Sato Kohei, Oba Naoko, Washio Takuro, Sasaki Hiroyuki, Oue Anna, Otsuki Aki, Sadamoto Tomoko, Ogoh Shigehiko
Research Institute of Physical Fitness, Japan Women's College of Physical Education, Tokyo, Japan
Research Institute of Physical Fitness, Japan Women's College of Physical Education, Tokyo, Japan.
Physiol Rep. 2017 Jun;5(12). doi: 10.14814/phy2.13292.
The regulation of cerebral venous outflow during exercise has not been studied systematically. To identify relations between cerebral arterial inflow and venous outflow, we assessed the blood flow (BF) of the cerebral arteries (internal carotid artery: ICA and vertebral artery: VA) and veins (internal jugular vein: IJV and vertebral vein: VV) during dynamic exercise using ultrasonography. Nine subjects performed a cycling exercise in supine position at a light and moderate workload. Similar to the ICA BF, the IJV BF increased from baseline during light exercise (<0.05). However, the IJV BF decreased below baseline levels during moderate exercise, whereas the ICA BF returned near resting levels. In contrast, BF of the VA and VV increased with the workload (<0.05). The change in the ICA or VA BF from baseline to exercise was significantly correlated with the change in the IJV ( = 0.73, =0.001) or VV BF ( = 0.52, =0.028), respectively. These findings suggest that dynamic supine exercise modifies the cerebral venous outflow, and there is coupling between regulations of arterial inflow and venous outflow in both anterior and posterior cerebral circulation. However, it remains unclear whether changes in cerebral venous outflow influence on the regulation of cerebral arterial inflow during exercise.
运动期间脑静脉流出的调节尚未得到系统研究。为了确定脑动脉流入与静脉流出之间的关系,我们使用超声检查评估了动态运动期间脑动脉(颈内动脉:ICA和椎动脉:VA)和静脉(颈内静脉:IJV和椎静脉:VV)的血流量(BF)。九名受试者在仰卧位进行了轻度和中度工作量的自行车运动。与ICA血流量相似,IJV血流量在轻度运动期间从基线水平增加(<0.05)。然而,在中度运动期间,IJV血流量降至基线水平以下,而ICA血流量恢复到接近静息水平。相比之下,VA和VV的血流量随工作量增加(<0.05)。从基线到运动期间ICA或VA血流量的变化分别与IJV(r = 0.73,P = 0.001)或VV血流量的变化(r = 0.52,P = 0.028)显著相关。这些发现表明,动态仰卧运动会改变脑静脉流出,并且在脑前循环和后循环中动脉流入和静脉流出的调节之间存在耦合。然而,尚不清楚运动期间脑静脉流出的变化是否会影响脑动脉流入的调节。