首页> 美国卫生研究院文献>The Journal of Physiology >The time course and magnitude of blood flow changes in the human quadriceps muscles following isometric contraction.
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The time course and magnitude of blood flow changes in the human quadriceps muscles following isometric contraction.

机译:等距收缩后人股四头肌的血流变化的时程和大小。

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摘要

Blood velocities in the human femoral artery were measured using pulsed bidirectional Doppler-ultrasound equipment before, during and after single isometric contractions of the quadriceps muscle group. After contraction periods lasting more than 20 s (long) and of tensions from 10% up to 75% of maximal voluntary contraction (m.v.c.), an increase in blood velocities of seven to eight times the resting level was observed. Estimated maximal volume flow to the whole leg during the post-contraction hyperaemic phase calculated from these blood velocity measurements and vessel diameter (measured with echo-ultrasound equipment) was in two of the subjects 2.4 l/min (female) and 4.4 l/min (male), respectively. In the latter, this estimate fitted very well with results obtained using a venous thermo-dilution method. When using computer tomography to estimate the volume of the quadriceps muscle group, the calculated maximum flow to this muscle group in the post-contraction hyperaemic phase was approximately 175 (female) and 185 (male) ml/min. 100 ml muscle, respectively. This was about forty times the estimated resting volume flow to this muscle of 4.7 (female) and 4.5 (male) ml/min. 100 ml muscle. The length of the post-contraction hyperaemia after short (less than 10 s) contraction periods was 12-13 s, by which time velocities had reached 25% above the precontraction level. After long contractions, the corresponding values were 23-25 s. By contrast, previous plethysmographic observations by others indicate that postcontraction hyperaemias following long contractions last 10-15 min. There was a marked difference between the times taken to reach maximal velocity in the hyperaemic phase when comparing short and long contractions. Maximal velocity was reached four to six cardiac cycles following short periods of contraction but during the very first heart beat after long periods of contractions. The present observations are compatible with the hypothesis that locally released metabolites or hormones play a dominant role in the regulation of the post-contraction hyperaemia. Since during the short contraction periods maximal velocity was reached only after some seconds, whereas with the longer contraction periods it was reached during the first heart beat, it is suggested that these metabolites are released at some distance from the resistance vessels and that some time is needed for diffusion.
机译:在股四头肌肌群单次等长收缩之前,期间和之后,使用脉冲双向多普勒超声仪测量人股动脉的血流速度。收缩期持续超过20秒(长),并且张力从最大自愿收缩的10%上升到最大自主收缩的75%(m.v.c.)后,血流速度增加了7至8倍于静止水平。根据这些血流速度测量值和血管直径(用回声超声设备测量)计算出的收缩后充血阶段流到整个腿部的最大体积流量估计为两个受试者2.4 l / min(女性)和4.4 l / min (男)。在后者中,该估计与使用静脉热稀释法获得的结果非常吻合。当使用计算机体层摄影术估计股四头肌肌肉的体积时,在收缩后充血阶段,计算出的流向该肌肉群的最大流量约为175(女性)和185(男性)ml / min。分别100毫升肌肉。这大约是4.7(女性)和4.5(男性)ml / min估计流向该肌肉的静止体积流量的四十倍。 100毫升肌肉。短时间(少于10 s)的收缩期后,收缩后充血的时间为12-13 s,此时速度已超过收缩前水平的25%。长时间收缩后,相应的值为23-25 s。相比之下,其他人以前的体积描记法观察表明,长期收缩后收缩后充血持续10-15分钟。比较短时收缩和长时收缩,在高氧阶段达到最大速度所需的时间之间存在显着差异。在短暂的收缩后,但是在长期收缩后的第一个心跳期间,最大速度达到了四到六个心动周期。目前的观察结果与以下假设相吻合:局部释放的代谢物或激素在收缩后充血的调节中起主要作用。由于在短的收缩期仅几秒钟后才达到最大速度,而在较长的收缩期则在第一次心跳时达到最大速度,因此建议这些代谢产物在距阻力血管一定距离处释放,并且在一定的时间扩散所需。

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