The Mechanism Of Energy Changes That Occur Depending On The Ratio Of Force And Speed In The Example Of Bicycle Ergometric Testing

Yu. Nedotsuk, A. Laptev
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Abstract

For the first time, in the aspect of biophysics, the reasons for the increase in the power of the threshold of anaerobic metabolism developed by the test person during functional diagnostics. This occurs with an increase in the pedaling frequency with which the specified load on a bicycle ergometer in the range from 40 to 140 rpm (0.73-2.56 m/s) is overcome, have been substantiated. It was determined that the ratio of force and velocity in the studied range of pedaling frequencies (muscle contractile speed) corresponds to the hyperbolic type with displaced axes At the same time, with an increase in pedaling frequency, power increases in a cubic dependence, and the rate of oxygen consumption by the test subject decreases linearly in the process of overcoming the same fixed-power load set on a bicycle ergometer and vice versa.
以自行车测力为例,力与速度之比决定能量变化的机制
在生物物理学方面,首次发现了在功能诊断过程中,测试者无氧代谢阈值功率增加的原因。 在自行车测力计上克服每分钟 40 至 140 转(0.73-2.56 米/秒)的指定负荷时,随着踩踏频率的增加,这种情况就会出现。 同时,随着蹬踏频率的增加,功率以立方关系增加,在克服自行车测力计上设定的相同固定功率负荷的过程中,测试对象的耗氧量呈线性下降,反之亦然。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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