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Exergy Analysis of the Musculoskeletal System Efficiency during Aerobic and Anaerobic Activities

机译:有氧和无氧活动期间肌肉骨骼系统效率的火用分析

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摘要

The first and second laws of thermodynamics were applied to the human body in order to evaluate the quality of the energy conversion during muscle activity. Such an implementation represents an important issue in the exergy analysis of the body, because there is a difficulty in the literature in evaluating the performed power in some activities. Hence, to have the performed work as an input in the exergy model, two types of exercises were evaluated: weight lifting and aerobic exercise on a stationary bicycle. To this aim, we performed a study of the aerobic and anaerobic reactions in the muscle cells, aiming at predicting the metabolic efficiency and muscle efficiency during exercises. Physiological data such as oxygen consumption, carbon dioxide production, skin and internal temperatures and performed power were measured. Results indicated that the exergy efficiency was around 4% in the weight lifting, whereas it could reach values as high as 30% for aerobic exercises. It has been shown that the stationary bicycle is a more adequate test for first correlations between exergy and performance indices.
机译:为了评估肌肉活动过程中能量转换的质量,将热力学第一定律和第二定律应用于人体。由于在文献中难以评估某些活动中的执行功率,因此这种实现方式是对人体进行火力分析的重要问题。因此,为了将已完成的工作作为本能模型的输入,评估了两种类型的锻炼:举重锻炼和固定自行车上的有氧锻炼。为此,我们对肌肉细胞中的有氧和厌氧反应进行了研究,目的是预测运动过程中的代谢效率和肌肉效率。测量诸如耗氧量,二氧化碳产生量,皮肤和内部温度以及所执行的功率的生理数据。结果表明,举重时的火用效率约为4%,而有氧运动的火用效率可能高达30%。已经表明,固定自行车对于火用和性能指标之间的第一相关性是更适当的测试。

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