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Mathematical modelling of the oxygen uptake kinetics during whole-body endurance exercise and recovery

机译:全身耐力运动和恢复过程中氧吸收动力学的数学模型

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In this study, we elucidate four different mathematical models of the kinetics of oxygen uptake during whole-body endurance exercise at different intensities and throughout the subsequent recovery periods. We employ the hypothetical inductive-deductive method and forecast four different models for the oxygen kinetic. The VO2 development using these models compared with experimental results where an elite cross-country skier performed laboratory tests while running with poles on a treadmill, in which the rate of oxygen uptake and blood lactate concentration as a function of time were measured. The most developed model accounted for the delayed superimposed slow component of oxygen uptake and the influence of lactic power production on the oxygen kinetics. The rate of change in oxygen with this model is consistent with the accumulated oxygen deficit model and matched the data well, even for intensities above the lactate threshold and during recovery.
机译:在这项研究中,我们阐明了四种不同的数学模型,这些模型在不同强度和整个随后的恢复期间进行全身耐力锻炼期间的摄氧动力学。我们采用假设的归纳-演绎方法,并预测了氧动力学的四种不同模型。使用这些模型进行的VO2开发与实验结果进行了比较,在实验结果中,一名优秀的越野滑雪者在跑步机上用撑杆跑步时进行了实验室测试,其中测量了氧气吸收率和血液乳酸浓度随时间的变化。最发达的模型解释了氧气吸收的延迟叠加缓慢成分以及乳酸发电对氧气动力学的影响。该模型的氧气变化率与累积的缺氧模型一致,并且即使在乳酸阈值以上和恢复期间强度也与数据良好匹配。

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