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February 15, 2022Consilium Medicum3 citationsOpen Access

Verifying small vessel disease and mild cognitive impairment with a computational мagnetic resonance imaging analysis

ПКП. М. КрупенинВПВ. А. ПерепеловЕПЕ. М. Перепелова

Structured PICO

Do computational MRI markers of small vessel disease correlate with cognitive impairment in older patients with atrial fibrillation?

P
Population
31 patients aged ≥65 years with small vessel disease and atrial fibrillation taking direct oral anticoagulants. Median age 73, 58% female. Excluded: prior stroke, uncontrolled hypertension or diabetes, smoking, BMI >30, confirmed neurodegenerative disease.
I
Intervention
Computational brain MRI analysis using Lesion Segmentation Tool for white matter hyperintensities (WMH) volume and Computational Anatomy Toolbox for cortical thickness, combined with cognitive testing.
O
Outcome
Correlation between computed MRI markers of small vessel disease (WMH volume, cortical thickness) and cognitive impairment.surrogate

Computational MRI analysis of cortical thickness and white matter hyperintensities provides objective markers that correlate with cognitive impairment in patients with small vessel disease and atrial fibrillation.

Abstract

Aim. To illustrate capabilities of the computational brain мagnetic resonance imaging (MRI) analyses on a small vessel disease (SVD) sample. Materials and methods. Thirty-one patients underwent brain MRI in standard sequences. We used Lesion Segmentation Tool to assess white matter hyperintensities (WMH) volume and Computational Anatomy Toolbox to calculate cortical thickness. Both software plug-ins work within the Statistical Parametric Mapping 12 software for MATLAB. We also performed cognitive testing with the Montreal Cognitive Assessment test and tests to detect hippocampal and executive domain dysfunction. Results. Sixteen patients had mild vascular cognitive impairment. The Median Fazekas scale score was 2 and 2 points. The median intracranial volume fraction occupied by the WMH was 0.07%. It correlated with the executive domain performance but not with cortical thickness. Cortical thickness within several clusters of the prefrontal complex and temporal lobe correlated with performance in cognitive tests. Among the computed MRI markers of the SVD, the occipital lobe cortical thickness had an area under the curve of 70%, and among the cognitive tests, the cued recall measure had an area under the curve of 73.8% to detect mild cognitive impairment. Conclusion. The abovementioned metrics is a valuable tool to objectively estimate white and grey matter state in patients with small vessel disease. Performing those analyses helped to assess SVD properties in the sample further and register new correlations between MRI and cognitive markers.

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Cite This Study

Крупенин et al. (2022) studied this question.

synapsesocial.com/papers/6a10550001be78fe8160bdd0https://doi.org/10.26442/20751753.2022.2.201353
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