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Updated: Jan 14, 2026

Identification of Disease-related Spatial Covariance Patterns using Neuroimaging Data
Published on: June 26, 2013
Neural correlates of neurovisual deficits in prodromal and mild dementia with Lewy bodies: A voxel-based morphometry
Augustin Moreau1, Alice Tisserand1,2, Léa Sanna1
1Geriatrics and Neurology Departments, Research and Resources Memory Center (CM2R), Strasbourg University Hospitals, Strasbourg, France.
Abstract:
BackgroundDementia with Lewy bodies (DLB) is one of the main degenerative dementias after Alzheimer's disease and is characterized by neurovisual deficits. Volumetric MRI data on these deficits and their neuro-anatomical correlates are lacking.ObjectiveWe propose a volumetric analysis of the neuro-anatomical substrates of neurovisual deficits in DLB, as assessed by subtests of the Visual Object and Space Perception (VOSP) battery and the Rey-Osterrieth Complex Figure (ROCF).MethodsSeventy patients with prodromal to mild DLB were included in the study, along with 23 healthy elderly subjects (NCT01876459). We used VOSP's incomplete letters (LET) for object perception, and dot counting (DOT) for space perception. The ROCF copy was used to assess visuoconstruction. Correlation analyses were performed in voxel-based morphometry (VBM).ResultsVBM analyses showed a positive correlation between LET performance and the left cerebellar hemisphere (p < 0.05, family-wise error). Positive correlations between LET performance and bilateral occipitotemporal cortex were also demonstrated (p < 0.001 uncorrected). VBM analyses showed a positive correlation between DOT performance and both occipitoparietal cortex and cerebellum (p < 0.001 uncorrected). ROCF performance was positively correlated with frontoparietal cortex (p < 0.001 uncorrected).ConclusionsVisuoperceptive performance (i.e., on LET) was associated with the occipitotemporal cortex, corresponding to the "what" pathway, while performance involving visuospatial skills (i.e., on DOT and ROCF) was associated with the occipitoparietal cortex, corresponding to the "where" pathway. The cerebellum also appears to be involved, predominantly in visuoperception (LET). This exploratory work suggests the involvement of the cerebellum in the neurovisual impairment of DLB, alongside other regions classically involved in visuoperception.
Insights
Neurovisual deficits in Dementia with Lewy bodies (DLB) are linked to specific brain regions. This study found object perception deficits correlate with occipitotemporal cortex and cerebellum, while visuospatial skills involve occipitoparietal and frontoparietal areas.
Area of Science:
- Neuroscience
- Radiology
- Neurology
Background:
- Dementia with Lewy bodies (DLB) is a common neurodegenerative disorder.
- DLB is characterized by significant neurovisual deficits.
- Neuroanatomical correlates of these visual deficits in DLB are not well understood.
Purpose of the Study:
- To investigate the neuroanatomical substrates of neurovisual deficits in DLB using volumetric MRI.
- To correlate performance on specific visual tests with brain structure in DLB patients.
Main Methods:
- Included 70 patients with prodromal to mild DLB and 23 healthy controls.
- Assessed object perception (VOSP's incomplete letters - LET), space perception (DOT), and visuoconstruction (ROCF copy).
- Utilized voxel-based morphometry (VBM) for volumetric analysis and correlation.
Main Results:
- LET performance correlated with the left cerebellar hemisphere and bilateral occipitotemporal cortex.
- DOT performance correlated with occipitoparietal cortex and cerebellum.
- ROCF performance correlated with frontoparietal cortex.
Conclusions:
- Visuoperception (LET) is associated with the occipitotemporal ('what') pathway.
- Visuospatial skills (DOT, ROCF) are linked to the occipitoparietal ('where') pathway.
- The cerebellum shows involvement in DLB neurovisual impairment, particularly visuoperception.
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