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在7T场强下使用高分辨率4D脑血容量磁共振成像评估脑微血管容积搏动性

Assessing Cerebral Microvascular Volumetric Pulsatility with High-Resolution 4D CBV MRI at 7T.

作者信息

Guo Fanhua, Zhao Chenyang, Shou Qinyang, Jin Ning, Jann Kay, Shao Xingfeng, Wang Danny Jj

机构信息

Laboratory of FMRI Technology (LOFT), Mark & Mary Stevens Neuroimaging and Informatics Institute, Keck School of Medicine, University of Southern California.

Siemens Healthcare USA.

出版信息

medRxiv. 2024 Sep 5:2024.09.04.24313077. doi: 10.1101/2024.09.04.24313077.

Abstract

Arterial pulsation is crucial for promoting fluid circulation and for influencing neuronal activity. Previous studies assessed the pulsatility index based on blood flow velocity pulsatility in relatively large cerebral arteries of human. Here, we introduce a novel method to quantify the volumetric pulsatility of cerebral microvasculature across cortical layers and in white matter (WM), using high-resolution 4D vascular space occupancy (VASO) MRI with simultaneous recording of pulse signals at 7T. Microvascular volumetric pulsatility index (mvPI) and cerebral blood volume (CBV) changes across cardiac cycles are assessed through retrospective sorting of VASO signals into cardiac phases and estimating mean CBV in resting state (CBV0) by arterial spin labeling (ASL) MRI at 7T. Using data from 11 young (28.4±5.8 years) and 7 older (61.3±6.2 years) healthy participants, we investigated the aging effect on mvPI and compared microvascular pulsatility with large arterial pulsatility assessed by 4D-flow MRI. We observed the highest mvPI in the cerebrospinal fluid (CSF) on the cortical surface (0.19±0.06), which decreased towards the cortical layers as well as in larger arteries. In the deep WM, a significantly increased mvPI (p = 0.029) was observed in the older participants compared to younger ones. Additionally, mvPI in deep WM is significantly associated with the velocity pulsatility index (vePI) of large arteries (r = 0.5997, p = 0.0181). We further performed test-retest scans, non-parametric reliability test and simulations to demonstrate the reproducibility and accuracy of our method. To the best of our knowledge, our method offers the first in vivo measurement of microvascular volumetric pulsatility in human brain which has implications for cerebral microvascular health and its relationship research with glymphatic system, aging and neurodegenerative diseases.

摘要

动脉搏动对于促进液体循环和影响神经元活动至关重要。以往的研究基于人类相对较大脑动脉中的血流速度搏动性来评估搏动指数。在此,我们介绍一种新方法,利用7T高分辨率4D血管空间占有率(VASO)MRI同步记录脉搏信号,量化跨皮质层和白质(WM)的脑微血管容积搏动性。通过将VASO信号回顾性分类到心动周期阶段,并利用7T动脉自旋标记(ASL)MRI估计静息状态下的平均脑血容量(CBV0),评估心动周期中微血管容积搏动指数(mvPI)和脑血容量(CBV)的变化。利用11名年轻(28.4±5.8岁)和7名年长(61.3±6.2岁)健康参与者的数据,我们研究了衰老对mvPI的影响,并将微血管搏动性与通过4D血流MRI评估的大动脉搏动性进行了比较。我们观察到皮质表面脑脊液(CSF)中的mvPI最高(0.19±0.06),其向皮质层以及较大动脉方向降低。在深部WM中,与年轻参与者相比,年长参与者的mvPI显著增加(p = 0.029)。此外,深部WM中的mvPI与大动脉的速度搏动指数(vePI)显著相关(r = 0.5997,p = 0.0181)。我们进一步进行了重测扫描、非参数可靠性测试和模拟,以证明我们方法的可重复性和准确性。据我们所知,我们的方法首次在体内测量了人脑微血管容积搏动性,这对脑微血管健康及其与类淋巴系统、衰老和神经退行性疾病的关系研究具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95a0/11398588/5ee2f6506028/nihpp-2024.09.04.24313077v1-f0001.jpg

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