首页> 外文期刊>Journal of Physiological Anthropology >Effect of Blood Volume in Resting Muscle on Heart Rate Upward Drift during Moderately Prolonged Exercise
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Effect of Blood Volume in Resting Muscle on Heart Rate Upward Drift during Moderately Prolonged Exercise

机译:血液体积在中度延长运动期间休息肌肉对心率向上漂移的影响

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The aim of this study was to determine whether the increase in blood volume in resting muscle during moderately prolonged exercise is related to heart rate (HR) upward drift. Eight healthy men completed both arm-cranking moderately prolonged exercise (APE) and leg-pedaling moderately prolonged exercise (LPE) for 30 min. Exercise intensity was 120 bpm of HR that was determined by ramp incremental exercise. During both APE and LPE, HR significantly increased from 3 to 30 min (from 108±9.3 to 119±12 bpm and from 112±8.9 to 122±11 bpm, respectively). However, there was no significant difference between HR in APE and that in LPE. Oxygen uptake was maintained throughout the two exercises. Skin blood flow, deep temperature, and total Hb (blood volume) in resting muscle continuously increased for 30 min of exercise during both APE and LPE. During both APE and LPE, there was a significant positive correlation between total Hb and deep temperature in all subjects. Moreover, there was a significant positive correlation between HR and total Hb (in seven out of eight subjects) during LPE. However, during APE, there was no positive correlation between HR and total Hb (r=0.391). These findings suggest that an increase of blood pooling in resting muscle could be proposed as one of the mechanisms underlying HR upward drift during moderately prolonged exercise.
机译:本研究的目的是确定在中等延长运动期间静息肌肉的血量增加与心率(HR)向上漂移有关。八名健康男士在适度延长运动(APE)和腿部踩踏运动(LPE)术后30分钟。运动强度是120 bpm的人力资源,由斜坡增量运动确定。在APE和LPE中,HR分别从3至30分钟(从108±9.3至119±12bpm分别为112±8.9至122±11bpm)显着增加。然而,在猿猴子里没有显着差异并且在LPE中。在整个两次练习中保持氧气吸收。休息肌肉的皮肤血流,深度温度和总Hb(血容量)在猿和LPE期间锻炼持续30分钟。在APE和LPE期间,所有受试者的总HB和深温之间存在显着的正相关性。此外,在LPE期间,HR和总Hb之间存在显着的阳性相关性和总Hb(八个受试者中的7个)。然而,在APE期间,HR与总HB之间没有正相关(R = 0.391)。这些研究结果表明,休息肌肉中的血液池的增加可以提出作为在中等延长运动期间HR向上漂移的机制之一。

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