Keyword search (4,164 papers available)

"Diffusion" Keyword-tagged Publications:

Title Authors PubMed ID
1 Variations in perfusion detectable in advance of microstructure in white matter aging Robinson TD; Sun YL; Chang PTH; Gauthier CJ; Chen JJ; 40694306
PHYSICS
2 A population-averaged structural connectomic brain atlas dataset from 422 HCP-aging subjects Xiao Y; Gilmore G; Kai J; Lau JC; Peters T; Khan AR; 37663773
ENCS
3 Mapping pontocerebellar connectivity with diffusion MRI Rousseau PN; Chakravarty MM; Steele CJ; 36252913
PERFORM
4 Structural brain network topological alterations in stuttering adults Gracco VL; Sares AG; Koirala N; 35368614
PSYCHOLOGY
5 White matter correlates of sensorimotor synchronization in persistent developmental stuttering Jossinger S; Sares A; Zislis A; Sury D; Gracco V; Ben-Shachar M; 34856426
PSYCHOLOGY
6 Characterizing white matter alterations subject to clinical laterality in drug-naïve de novo Parkinson's disease Xiao Y; Peters TM; Khan AR; 34106502
PERFORM
7 Comparing perturbation models for evaluating stability of neuroimaging pipelines. Kiar G, de Oliveira Castro P, Rioux P, Petit E, Brown ST, Evans AC, Glatard T 32831546
IMAGING
8 A Cross-Sectional Study on the Impact of Arterial Stiffness on the Corpus Callosum, a Key White Matter Tract Implicated in Alzheimer's Disease Badji A; de la Colina AN; Boshkovski T; Sabra D; Karakuzu A; Robitaille-Grou MC; Gros C; Joubert S; Bherer L; Lamarre-Cliche M; Stikov N; Gauthier CJ; Cohen-Adad J; Girouard H; 32741837
PERFORM
9 Diffusion dynamics on the coexistence subspace in a stochastic evolutionary game Popovic L; Peuckert L; 32025789
MATHSTATS
10 Inferior Longitudinal Fasciculus' Role in Visual Processing and Language Comprehension: A Combined MEG-DTI Study. Shin J, Rowley J, Chowdhury R, Jolicoeur P, Klein D, Grova C, Rosa-Neto P, Kobayashi E 31507359
PERFORM
11 Arterial stiffness and brain integrity: A review of MRI findings. Badji A, Sabra D, Bherer L, Cohen-Adad J, Girouard H, Gauthier CJ 31063866
PERFORM

 

Title:Characterizing white matter alterations subject to clinical laterality in drug-naïve de novo Parkinson's disease
Authors:Xiao YPeters TMKhan AR
Link:https://pubmed.ncbi.nlm.nih.gov/34106502/
DOI:10.1002/hbm.25558
Publication:Human brain mapping
Keywords:DTI metricsParkinson's diseaseasymmetrydiffusion MRIfixel-based analysismicrostructurevoxel-based analysiswhite matter
PMID:34106502 Category: Date Added:2021-06-10
Dept Affiliation: PERFORM
1 Department of Computer Science and Software Engineering, Concordia University, Montreal, Canada.
2 PERFORM Centre, Concordia University, Montreal, Canada.
3 Imaging Research Laboratories, Robarts Research Institute, Western University, London, Canada.
4 Department of Medical Biophysics, Schulich School of Medicine and Dentistry, Western University, London, Canada.
5 School of Biomedical Engineering, Western University, London, Canada.
6 The Brain and Mind Institute, Western University, London, Canada.

Description:

Parkinson's disease (PD) is a progressive neurodegenerative disorder that is characterized by a range of motor and nonmotor symptoms, often with the motor dysfunction initiated unilaterally. Knowledge regarding disease-related alterations in white matter pathways can effectively help improve the understanding of the disease and propose targeted treatment strategies. Microstructural imaging techniques, including diffusion tensor imaging (DTI), allows inspection of white matter integrity to study the pathogenesis of various neurological conditions. Previous voxel-based analyses with DTI measures, such as fractional anisotropy and mean diffusivity have uncovered changes in brain regions that are associated with PD, but the conclusions were inconsistent, partially due to small patient cohorts and the lack of consideration for clinical laterality onset, particularly in early PD. Fixel-based analysis (FBA) is a recent framework that offers tract-specific insights regarding white matter health, but very few FBA studies on PD exist. We present a study that reveals strengthened and weakened white matter integrity that is subject to symptom laterality in a large drug-naïve de novo PD cohort using complementary DTI and FBA measures. The findings suggest that the disease gives rise to tissue degeneration and potential re-organization in the early stage.





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