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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Matched increases in cerebral artery shear stress, irrespective of stimulus, induce similar changes in extra-cranial arterial diameter in humans
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Matched increases in cerebral artery shear stress, irrespective of stimulus, induce similar changes in extra-cranial arterial diameter in humans

机译:脑动脉剪切应力的匹配增加,无论刺激,如何在人类中诱导相似的颅动脉直径

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摘要

The mechanistic role of arterial shear stress in the regulation of cerebrovascular responses to physiological stimuli (exercise and hypercapnia) is poorly understood. We hypothesised that, if shear stress is a key regulator of arterial dilation, then matched increases in shear, induced by distinct physiological stimuli, would trigger similar dilation of the large extra-cranial arteries. Participants (n = 10) participated in three 30-min experimental interventions, each separated by >= 48 h: (1) mild-hypercapnia (FICO2:similar to 0.045); (2) submaximal cycling (EX; 60%HRreserve); or (3) resting (time-matched control, CTRL). Blood flow, diameter, and shear rate were assessed (via Duplex ultrasound) in the internal carotid and vertebral arteries (ICA, VA) at baseline, during and following the interventions. Hypercapnia and EX produced similar elevations in blood flow and shear rate through the ICA and VA (p < 0.001), which were both greater than CTRL. Vasodilation of ICA and VA diameter in response to hypercapnia (5.3 +/- 0.8 and 4.4 +/- 2.0%) and EX (4.7 +/- 0.7 and 4.7 +/- 2.2%) were similar, and greater than CTRL (p < 0.001). Our findings indicate that matched levels of shear, irrespective of their driving stimulus, induce similar extra-cranial artery dilation. We demonstrate, for the first time in humans, an important mechanistic role for the endothelium in regulating cerebrovascular response to common physiological stimuli in vivo.
机译:动脉剪切应力在脑血管反应调节对生理刺激(运动和Hypercapnia)中的机械作用是较差的。我们假设,如果剪切应力是动脉扩张的关键调节器,则由不同生理刺激引起的剪切匹配的增加会引发大型颅内动脉的相似扩张。参与者(n = 10)参加了三种30分钟的实验干预措施,每次分离> = 48小时:(1)轻度高曲线(Fico2:类似于0.045); (2)潜水循环(EX; 60%HRRESERVE);或(3)休息(时间匹配控制,CTRL)。在基线的内部颈动脉和椎体(ICA,VA)中评估血流量,直径和剪切速率,在基线,期间和遵循干预措施。 Hypercapnia和Ex在通过ICA和VA(P <0.001)中产生类似的血流和剪切速率,这两者均大于CTRL。响应Hypercapnia(5.3 +/- 0.8和4.4 +/- 2.0%)和ex(4.7 +/- 0.7和4.7 +/- 2.2%)的血管稀释性相似,并且大于Ctrl(P < 0.001)。我们的研究结果表明,匹配水平的剪切,无论其驾驶刺激,诱导相似的颅内动脉扩张。我们在人类中首次证明了内皮对脑血管反应对体内常见生理刺激的重要机制作用。

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