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中央命令相关的大脑前动脉血流速度增加和自愿敲击开始时前额氧合作用增强。

Central command-related increases in blood velocity of anterior cerebral artery and prefrontal oxygenation at the onset of voluntary tapping.

机构信息

Department of Integrative Physiology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.

Department of Applied Clinical Research, University of Texas Southwestern Medical Center, Dallas, Texas.

出版信息

Am J Physiol Heart Circ Physiol. 2021 Sep 1;321(3):H518-H531. doi: 10.1152/ajpheart.00062.2021. Epub 2021 Jul 30.

Abstract

The anterior cerebral artery (ACA) supplies blood predominantly to the frontal lobe including the prefrontal cortex. Our laboratory reported that prefrontal oxygenated-hemoglobin concentration (Oxy-Hb) increased before and at exercise onset, as long as exercise is arbitrarily started. Moreover, the increased prefrontal oxygenation seems independent of both exercise intensity and muscle mass. If so, mean blood velocity of the ACA (ACA) should increase with "very light motor effort," concomitantly with the preexercise and initial increase in prefrontal Oxy-Hb. This study aimed to examine the responses in ACA and vascular conductance index (ACA) of the ACA as well as prefrontal Oxy-Hb during arbitrary or cued finger tapping in 12 subjects, an activity with a Borg scale perceived exertion rating of 7 (median). With arbitrary start, ACA increased at tapping onset (14 ± 9%) via an elevation in ACA. Likewise, prefrontal Oxy-Hb increased at the onset of tapping with a time course resembling that of ACA. A positive cross correlation between the initial changes in ACA and prefrontal Oxy-Hb was found significant in 67% of subjects, having a time lag of 2 s, whereas a positive linear regression between them was significant in 75% of subjects. When tapping was forced to start by cue, the initial increases in ACA, ACA, and prefrontal Oxy-Hb were delayed and blunted as compared with an arbitrary start. Thus, active vasodilatation of the ACA vascular bed occurs at tapping onset, as long as tapping is arbitrarily started, and contributes to immediate increases in blood flow and prefrontal oxygenation. Anterior cerebral artery blood velocity and vascular conductance index along with prefrontal oxygenated-hemoglobin concentration all increased at the onset of finger tapping, peaking immediately after tapping onset, as long as tapping was arbitrarily started. Positive cross correlation and linear regression between the increases in ACA and prefrontal Oxy-Hb were significant in 67%-75% of subjects. Active vasodilatation of the ACA vascular bed occurs with arbitrary tapping onset and contributes to increased ACA and prefrontal oxygenation.

摘要

大脑前动脉(ACA)主要为额叶供血,包括前额叶皮层。我们实验室曾报道,只要运动是任意开始的,前额叶氧合血红蛋白浓度(Oxy-Hb)在运动前和运动开始时就会增加。此外,这种增加的前额叶氧合似乎与运动强度和肌肉量无关。如果是这样,那么大脑前动脉(ACA)的平均血流速度(ACA)应该会随着“非常轻微的运动努力”而增加,同时伴随着运动前和初始前额叶 Oxy-Hb 的增加。本研究旨在观察 12 名受试者在任意或提示手指敲击时大脑前动脉(ACA)及其血管传导指数(ACA)以及前额叶 Oxy-Hb 的反应,这种活动的 Borg 量表感知用力评分中位数为 7。在任意开始时,ACA 通过升高 ACA 在敲击开始时增加(14±9%)。同样,前额叶 Oxy-Hb 在敲击开始时也增加,其时间过程与 ACA 相似。在 67%的受试者中,发现初始 ACA 和前额叶 Oxy-Hb 变化之间存在显著的正交叉相关,时间滞后为 2 秒,而在 75%的受试者中,它们之间存在显著的正线性回归。当敲击被迫通过提示开始时,与任意开始相比,ACA、ACA 和前额叶 Oxy-Hb 的初始增加被延迟和减弱。因此,只要敲击是任意开始的,大脑前动脉血管床就会发生主动血管扩张,从而导致血流和前额叶氧合的即时增加。只要敲击是任意开始的,手指敲击开始时大脑前动脉血流速度和血管传导指数以及前额叶氧合血红蛋白浓度均增加,峰值出现在敲击开始后立即。只要敲击是任意开始的,ACA 和前额叶 Oxy-Hb 的增加之间存在显著的正交叉相关和线性回归在 67%-75%的受试者中。只要敲击是任意开始的,大脑前动脉血管床就会发生主动血管扩张,从而导致大脑前动脉和前额叶氧合的增加。

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