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Published on: January 28, 2020
Examination of oxygen uptake kinetics in decremental load exercise by a numerical computation model
Takuma Arimitsu1, Ryouta Matsuura, Takehide Kimura
1Laboratory of Exercise Physiology, Health and Sport Education, Graduate School of Education, Hokkaido University. arimitsu@edu.hokudai.ac.jp
Abstract:
The purpose of this study was to establish a numerical computation model for estimation of oxygen uptake (V(.)O2) kinetics in decremental load exercise (DLE) starting from a work rate (WR) above the ventilatory threshold (>VT). In the model, WR in DLE were separated into several steps (constant load exercise, CLE) of which the durations increased step by step. V(.)O2 kinetics in each step was estimated using an exponential equation, and the sum of VO2 values from all steps at a given time was regarded as simulated V(.)O2 in DLE. In the model, the time constants were set symmetrically in a step
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