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Differential impact of lacunes and microvascular lesions on poststroke depression.

TitleDifferential impact of lacunes and microvascular lesions on poststroke depression.
Publication TypeJournal Article
Year of Publication2009
AuthorsSantos, M., Gold G., Kövari E., Herrmann F. R., Bozikas V. P., Bouras C., & Giannakopoulos P.
JournalStroke
Volume40
Issue11
Pagination3557-62
Date Published2009 Nov
ISSN1524-4628
KeywordsAged, Aged, 80 and over, Brain Infarction, Depressive Disorder, Major, Female, Follow-Up Studies, Humans, Male, Microcirculation, Prospective Studies, Stroke
Abstract

BACKGROUND AND PURPOSE: Previous studies have postulated that poststroke depression (PSD) might be related to cumulative vascular brain pathology rather than to the location and severity of a single macroinfarct. We performed a detailed analysis of all types of microvascular lesions and lacunes in 41 prospectively documented and consecutively autopsied stroke cases.METHODS: Only cases with first-onset depression <2 years after stroke were considered as PSD in the present series. Diagnosis of depression was established prospectively using DSM-IV criteria for major depression. Neuropathological evaluation included bilateral semiquantitative assessment of microvascular ischemic pathology and lacunes; statistical analysis included Fisher exact test, Mann-Whitney U test, and regression models.RESULTS: Macroinfarct site was not related to the occurrence of PSD for any of the locations studied. Thalamic and basal ganglia lacunes occurred significantly more often in PSD cases. Higher lacune scores in basal ganglia, thalamus, and deep white matter were associated with an increased PSD risk. In contrast, microinfarct and diffuse or periventricular demyelination scores were not increased in PSD. The combined lacune score (thalamic plus basal ganglia plus deep white matter) explained 25% of the variability of PSD occurrence.CONCLUSIONS: The cumulative vascular burden resulting from chronic accumulation of lacunar infarcts within the thalamus, basal ganglia, and deep white matter may be more important than single infarcts in the prediction of PSD.

DOI10.1161/STROKEAHA.109.548545
Alternate JournalStroke
PubMed ID19696424

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