在跑步机上以每分钟54-130米的速度水平行走时的人体能量消耗。

J A Balogun, D A Martin, M A Clendenin
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引用次数: 8

摘要

关于水平行走时耗氧量(VO2)预测公式的准确性,文献中存在争议。本研究的目的是开发一个适用于54-130米/分钟速度的方程式。研究了25名健康受试者在平台式电动跑步机上以54、81、107和130 m min-1速度行走时的VO2和能量消耗(EE)。回归分析表明,二次模型比线性模型更能预测VO2和EE (p < 0.05)。VO2和EE与步行速度(X)的二次方程为:VO2 (ml kg-1 min-1) = 17.77 - 0.3023X(m min-1) + 0.0027X2 (R2 = 0.935, SEE = 1.5) EE (kcal min-1) = 6.14 - 0.1076X (m min-1) + 0.00093X2 (R2 = 0.830, SEE = 0.89)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human energy expenditure during level walking on a treadmill at speeds of 54-130 m min-1.

Controversy exists in the literature as to the accuracy of the formulae used in predicting oxygen consumption (VO2) during level walking. The purpose of this study was to develop an equation for use at speeds of 54-130 m min-1. The VO2 and energy expenditure (EE) of 25 healthy subjects were measured while walking on a level, motor-driven treadmill at four varying speeds (54, 81, 107 and 130 m min-1). The regression analyses revealed that a quadratic model was a better predictor (p less than 0.05) of both the VO2 and EE than a linear model. The quadratic equation relating VO2 and EE to walking speed (X) is as follows: VO2 (ml kg-1 min-1) = 17.77 - 0.3023X(m min-1) + 0.0027X2 (R2 = 0.935, SEE = 1.5) EE (kcal min-1) = 6.14 - 0.1076X (m min-1) + 0.00093X2 (R2 = 0.830, SEE = 0.89).

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