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Dissociable Contributions of Thalamic-Subregions to Cognitive Impairment in Small Vessel Disease

  • Hao Li
  • , Mengfei Cai
  • , Mina A. Jacob
  • , David G. Norris
  • , José P. Marques
  • , Maxime Chamberland
  • , Marco Duering
  • , Roy P.C. Kessels
  • , Frank-Erik de Leeuw
  • , Anil M. Tuladhar (Corresponding author)

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

BACKGROUND: Structural network damage is a potentially important mechanism by which cerebral small vessel disease (SVD) can cause cognitive impairment. As a central hub of the structural network, the role of thalamus in SVD-related cognitive impairments remains unclear. We aimed to determine the associations between the structural alterations of thalamic subregions and cognitive impairments in SVD.

METHODS: In this cross-sectional study, 205 SVD participants without thalamic lacunes from the third follow-up (2020) of the prospective RUN DMC study (Radboud University Nijmegen Diffusion Tensor and Magnetic Resonance Cohort), which was initiated in 2006, Nijmegen, were included. Cognitive functions included processing speed, executive function, and memory. Probabilistic tractography was performed from thalamus to 6 cortical regions, followed by connectivity-based thalamic segmentation to assess each thalamic subregion volume and connectivity (measured by mean diffusivity [MD] of the connecting white matter tracts) with the cortex. Least absolute shrinkage and selection operator regression analysis was conducted to identify the volumes or connectivity of the total thalamus and 6 thalamic subregions that have the strongest association with cognitive performance. Linear regression and mediation analyses were performed to test the association of least absolute shrinkage and selection operator-selected thalamic subregion volume or MD with cognitive performance, while adjusting for age and education.

RESULTS: We found that higher MD of the thalamic-motor tract was associated with worse processing speed (β=-0.27; P<0.001), higher MD of the thalamic-frontal tract was associated with worse executive function (β=-0.24; P=0.001), and memory (β=-0.28; P<0.001), respectively. The mediation analysis showed that MD of thalamocortical tracts mediated the association between corresponding thalamic subregion volumes and the cognitive performances in 3 domains.

CONCLUSIONS: Our results suggest that the structural alterations of thalamus are linked to cognitive impairment in SVD, largely depending on the damage pattern of the white matter tracts connecting specific thalamic subregions and cortical regions.

Original languageEnglish
Pages (from-to)1367-1376
Number of pages10
JournalStroke
Volume54
Issue number5
DOIs
Publication statusPublished - May 2023
Externally publishedYes

Funding

This work was supported by China Scholarship Council (No.202106380078 to Dr Li, No.201706100189 to Dr Cai), Dutch Brain Foundation personal fellowship (H04-12; F2009(1)-16 to Dr de Leeuw), VIDI innovational grant from The Netherlands Organization for Health Research and Development (ZonMw grant 016.126.351 to Dr de Leeuw), and the Netherlands Cardiovascular Research Initiative: The Dutch Heart Foundation (CVON 2018-28 and 2012-06 Heart Brain Connection to Dr Tuladhar). Dr Tuladhar is a junior staff member of the Dutch Heart Foundation (grant number 2016T044).

Keywords

  • Cerebral Small Vessel Diseases/complications
  • Cognitive Dysfunction
  • Cross-Sectional Studies
  • Diffusion Tensor Imaging/methods
  • Humans
  • Magnetic Resonance Imaging
  • Prospective Studies
  • Thalamus/pathology
  • White Matter
  • cortical regions
  • cerebral small vessel disease
  • white matter
  • cognitive impairments
  • thalamus

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