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轻度直立位刺激对脑搏动性血流动力学的影响。

Effects of Mild Orthostatic Stimulation on Cerebral Pulsatile Hemodynamics.

作者信息

Ninomiya Yuka, Tomoto Tsubasa, Ogoh Shigehiko, Imai Tomoko, Takahashi Koki, Sugawara Jun

机构信息

Graduate School, Tokyo Ariake University of Medical Health Sciences, Tokyo, Japan.

Human Informatics Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan.

出版信息

Front Physiol. 2019 Mar 12;10:230. doi: 10.3389/fphys.2019.00230. eCollection 2019.

Abstract

The augmented cerebral hemodynamic pulsatility could lead to the elevated risk of cerebrovascular disease. To determine the impact of an acute orthostatic challenge on a pulsatile component of cerebral hemodynamics, mild lower body negative pressure (LBNP, -30 mmHg) was applied to 29 men. Middle cerebral artery blood flow velocity (MCAv) was measured by transcranial Doppler technique. Stroke volume (SV) was estimated by the Modelflow method with adjustment by the Doppler ultrasound-measured SV at rest. SV, peak and pulsatile MCAv, and pulsatility index were significantly lower during the LBNP stimulation than those at the baseline (e.g., supine resting) ( < 0.05 for all), whereas mean arterial pressure and mean MCAv remained unchanged. The change in SV with the LBNP stimulation significantly correlated with corresponding changes in peak and pulsatile MCAv ( = 0.617, < 0.001; = 0.413, = 0.026, respectively). These results suggest that pulsatile components of cerebrovascular hemodynamics are dampened during the transient period of orthostatic challenge (as simulated using LBNP) when compared to supine rest, and which is partly due to the modified SV.

摘要

大脑血流动力学搏动增强可能导致脑血管疾病风险升高。为了确定急性直立性应激对脑血流动力学搏动成分的影响,对29名男性施加了轻度下肢负压(LBNP,-30 mmHg)。采用经颅多普勒技术测量大脑中动脉血流速度(MCAv)。通过Modelflow方法估算每搏输出量(SV),并根据静息时多普勒超声测量的SV进行调整。在LBNP刺激期间,SV、MCAv峰值和搏动性MCAv以及搏动指数均显著低于基线水平(如仰卧休息时)(均P<0.05),而平均动脉压和平均MCAv保持不变。LBNP刺激引起的SV变化与MCAv峰值和搏动性MCAv的相应变化显著相关(分别为r = 0.617,P<0.001;r = 0.413,P = 0.026)。这些结果表明,与仰卧休息相比,在直立性应激的短暂时期(如使用LBNP模拟),脑血管血流动力学的搏动成分受到抑制,这部分归因于SV的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ce2/6423479/f4b3597dd0cd/fphys-10-00230-g001.jpg

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