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脑血流速度搏动阻尼受损与 7T MRI 测量的血管周围间隙数量有关。

Impaired damping of cerebral blood flow velocity pulsatility is associated with the number of perivascular spaces as measured with 7T MRI.

机构信息

Department of Radiology & Nuclear Medicine, Maastricht University Medical Center, Maastricht, The Netherlands.

School for Mental Health and Neuroscience, Maastricht University, Maastricht, The Netherlands.

出版信息

J Cereb Blood Flow Metab. 2023 Jun;43(6):937-946. doi: 10.1177/0271678X231153374. Epub 2023 Jan 26.

Abstract

Arterial walls stiffen with age, cardiovascular risk factors, and various vascular diseases, which may lead to less damping of the arterial blood flow pulse, subsequent microvascular damage, and enlarged perivascular spaces (PVS). However, the exact interplay between these processes is unclear. This study aimed to investigate the relation between blood flow velocity pulsatility in the small lenticulostriate arteries and their supplying middle cerebral artery and the respective damping factor (DF), with the number of MRI-visible PVS in elderly subjects. Blood flow velocity waveforms were obtained in 45 subjects (median age [range]: 64 [48-81] years, 47% male) using 7T MRI. PVS were scored in the basal ganglia (BG) and centrum semiovale (CSO). Spearman correlation analyses were used to determine associations of the blood flow pulsatility and the DF, with PVS score, adjusted for age and sex. We found a significant association between a lower DF and a higher number of PVS in the BG ( = -0.352,  = 0.021), but not in the CSO. This finding supports the supposed pathophysiological mechanism in which excessive kinetic energy deposition leads to damage of small perforating arteries and contributes to the enlargement of PVS at the level of the BG, but possible other pathways might also be of influence.

摘要

动脉壁随着年龄的增长、心血管危险因素和各种血管疾病而变得僵硬,这可能导致动脉血流脉冲的阻尼减少,随后发生微血管损伤和增大血管周围间隙(PVS)。然而,这些过程之间的确切相互作用尚不清楚。本研究旨在探讨老年人小纹状体动脉及其供应的大脑中动脉的血流速度脉动与各自的阻尼因子(DF)与 MRI 可见 PVS 数量之间的关系。使用 7T MRI 在 45 名受试者(中位年龄[范围]:64[48-81]岁,47%为男性)中获得血流速度波形。在基底节(BG)和半卵圆中心(CSO)中对 PVS 进行评分。使用 Spearman 相关分析来确定血流脉动和 DF 与 PVS 评分之间的关联,该评分通过年龄和性别进行了调整。我们发现,DF 越低,BG 中的 PVS 数量越高( = -0.352,  = 0.021),但在 CSO 中则没有这种关联。这一发现支持了一种假设的病理生理机制,即过多的动能沉积导致小穿通动脉损伤,并导致 BG 水平 PVS 增大,但可能还有其他途径也会产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8d8/10196747/00cdffaf33e5/10.1177_0271678X231153374-fig1.jpg

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