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Brain MRI Reveals Ascending Atrophy in Parkinson's Disease Across Severity
Jamie C Blair1, Matthew J Barrett2, James Patrie3
1Department of Radiology and Medical Imaging, University of Virginia Health System, Charlottesville, VA, United States.
Abstract:
Models which assess the progression of Lewy pathology in Parkinson's disease have proposed ascending spread in a caudal-rostral pattern. In-vivo human evidence for this theory is limited, in part because there are no biomarkers that allow for direct assessment of Lewy pathology. Here, we measured neurodegeneration via MRI, an outcome which may serve as a proxy for a more direct assessment of ascending models using a combination of (1) MRI-based measures of gray matter density and (2) regions of interest (ROIs) corresponding to cortical and subcortical loci implicated in past MRI and stereological studies of Parkinson's disease. Gray matter density was measured using brain MRI voxel-based morphometry from three cohorts: (1) early Parkinson's disease, (2) more advanced Parkinson's disease and (3) healthy controls. Early Parkinson's disease patients (N = 228, mean age = 61.9 years, mean disease duration = 0.6 years) were newly diagnosed by the Parkinson's Progression Markers Initiative (PPMI). Advanced Parkinson's disease patients (N = 136, mean age = 63.5 years, mean disease duration = 8.0 years) were collected retrospectively from a local cohort undergoing evaluation for functional neurosurgery. Control subjects (N = 103, mean age = 60.2 years) were from PPMI. Comparative analyses focused on gray matter regions ranging from deep gray subcortical structures to the neocortex. ROIs were defined with existing probabilistic cytoarchitectonic brain maps. For subcortical regions of the basal forebrain, amygdala, and entorhinal cortex, advanced Parkinson's disease patients had significantly lower gray matter density when compared to both early Parkinson's disease and healthy controls. No differences were seen in neocortical regions that are "higher" in any proposed ascending pattern. Across early and advanced Parkinson's disease, gray matter density from nearly all subcortical regions significantly decreased with disease duration; no neocortical regions showed this effect. These results demonstrate that atrophy in advanced Parkinson's patients compared to early patients and healthy controls is largely confined to subcortical gray matter structures. The degree of atrophy in subcortical brain regions was linked to overall disease duration, suggesting an organized pattern of atrophy across severity.
Insights
Parkinson's disease neurodegeneration primarily affects subcortical gray matter, not the neocortex, as shown by MRI scans. Atrophy in these deep brain structures correlates with disease duration, supporting an organized progression pattern.
Area of Science:
- Neuroscience
- Neurology
- Medical Imaging
Background:
- Models of Parkinson's disease (PD) progression suggest Lewy pathology spreads from caudal to rostral brain regions.
- Direct in-vivo human evidence for this ascending spread is limited due to a lack of specific biomarkers for Lewy pathology.
Purpose of the Study:
- To investigate neurodegeneration patterns in Parkinson's disease using MRI as a proxy for Lewy pathology progression.
- To assess gray matter density differences in subcortical and cortical regions between early PD, advanced PD, and healthy controls.
Main Methods:
- Utilized voxel-based morphometry on brain MRI scans from three cohorts: early PD (N=228), advanced PD (N=136), and healthy controls (N=103).
- Compared gray matter density in predefined regions of interest (ROIs) encompassing subcortical (basal forebrain, amygdala, entorhinal cortex) and neocortical areas.
- Correlated gray matter density with disease duration in PD patients.
Main Results:
- Advanced PD patients showed significantly lower gray matter density in subcortical regions (basal forebrain, amygdala, entorhinal cortex) compared to early PD and controls.
- No significant gray matter density differences were observed in neocortical regions between the groups.
- Gray matter density in most subcortical regions decreased significantly with longer disease duration in both early and advanced PD patients.
Conclusions:
- Neurodegeneration in Parkinson's disease, as measured by gray matter atrophy, is predominantly concentrated in subcortical structures.
- The observed pattern of subcortical atrophy correlates with disease duration, supporting an organized, possibly ascending, progression model.
- MRI-based gray matter density analysis provides a valuable indirect measure for studying PD progression patterns.
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