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Middle cerebral artery diameter changes during rhythmic handgrip exercise in humans

机译:节律性手握锻炼过程中大脑中动脉直径的变化

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摘要

Transcranial Doppler (TCD) sonography is a frequently employed technique for quantifying cerebral blood flow by assuming a constant arterial diameter. Given that exercise increases arterial pressure by sympathetic activation, we hypothesized that exercise might induce a change in the diameter of large cerebral arteries. Middle cerebral artery (MCA) cross-sectional area was assessed in response to handgrip exercise by direct magnetic resonance imaging (MRI) observations. Twenty healthy subjects (11 female) performed three 5 min bouts of rhythmic handgrip exercise at 60% maximum voluntary contraction, alternated with 5 min of rest. High-resolution 7 T MRI scans were acquired perpendicular to the MCA. Two blinded observers manually determined the MCA cross-sectional area. Sufficient image quality was obtained in 101 MCA-scans of 19 subjects (age-range 20–59 years). Mixed effects modelling showed that the MCA cross-sectional area decreased by 2.1 ± 0.8% (p = 0.01) during handgrip, while the heart rate increased by 11 ± 2% (p < 0.001) at constant end-tidal CO2 (p = 0.10). In conclusion, the present study showed a 2% decrease in MCA cross-sectional area during rhythmic handgrip exercise. This further strengthens the current concept of sympathetic control of large cerebral arteries, showing in vivo vasoconstriction during exercise-induced sympathetic activation. Moreover, care must be taken when interpreting TCD exercise studies as diameter constancy cannot be assumed.
机译:经颅多普勒(TCD)超声检查是通过假设动脉直径恒定来量化脑血流的常用技术。考虑到运动通过交感神经激活增加了动脉压,我们假设运动可能会诱发大脑动脉直径的变化。通过直接磁共振成像(MRI)观察,评估对手部锻炼做出响应的大脑中动脉(MCA)横截面积。二十名健康受试者(11名女性)进行了3次5 min的有节奏的握力运动,最大自愿收缩率为60%,交替休息5分钟。垂直于MCA进行高分辨率的7 T MRI扫描。两名不知情的观察者手动确定了MCA的横截面积。在19位受试者(年龄范围20-59岁)的101次MCA扫描中获得了足够的图像质量。混合效应模型显示,在潮汐结束时保持恒定的CO2(p = 0.10),手握期间MCA截面积减少2.1±0.8%(p = 0.01),而心率增加11±2%(p <0.001)。 )。总之,本研究显示,在有节奏的手握运动中,MCA截面积减少了2%。这进一步加强了目前对大脑动脉的交感神经控制的概念,显示出运动诱发的交感神经激活过程中的体内血管收缩。此外,在解释TCD运动研究时必须小心,因为不能假定直径恒定。

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