Department of Biomedical Engineering, Toyo University, 2100 Kujirai, Kawagoe-shi, Saitama, 350-8585, Japan.
Research Center of Health, Physical Fitness, and Sports, Graduate School of Medicine, Nagoya University, Nagoya, Japan.
Eur J Appl Physiol. 2022 Aug;122(8):1939-1948. doi: 10.1007/s00421-022-04973-9. Epub 2022 Jun 4.
Change in cardiac output (Q) contributes to cerebral blood flow (CBF) regulation at rest and even during steady-state exercise. At the onset of cycling exercise, Q increases acutely and largely via muscle pump. The purpose of the present study was to examine whether onset exercise-induced a large increase in Q contributes to CBF regulation at the onset of exercise.
In 20 young healthy participants (10 males and 10 females), Q, mean arterial pressure (MAP), and mean blood velocities of middle and posterior cerebral arteries (MCA Vm and PCA Vm) were continuously measured during light cycling exercise for 3 min.
At the onset of exercise, Q increased acutely to the peak (P < 0.001), while the CBF peak responses were not significantly higher than the values during the steady-state exercise (MCA Vm and PCA Vm; P = 0.183 and P = 0.101, respectively). The change in Q was correlated with that of MCA Vm or PCA Vm from resting baseline to the steady-state exercise (r = 0.404, P < 0.001 and r = 0.393, P < 0.001, respectively). However, the change in Q was not correlated with that of MCA Vm or PCA Vm at the onset of exercise (P = 0.853 and P = 0.893, respectively). Any sex differences in the onset response of peripheral and cerebral hemodynamics to exercise were not observed.
These findings suggest that the acute change in Q does not contribute to CBF regulation at the onset of exercise for protecting cerebral vasculature against a large and acute elevation in Q at the onset of exercise.
心输出量(Q)的变化有助于静息状态甚至在稳定状态运动期间的脑血流(CBF)调节。在开始骑自行车运动时,Q 会急剧增加,主要通过肌肉泵实现。本研究的目的是检查开始运动时 Q 的急剧增加是否有助于运动开始时的 CBF 调节。
在 20 名年轻健康的参与者(10 名男性和 10 名女性)中,在轻骑自行车运动期间连续测量 3 分钟的 Q、平均动脉压(MAP)以及大脑中动脉(MCA Vm)和大脑后动脉(PCA Vm)的平均血流速度。
在运动开始时,Q 急剧增加到峰值(P<0.001),而 CBF 峰值反应并不明显高于稳定状态运动时的值(MCA Vm 和 PCA Vm;P=0.183 和 P=0.101,分别)。Q 的变化与从静息基线到稳定状态运动的 MCA Vm 或 PCA Vm 的变化相关(r=0.404,P<0.001 和 r=0.393,P<0.001,分别)。然而,Q 的变化与运动开始时 MCA Vm 或 PCA Vm 的变化无关(P=0.853 和 P=0.893,分别)。在运动对周围和脑血流的起始反应中没有观察到任何性别差异。
这些发现表明,Q 的急性变化不会有助于运动开始时的 CBF 调节,以防止在运动开始时 Q 急剧升高对脑血管造成的损害。