A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease

Alterations in subcortical brain regions are linked to motor and non-motor symptoms in Parkinson’s disease (PD). However, associations between clinical expression and regional morphological abnormalities of the basal ganglia, thalamus, amygdala and hippocampus are not well established. We analyzed 3...

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Main Authors: Laansma, MA, Zhao, Y, van Heese, EM, Bright, JK, Owens-Walton, C, Al-Bachari, S, Anderson, TJ, Assogna, F, van Balkom, TD, Berendse, HW, Cendes, F, Dalrymple-Alford, JC, Debove, I, Dirkx, MF, Druzgal, J, Emsley, HCA, Fouche, J, Garraux, G, Guimarães, RP, Helmich, RC, Hu, M, van den Heuvel, OA, Isaev, D, Kim, H, Klein, JC
Format: Journal article
Language:English
Published: Nature Research 2024
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author Laansma, MA
Zhao, Y
van Heese, EM
Bright, JK
Owens-Walton, C
Al-Bachari, S
Anderson, TJ
Assogna, F
van Balkom, TD
Berendse, HW
Cendes, F
Dalrymple-Alford, JC
Debove, I
Dirkx, MF
Druzgal, J
Emsley, HCA
Fouche, J
Garraux, G
Guimarães, RP
Helmich, RC
Hu, M
van den Heuvel, OA
Isaev, D
Kim, H
Klein, JC
author_facet Laansma, MA
Zhao, Y
van Heese, EM
Bright, JK
Owens-Walton, C
Al-Bachari, S
Anderson, TJ
Assogna, F
van Balkom, TD
Berendse, HW
Cendes, F
Dalrymple-Alford, JC
Debove, I
Dirkx, MF
Druzgal, J
Emsley, HCA
Fouche, J
Garraux, G
Guimarães, RP
Helmich, RC
Hu, M
van den Heuvel, OA
Isaev, D
Kim, H
Klein, JC
author_sort Laansma, MA
collection OXFORD
description Alterations in subcortical brain regions are linked to motor and non-motor symptoms in Parkinson’s disease (PD). However, associations between clinical expression and regional morphological abnormalities of the basal ganglia, thalamus, amygdala and hippocampus are not well established. We analyzed 3D T1-weighted brain MRI and clinical data from 2525 individuals with PD and 1326 controls from 22 global sources in the ENIGMA-PD consortium. We investigated disease effects using mass univariate and multivariate models on the medial thickness of 27,120 vertices of seven bilateral subcortical structures. Shape differences were observed across all Hoehn and Yahr (HY) stages, as well as correlations with motor and cognitive symptoms. Notably, we observed incrementally thinner putamen from HY1, caudate nucleus and amygdala from HY2, hippocampus, nucleus accumbens, and thalamus from HY3, and globus pallidus from HY4–5. Subregions of the thalami were thicker in HY1 and HY2. Largely congruent patterns were associated with a longer time since diagnosis and worse motor symptoms and cognitive performance. Multivariate regression revealed patterns predictive of disease stage. These cross-sectional findings provide new insights into PD subcortical degeneration by demonstrating patterns of disease stage-specific morphology, largely consistent with ongoing degeneration.
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spelling oxford-uuid:22119edc-55b5-4a90-b844-9c0e30b80c362024-11-27T20:03:38ZA worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s diseaseJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:22119edc-55b5-4a90-b844-9c0e30b80c36EnglishJisc Publications RouterNature Research2024Laansma, MAZhao, Yvan Heese, EMBright, JKOwens-Walton, CAl-Bachari, SAnderson, TJAssogna, Fvan Balkom, TDBerendse, HWCendes, FDalrymple-Alford, JCDebove, IDirkx, MFDruzgal, JEmsley, HCAFouche, JGarraux, GGuimarães, RPHelmich, RCHu, Mvan den Heuvel, OAIsaev, DKim, HKlein, JCAlterations in subcortical brain regions are linked to motor and non-motor symptoms in Parkinson’s disease (PD). However, associations between clinical expression and regional morphological abnormalities of the basal ganglia, thalamus, amygdala and hippocampus are not well established. We analyzed 3D T1-weighted brain MRI and clinical data from 2525 individuals with PD and 1326 controls from 22 global sources in the ENIGMA-PD consortium. We investigated disease effects using mass univariate and multivariate models on the medial thickness of 27,120 vertices of seven bilateral subcortical structures. Shape differences were observed across all Hoehn and Yahr (HY) stages, as well as correlations with motor and cognitive symptoms. Notably, we observed incrementally thinner putamen from HY1, caudate nucleus and amygdala from HY2, hippocampus, nucleus accumbens, and thalamus from HY3, and globus pallidus from HY4–5. Subregions of the thalami were thicker in HY1 and HY2. Largely congruent patterns were associated with a longer time since diagnosis and worse motor symptoms and cognitive performance. Multivariate regression revealed patterns predictive of disease stage. These cross-sectional findings provide new insights into PD subcortical degeneration by demonstrating patterns of disease stage-specific morphology, largely consistent with ongoing degeneration.
spellingShingle Laansma, MA
Zhao, Y
van Heese, EM
Bright, JK
Owens-Walton, C
Al-Bachari, S
Anderson, TJ
Assogna, F
van Balkom, TD
Berendse, HW
Cendes, F
Dalrymple-Alford, JC
Debove, I
Dirkx, MF
Druzgal, J
Emsley, HCA
Fouche, J
Garraux, G
Guimarães, RP
Helmich, RC
Hu, M
van den Heuvel, OA
Isaev, D
Kim, H
Klein, JC
A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title_full A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title_fullStr A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title_full_unstemmed A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title_short A worldwide study of subcortical shape as a marker for clinical staging in Parkinson’s disease
title_sort worldwide study of subcortical shape as a marker for clinical staging in parkinson s disease
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