lack of association between shape and volume of subcortical brain structures and restless legs syndrome

lack of association between shape and volume of subcortical brain structures and restless legs syndrome

;Marco Hermesdorf;Benedikt Sundermann;Rajesh Rawal;András Szentkirályi;Udo Dannlowski;Klaus Berger
journal of photochemistry and photobiology a: chemistry 2018 Vol. 9 pp. -
187
hermesdorf2018frontierslack

Abstract

ObjectivePrevious studies on patients with restless legs syndrome (RLS) yielded inconclusive results in the magnetic resonance imaging (MRI)-based analyses of alterations of subcortical structures in the brain. The aim of this study was to compare volumes as well as shapes of subcortical structures and the hippocampus between RLS cases and controls. Additionally, the associations between the genetic risks for RLS and subcortical volumes were investigated.MethodsWe compared volumetric as well as shape differences assessed by 3 T MRI in the caudate nucleus, hippocampus, globus pallidus, putamen, and thalamus in 39 RLS cases versus 117 controls, nested within a population-based sample. In a subsample, we explored associations between known genetic risk markers for RLS and the volumes of the subcortical structures and the hippocampus.ResultsNo significant differences between RLS cases and controls in subcortical and hippocampal shapes and volumes were observed. Furthermore, the genetic risk for RLS was unrelated to any alterations of subcortical and hippocampal gray matter volume.InterpretationWe conclude that neither RLS nor the genetic risk for the disease give rise to changes in hippocampal and subcortical shapes and gray matter volumes.

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154682
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10.3389/fneur.2018.00355
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