Abstract
BACKGROUND AND PURPOSE: DTI studies of patients with primary open-angle glaucoma have demonstrated that glaucomatous degeneration is not confined to the retina but involves the entire visual pathway. Due to the lack of direct biologic interpretation of DTI parameters, the structural nature of this degeneration is still poorly understood. We used neurite orientation dispersion and density imaging (NODDI) to characterize the microstructural changes in the pregeniculate optic tracts and the postgeniculate optic radiations of patients with primary open-angle glaucoma, to better understand the mechanisms underlying these changes.& nbsp;MATERIALS AND METHODS: T1- and multishell diffusion-weighted scans were obtained from 23 patients with primary open-angle glaucoma and 29 controls. NODDI parametric maps were produced from the diffusion-weighted scans, and probabilistic tractography was used to track the optic tracts and optic radiations. NODDI parameters were computed for the tracked pathways, and the measures were compared between both groups. The retinal nerve fiber layer thickness and visual field loss were assessed for the patients with glaucoma.& nbsp;RESULTS: The optic tracts of the patients with glaucoma showed a higher orientation dispersion index and a lower neurite density index compared with the controls (P
Original language | English |
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Pages (from-to) | 756-763 |
Number of pages | 8 |
Journal | American Journal of Neuroradiology |
Volume | 43 |
Issue number | 5 |
DOIs | |
Publication status | Published - May-2022 |
Keywords
- LATERAL GENICULATE-NUCLEUS
- OPTIC-NERVE
- BRAIN CONNECTIVITY
- DTI PARAMETERS
- DIFFUSION
- INTEGRITY
- SEVERITY
- MRI
- SEGMENTATION
- ATROPHY