Aug 2026· Journal of Movement Disorders· 0 citations
Medicine
TL;DR
Findings indicate that larger subcortical WM aPVS volume or higher aPVS count can be an indicator of favorable clinical outcomes in PD.
Abstract
Objective
To examine the relationship between automatically quantified perivascular space (PVS) extent located in the subcortical white matter (WM), baseline motor deficits and cognitive function, as well as longitudinal motor and cognitive outcomes in patients with Parkinson's disease (PD).
Methods
This retrospective cohort study included 270 consecutive patients with newly diagnosed PD. Subcortical WM PVS was automatically segmented using high-resolution T2-weighted images, and automated PVS (aPVS) volume and count were calculated. Multivariate linear regression analyses evaluated the association between subcortical WM aPVS and baseline Unified PD Rating Scale Part III, Mini-Mental State Examination, and Montreal Cognitive Assessment scores. Cox regression models assessed the prognostic value of baseline subcortical WM aPVS for the risk of developing freezing of gait (FOG) and dementia.
Results
Greater subcortical WM aPVS volume, particularly in the frontal and parietal regions, correlated with milder parkinsonian motor deficits and better global cognitive function at baseline. Higher subcortical WM aPVS volume, especially in the frontal region, was linked to a lower risk of FOG (hazard ratio (HR), 0.5; 95% confidence interval (CI), 0.2-0.9; p=0.028). Additionally, greater subcortical WM aPVS volume, especially in the occipital region, was associated with a reduced risk of dementia conversion (HR, 0.4; 95% CI, 0.1-1.0; p=0.041) in Cox regression models. Higher subcortical WM aPVS count was linked to better baseline motor symptoms, cognitive function, and lower risk of FOG.
Conclusions
These findings indicate that larger subcortical WM aPVS volume or higher aPVS count can be an indicator of favorable clinical outcomes in PD.
ABSTRACT Objective Peak‐width of skeletonized mean diffusivity (PSMD) and diffusion tensor imaging–analysis along the perivascular space (DTI‐ALPS), reflecting white matter integrity and glymphatic function, are altered in Alzheimer's disease (AD). We evaluated whether these biomarkers differ between AD participants wi...
Debina Laishram, G. Du, Sangam Kanekar et al.· Annals of Clinical and Trans...· 0 citations
PD-MCI was characterized by distributed hippocampal diffusivity alterations despite the absence of detectable volumetric differences, and subfield-specific diffusion measures may provide complementary information on cognition-related hippocampal involvement beyond conventional volumetry.
Yu-Mei Chen, Lu Peng, Qing Hu et al.· Frontiers in Aging Neuroscie...· 0 citations
PSP and AD showed distinct patterns of tract vulnerability associated with regional florzolotau(18F) retention and clinical impairment, and cross-sectional findings support further longitudinal investigation of disease-specific network degeneration.
Chi-Wei Huang, Hsin-I Chang, T. Chang et al.· European Journal of Nuclear...· 0 citations
GBA-PD patients showed distinct patterns of cortical thickness and volume thinning, as well as amygdala subregional atrophy, which may contribute to future exploratory phenotypic characterization or patient stratification, but validation in larger independent cohorts is required.
Jing-Ru Ren, Yi Xing, Hao Zhou et al.· Frontiers in Aging Neuroscie...· 0 citations
Alzheimer’s disease (AD) and vascular dementia (VaD) are the two most common causes of dementia. Differentiation between them is clinically important, especially in settings with a high cerebrovascular disease burden. To assess the diagnostic utility of visual MRI rating scales—Medial Temporal Atrophy (MTA), Global Cor...
Harsh Anand Singh, A. Dwivedi, Abhishek Pathak· The Egyptian Journal of Radi...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.