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骑行过程中内部做功的氧耗量。

Oxygen cost of internal work during cycling.

作者信息

Francescato M P, Girardis M, di Prampero P E

机构信息

Dipartimento di Scienze e Tecnologie Biomediche, Università degli Studi di Udine, Italy.

出版信息

Eur J Appl Physiol Occup Physiol. 1995;72(1-2):51-7. doi: 10.1007/BF00964114.

Abstract

The energy cost of internal work and its relationships with lower limb mass and pedalling frequency were studied in four male subjects [age 22.2 (SD 1.5) years, body mass 81.0 (SD 5.1) kg, maximal O2 uptake (VO2max) above resting 3.06 (SD 0.4) l.min-1]. The subjects cycled at 40, 60, 80 and 100 rpm and at five different exercise intensities for every pedalling frequency (unloaded condition, UL); the same exercises were repeated after having increased the lower limbs' masses by 40% (loaded condition, L). The exercise intensities were chosen so that the oxygen consumption (VO2) did not exceed 75% of VO2max. For all the subjects and all the conditions, the rate of VO2 above resting increased linearly with the mechanical power (W). The y-intercepts of the linear regressions of VO2 on W, normalised per kilogram of overall lower limbs mass were the same in both UL and L and increased with the 4.165 power of pedalling frequency (fp). These intercepts were taken to represent the metabolic counterpart of the internal power dissipation in cycling; they amounted to 0.78, 0.34, 3.29 and 10.30 W.kg-1 for pedalling frequencies of 40, 60, 80 and 100 rpm respectively. The slope of the regression lines (delta W/delta VO2) represents the delta efficiency of cycle ergometer exercise; this was also affected by fp, ranging, on average, from 22.9% to 32.0%. These data allowed us to obtain a comprehensive description of the effects of fp (per minute), exercise intensity (W, watts) and lower limbs' mass with or without added loads (mL, kg), on VO2 (ml.min-1) during cycling: VO2 = [mL.(4.3.10(-8).fp4.165/0.35)] + (1/[(3.594.10(-5).fp2 - 0.003.fp + 0.326).0.35]).W. The mean percentage error between the VO2 predicted from this equation and the actual value was 12.6%. This equation showed that the fraction of the overall VO2 due to internal work, for a normal 70-kg subject pedalling at 60 rpm and 100 W was of the order of 0.2.

摘要

对四名男性受试者[年龄22.2(标准差1.5)岁,体重81.0(标准差5.1)千克,静息时最大摄氧量(VO₂max)高于3.06(标准差0.4)升·分钟⁻¹]的内部功能量消耗及其与下肢质量和蹬踏频率的关系进行了研究。受试者在40、60、80和100转/分钟的频率下,针对每个蹬踏频率在五种不同运动强度下进行骑行(无负荷状态,UL);在将下肢质量增加40%后(有负荷状态,L)重复相同的运动。选择运动强度使得耗氧量(VO₂)不超过VO₂max的75%。对于所有受试者和所有状态,静息时以上的VO₂速率随机械功率(W)呈线性增加。VO₂对W的线性回归的y轴截距,以每千克下肢总质量进行归一化,在UL和L状态下相同,并且随蹬踏频率(fp)的4.165次幂增加。这些截距被视为代表骑行中内部功率耗散的代谢对应物;对于40、60、80和100转/分钟的蹬踏频率,它们分别为0.78、0.34、3.29和10.30瓦·千克⁻¹。回归线的斜率(δW/δVO₂)代表自行车测力计运动的δ效率;这也受fp影响,平均范围为22.9%至32.0%。这些数据使我们能够全面描述fp(每分钟)、运动强度(W,瓦特)以及有无附加负荷(mL,千克)的下肢质量对骑行期间VO₂(毫升·分钟⁻¹)的影响:VO₂ = [mL·(4.3·10⁻⁸·fp⁴.¹⁶⁵/0.35)] + (1/[(3.594·10⁻⁵·fp² - 0.003·fp + 0.326)·0.35])·W。由该方程预测的VO₂与实际值之间的平均百分比误差为12.6%。该方程表明,对于一名体重70千克、以60转/分钟和100瓦蹬踏的正常受试者,由于内部功导致的总VO₂的比例约为0.2。

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