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糖原耗竭对周期测力计功率-持续时间曲线曲率常数参数的影响。

The effect of glycogen depletion on the curvature constant parameter of the power-duration curve for cycle ergometry.

作者信息

Miura A, Sato H, Sato H, Whipp B J, Fukuba Y

机构信息

Department of Exercise Science and Physiology, School of Health Sciences, Hiroshima Women's University, Japan.

出版信息

Ergonomics. 2000 Jan;43(1):133-41. doi: 10.1080/001401300184693.

Abstract

For high-intensity cycle ergometer exercise, the relation between power (P) and its tolerable duration (t) has been well characterized by the hyperbolic relationship: (P-thetaF) t = W', or P = W' (1/t)+thetaF, where thetaF may be termed the 'fatigue threshold'. The curvature constant (W') reflects a constant amount of work which is postulated to be equivalent to a finite energy store that relates to the oxygen-deficit: phosphagen pool, anaerobic glycolysis and oxygen stores. Compared to thetaF, the physiological nature of W' has received little consideration. The purpose of this study was therefore to establish the parameters of the power-duration curve (thetaF and W') for subjects in normal glycogen (NG) and glycogen depleted (GD) states. Seven healthy male subjects (aged 22 to 41 years) each performed four high-intensity square-wave exercise bouts on an electrically braked cycle ergometer under two different muscular glycogen content conditions, i.e. NG and GD states. Subjects performed the following exercise on the evening before the trial day to induce the GD state. Initially, they performed a 75-min cycling exercise at 60% of VO2max. After a 5-min rest period, they subsequently repeated a 1-min cycling bout at 115% of VO2max (separated by 1-min rest periods) until the subject could no longer maintain the prescribed pedal rate for the full minute. Subjects then reported to the laboratory after an overnight fast and performed a single high-intensity exercise bout. The GD procedure was repeated four times at 1-week intervals. In the GD state, the respiratory exchange ratio (RER) (VO2/VCO2) value during a recumbent control period prior to the trial was significantly lower than that in the NG state [GD: 0.84+/-0.02, NG: 0.94+/-0.04, mean +/- SD]. There was no significant difference for thetaF between GD and NG state [NG: 197.1+/-31.9 W, GD: 190.6+/-28.2 W]. W' in contrast was significantly reduced by the GD procedure [NG: 12.83+/-2.21 kJ, GD: 10.33+/-2.41 kJ]. The present results indicate that the muscular glycogen store seems to be an important determinant of the curvature constant (W') of the power-duration curve for cycle ergometry.

摘要

对于高强度自行车测力计运动,功率(P)与其可耐受持续时间(t)之间的关系已通过双曲线关系得到很好的描述:(P - θF)t = W',或P = W'(1/t) + θF,其中θF可称为“疲劳阈值”。曲率常数(W')反映了一定量的功,据推测它等同于与氧亏相关的有限能量储备:磷酸原池、无氧糖酵解和氧储备。与θF相比,W'的生理本质很少受到关注。因此,本研究的目的是确定正常糖原(NG)和糖原耗竭(GD)状态下受试者的功率-持续时间曲线参数(θF和W')。七名健康男性受试者(年龄在22至41岁之间)在两种不同的肌肉糖原含量条件下,即在NG和GD状态下,在电动制动的自行车测力计上各进行了四次高强度方波运动试验。受试者在试验日前一天晚上进行以下运动以诱导GD状态。首先,他们以最大摄氧量(VO2max)的60%进行了75分钟的自行车运动。经过5分钟的休息期后,他们随后以VO2max的115%重复进行1分钟的自行车运动回合(间隔1分钟休息),直到受试者无法在整整一分钟内维持规定的踏板速率。然后,受试者在禁食过夜后到实验室进行一次高强度运动试验。GD程序每隔1周重复四次。在GD状态下,试验前仰卧对照期的呼吸交换率(RER)(VO2/VCO2)值显著低于NG状态[GD:0.84±0.02,NG:0.94±0.04,平均值±标准差]。GD和NG状态之间的θF没有显著差异[NG:197.1±31.9 W,GD:190.6±28.2 W]。相比之下,GD程序使W'显著降低[NG:12.83±2.21 kJ,GD:10.33±2.41 kJ]。目前的结果表明,肌肉糖原储备似乎是自行车测力计运动功率-持续时间曲线曲率常数(W')的一个重要决定因素。

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