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一种“新”的运动强度正常化方法。

A 'new' method to normalise exercise intensity.

机构信息

Exeter University, Sport and Health Sciences, Exeter, United Kingdom.

出版信息

Int J Sports Med. 2011 Jul;32(7):535-41. doi: 10.1055/s-0031-1273754. Epub 2011 May 11.

Abstract

Exercise intensity has traditionally been described, prescribed and normalised as a fraction (%) of the maximal oxygen uptake ( V˙O (2max)). We hypothesised that the extent of inter-subject variability in the physiological responses to exercise would be greater when work rates were prescribed using % V˙O (2max) as compared to % 'delta' (Δ), a method of normalising exercise intensity in which both the gas exchange threshold (GET) and the V˙O (2max) are considered. 9 men completed a ramp incremental test on a cycle ergometer to establish the GET and V˙O (2max). Subsequently, subjects completed 6 constant-work-rate exercise bouts at intensities corresponding to: 50%, 70% and 90% V˙O (2max); and 60% GET, 40% Δ (that is, 40% of the difference between the GET and V˙O (2max)) and 80% Δ. For all bouts, exercise was continued for 20 min or until task failure if this occurred sooner. When exercise was prescribed using the % Δ concept, there were significant reductions in the inter-subject variability in pulmonary gas exchange, blood lactate accumulation, heart rate, and ratings of perceived exertion (all P < 0.05). In conclusion, the % Δ concept resulted in more consistent inter-subject physiological responses to constant-work-rate exercise and should be used in preference to % V˙O (2max) to more effectively normalise exercise intensity.

摘要

运动强度传统上是用最大摄氧量 (V˙O (2max)) 的百分比 (%) 来描述、规定和标准化的。我们假设,当使用 % V˙O (2max) 而不是 %'delta'(Δ)来规定工作率时,生理反应的个体间变异性会更大,%'delta' 是一种将运动强度标准化的方法,其中包括气体交换阈值 (GET) 和 V˙O (2max)。9 名男性在自行车测力计上完成了递增斜坡测试,以确定 GET 和 V˙O (2max)。随后,受试者完成了 6 次恒功运动,强度分别对应:50%、70%和 90%的 V˙O (2max);以及 60%的 GET、40%的 Δ(即 GET 和 V˙O (2max) 之间差值的 40%)和 80%的 Δ。对于所有运动,运动持续 20 分钟或直至任务失败(如果更早发生)。当使用 % Δ 概念规定运动时,肺气体交换、血乳酸积累、心率和感知努力程度的个体间变异性显著降低(均 P < 0.05)。总之,% Δ 概念导致了对恒功运动的更一致的个体间生理反应,应该优先使用 % V˙O (2max) 来更有效地标准化运动强度。

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