4周有氧训练对高水平柔道运动员有氧状态的影响

M. Milošević, P. Nemec, Vesna Nemec, M. Milošević
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引用次数: 1

摘要

本文的目的是使用一种训练方法,我们认为这是一种强有力的激励心血管和代谢适应,通过单独编程的有氧跑步,直接通过消耗氧气。实验在一个由9名选手组成的顶级柔道团队中进行,为期4周的训练。训练负荷分布在无氧阈值和最大耗氧量之间。在四周的训练中,柔道运动员的最大耗氧量(VO2max)从2%提高到15%,最大相对耗氧量(VO2rel)从2%提高到16%,库珀测试(K)从2%提高到15%,最大耗氧量(vVO2max)消耗速度从2%提高到15%。柔道运动员从最大耗氧量(VO2max)的64%到83%开始,从最大相对耗氧量(VO2rel)的64%到83%开始,从消耗最大耗氧量(vVO2max)的70%到85%开始。经过4周的训练,最大耗氧量(VO2max)的72% - 91%的遗传能力范围从最大相对耗氧量(VO2rel)的74% - 92%到最大耗氧量(vVO2max)的78% - 93%。为了达到这些结果,柔道运动员必须消耗943.80至1887.71升氧气((∑VO2)来跨越距离((∑DT))从67523.0 m到102386.0 m,消耗4719至9438.55千卡((∑kcal))。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE IMPACT OF 4-WEEK AEROBIC TRAINING ON THE AEROBIC STATUS OF TOP-LEVEL JUDOKAS
The aim of this paper is to use a training methodology that we believe to be a powerful incentive for cardiovascular and metabolic adaptation via individually programmed aerobic running directly through the consumption of oxygen. The experiment was carried out on a top judo team of 9 competitors in a 4-week training period. The distribution of training loads ranged between the anaerobic threshold and maximum oxygen consumption. In four weeks of training, the judokas significantly improved their results for maximum oxygen consumption (VO2max) from 2% to 15%, maximum relative oxygen consumption (VO2rel) from 2% to 16%, the Cooper test (K) from 2% to 15% and the speed at which the maximum amount of oxygen (vVO2max) is expended, from 2% to 15%. The judokas started from 64% to 83% of their genetic capacity in maximal oxygen consumption (VO2max), from 64% to 83% in maximum relative oxygen consumption (VO2rel) and 70% to 85% of the capacity at which they consumed the maximum amount of oxygen (vVO2max). After 4 weeks of training, 72% to 91% of the genetic capacity of maximum oxygen consumption (VO2max) ranged from 74% to 92% of the maximum relative oxygen consumption (VO2rel) and from 78% to 93% of the genetically projected capacity at the maximum amount of oxygen rate (vVO2max). In order to achieve these results, the judokas had to expend 943.80 to 1887.71 liters of oxygen ((∑VO2) to cross a distance ((∑ DT) from 67523.0 m to 102386.0 m and consume from 4719 to 9438.55 kilocalories ((∑ kcal).
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