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Cerebral Hemodynamic Reactions to Low-Intensity Physical Exercise

机译:低强度体育锻炼的脑血流动力学反应

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Cerebral hemodynamic reactions to light physical exercise increasing stepwise on a bicycle ergometer were studied in healthy young male subjects. Hemodynamic parameters were measured by transcranial Doppler ultrasonography from the middle cerebral artery (MCA) before the start of the study and during the last few seconds of each exercise step. Cerebral hemodynamic reactions to physical exercise were characterized by a significant increase in systolic blood flow rate in the middle cerebral artery only at exercise levels of about 0.25 W/kg body weight (90 rpm at 0 W/kg) with no further increase in the blood flow rate with increases in loading to 0.5 W/kg body weight. The mechanism stabilizing blood flow rate in the cerebral arteries as physical exercise increased and, thus, the mechanism of cerebral circulatory autoregulation consisted of a arterial pressure-dependent increase in regional cerebral vascular resistance. The threshold at which the cerebral blood flow rate autoregulatory mechanism was triggered in normal subjects corresponded to a loading of about 0.25 W/kg and a systolic arterial pressure of about 140–145 mmHg.
机译:在健康的年轻男性受试者中研究了对自行车测功机上逐步进行的轻度体育锻炼的脑血流动力学反应。在研究开始之前和每个运动步骤的最后几秒钟,通过经颅多普勒超声从大脑中动脉(MCA)测量血液动力学参数。对体育锻炼的脑血流动力学反应的特征在于,仅在约0.25 W / kg体重的运动水平下(0 W / kg时为90 rpm),大脑中动脉的收缩血流速度才显着增加,而血液中没有进一步增加流量随负载增加到0.5 W / kg体重。随着体育锻炼的增加,稳定脑动脉血流的机制也随之增加,因此,脑循环自动调节的机制包括局部区域脑血管阻力的动脉压依赖性增加。在正常受试者中触发脑血流量自动调节机制的阈值对应于约0.25 W / kg的负荷和约140–145 mmHg的收缩动脉压。

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