Literature DB >> 32065078

Venous disruption affects white matter integrity through increased interstitial fluid in cerebral small vessel disease.

Ruiting Zhang1, Peiyu Huang1, Yeerfan Jiaerken1, Shuyue Wang1, Hui Hong1, Xiao Luo1, Xiaopei Xu1, Xinfeng Yu1, Kaicheng Li1, Qingze Zeng1, Xiao Wu1, Min Lou2, Minming Zhang1.   

Abstract

Deep medullary veins (DMVs) participate in the drainage of surrounding white matter. In cerebral small vessel disease (CSVD), disrupted DMVs were often observed together with damaged white matter, but the phenomenon lacked validation and explanation. We hypothesized that venous disruption might cause white matter damage through increased interstitial fluid resulting from hemodynamic alteration, and we designed a comprehensive multi-modality MRI study to testify our hypothesis. Susceptibility-weighted imaging was used to investigate the characteristics of DMVs and derive DMVs scores. Free water elimination diffusion tensor imaging model was used to analyze interstitial fluid fraction (fraction of free water, fFW) and white matter integrity (tissue fractional anisotropy, FAt). Totally, 104 CSVD patients were included. Total DMVs score was associated with FAt of DMVs drainage area. The effect of total DMVs score on FAt was mediated by fFW, after controlling for age, sex, hypertension, regional cerebral blood flow and lacune numbers. The relationships between DMVs score, fFW and FAt were also significant in most DMVs drainage subregions. Therefore, we discovered the DMVs disruption - increased interstitial fluid - white matter damage link in CSVD patients, which was independent of arterial perfusion variations.

Entities:  

Keywords:  Cerebral small vessel disease; deep medullary veins; free water elimination diffusion tensor imaging model; interstitial fluid; white matter integrity

Mesh:

Year:  2020        PMID: 32065078      PMCID: PMC7747165          DOI: 10.1177/0271678X20904840

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


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