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在18摄氏度、25摄氏度和33摄氏度的空气及水中工作时的代谢与心血管调节。

Metabolic and cardiovascular adjustment to work in air and water at 18, 25, and 33 degrees C.

作者信息

McArdle W D, Magel J R, Lesmes G R, Pechar G S

出版信息

J Appl Physiol. 1976 Jan;40(1):85-90. doi: 10.1152/jappl.1976.40.1.85.

Abstract

By use of successive increments of discontinuous work with an arm-leg cycle ergometer the VO2, Q, SV, and HR were studied in six male subjects at rest and during exercise in air and in water at 18, 25, and 33 degrees C. The Q values obtained by CO2 rebreathing were reproducible. VO2 was linearly related to work with the plots for air and 33 degrees C water being similar. However, during work in 25 and 18 degrees C water, the VO2 averaged 9.0% (150 ml) and 25.3% (400 ml) higher, respectively, than values observed in 33 degrees C water, with the largest differences observed in leaner subjects. The plot of HR-VO2 was linear and almost identical during work in air and 33 degrees C water, but shifted significantly to the right in cooler water. VO2 averaged 250-700 ml higher in cold water compared to air and 33 degrees C water at a given mean heart rate. The Q vs. VO2 line was similar during work in air and in water with no effect of water or temperature. At similar levels of VO2, SV was significantly larger (P less than 0.05) in 25 and 18 degrees C water than in air or 33 degrees C water. Consequently, the reduction in heart rate during work in cold water was entirely compensated for by a proportionate increase in the SV of the heart. Q was therefore maintained at similar levels of energy expenditure in air and in 18, 25, and 30 degrees C water.

摘要

通过使用手臂-腿部循环测力计进行不连续工作的连续增量,研究了6名男性受试者在休息时以及在18℃、25℃和33℃的空气和水中运动时的耗氧量(VO2)、心输出量(Q)、每搏输出量(SV)和心率(HR)。通过二氧化碳重呼吸获得的Q值具有可重复性。VO2与工作量呈线性相关,空气和33℃水的曲线相似。然而,在25℃和18℃的水中工作时,VO2平均分别比在33℃水中观察到的值高9.0%(150毫升)和25.3%(400毫升),在较瘦的受试者中观察到的差异最大。在空气和33℃水中工作时,心率-VO2曲线是线性的且几乎相同,但在较冷的水中明显向右移动。在给定的平均心率下,与空气和33℃水相比,冷水中的VO2平均高250-700毫升。在空气和水中工作时,Q与VO2的关系曲线相似,不受水或温度的影响。在相似的VO2水平下,25℃和18℃水中的SV明显大于(P<0.05)空气或33℃水中的SV。因此,冷水工作期间心率的降低完全由心脏SV的相应增加所补偿。因此,在空气和18℃、25℃和30℃的水中,在相似的能量消耗水平下,Q保持在相似水平。

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