 VE 变异性的影响更为显著。研究结果提高了对运动期间呼吸变异性的认识,表明在运动员和久坐男性进行最大心肺运动试验时,Vt 和 FR 的变异性以不同的方式共同导致了整体通气变异性。