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中年耐力运动员的脑血管阻抗低于久坐不动的同龄人。

Middle-aged endurance athletes exhibit lower cerebrovascular impedance than sedentary peers.

作者信息

Sugawara Jun, Tomoto Tsubasa, Repshas Justin, Zhang Rong, Tarumi Takashi

机构信息

Institute for Exercise and Environmental Medicine, Texas Health Presbyterian Hospital Dallas, Dallas, Texas.

University of Texas Southwestern Medical Center, Dallas, Texas.

出版信息

J Appl Physiol (1985). 2020 Aug 1;129(2):335-342. doi: 10.1152/japplphysiol.00239.2020. Epub 2020 Jul 16.

Abstract

Because elevated hemodynamic pulsatility could be mechanical stress against the brain, the dampening function of central and cerebral arteries is crucial. Regular endurance exercise training favorably restores the deteriorated dampening function of the aorta and carotid arteries in older populations, yet its effect on cerebrovascular dampening function remains unknown. To address this question, we compared cerebrovascular impedance, a frequency-domain relationship of the cerebral pressure and flow, in 21 middle-aged masters athletes who have been engaged in endurance training and races for >10 yr (MA, 53 ± 4 yr) with sedentary 21 age-matched (MS, 53 ± 5 yr) and 21 young (YS, 29 ± 6 yr) individuals. Using transfer function analysis, cerebrovascular impedance was computed from the simultaneously recorded carotid artery pressure (CAP, via applanation tonometry) and middle cerebral artery blood flow velocity (CBFV, via transcranial Doppler). In the frequency range of 0.78-3.12 Hz, coherence between pulsatile changes in CAP and CBFV was higher than 0.90 in all groups. All subjects exhibited the highest impedance modulus in the range of the first harmonic oscillations (0.78-1.56 Hz) mainly originating from cardiac ejection. Impedance modulus in this range was significantly lower in the MA than MS groups (0.88 ± 0.24 vs. 1.15 ± 0.29 mmHg·s/cm, = 0.011) and equivalent to the YS (0.92 ± 0.30 mmHg·s/cm). Among middle-aged subjects, higher impedance modulus was correlated with lower mean CBFV ( = -0.776, < 0.001) and cerebral cortical perfusion evaluated by MRI ( = -0.371, = 0.015). These results suggest that middle-aged endurance athletes exhibited the significantly lower modulus of cerebrovascular impedance, which is associated with higher CBFV and cerebral cortical perfusion. Impedance modulus in the range of first harmonic oscillations (0.78-1.56 Hz), which reflects heart rate at rest, was lower in middle-aged endurance athletes than in age-matched sedentary peers and was similar to young individuals. Prolonged endurance training is associated with the improved cerebrovascular dampening function in middle-aged adults. Lower cerebrovascular impedance modulus may contribute to maintaining brain perfusion in midlife.

摘要

由于升高的血流动力学搏动性可能是对大脑的机械应力,因此中枢和脑动脉的缓冲功能至关重要。规律的耐力运动训练有利于恢复老年人群中主动脉和颈动脉恶化的缓冲功能,但其对脑血管缓冲功能的影响仍不清楚。为了解决这个问题,我们比较了21名从事耐力训练和比赛超过10年的中年大师级运动员(MA,53±4岁)与21名年龄匹配的久坐不动者(MS,53±5岁)和21名年轻人(YS,29±6岁)的脑血管阻抗,即脑压力与血流的频域关系。使用传递函数分析,通过同时记录的颈动脉压力(CAP,通过压平式眼压计)和大脑中动脉血流速度(CBFV,通过经颅多普勒)计算脑血管阻抗。在0.78 - 3.12 Hz频率范围内,所有组中CAP和CBFV搏动变化之间的相干性均高于0.90。所有受试者在主要源自心脏射血的一次谐波振荡范围(0.78 - 1.56 Hz)内表现出最高的阻抗模量。该范围内的阻抗模量在MA组中显著低于MS组(0.88±0.24 vs. 1.15±0.29 mmHg·s/cm,P = 0.011),且与YS组相当(0.92±0.30 mmHg·s/cm)。在中年受试者中,较高的阻抗模量与较低的平均CBFV(r = -0.776,P < 0.001)以及通过MRI评估的脑皮质灌注相关(r = -0.371,P = 0.015)。这些结果表明,中年耐力运动员表现出显著较低的脑血管阻抗模量,这与较高的CBFV和脑皮质灌注相关。反映静息心率的一次谐波振荡范围(0.78 - 1.56 Hz)内的阻抗模量在中年耐力运动员中低于年龄匹配的久坐同龄人,且与年轻人相似。长期耐力训练与中年成年人脑血管缓冲功能的改善有关。较低的脑血管阻抗模量可能有助于维持中年时期的脑灌注。

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