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Biomedical subjects

Murray Grossman

Publications and source records attributed to Murray Grossman.

57 records · Page 4Linked to original sources

Visual perceptual functions predict instrumental activities of daily living in patients with dementia.

OBJECTIVE: To assess relations between discrete visual perceptual functions commonly affected in patients with neurodegenerative dementia and the performance of instrumental activities of daily living (IADL). BACKGROUND: Neuropsychologic measures are often used to predict IADL performances in dementia patients. Prior studies have focused on the contribution of higher-level memory and executive deficits to IADL. The relation between visuoperceptual dysfunction and IADL has not been studied systematically. METHODS: Thirty-five elderly patients with neurodegenerative disorders, most diagnosed with probable Alzheimer disease, participated. Patients completed tasks tapping visual perceptual functions believed to be mediated by occipital lobe structures (shape discrimination), posterior inferotemporal regions (face, object form, and written word discrimination), and the dorsolateral parietal lobe (spatial localization). A knowledgeable caregiver rated IADL performance. RESULTS: Object form discrimination, but not other visual perceptual functions, correlated significantly ( = 0.60) with performances of visually based IADL (e.g., misjudging distances, driving, and recognizing familiar people), but not with other IADL, when the variance attributable to dementia severity, language disturbance, and other visual perceptual abilities was controlled. CONCLUSIONS: In contrast to prior investigations that have focused primarily on relations of memory and executive control deficits with IADL in neurologically impaired patients, the results of this study highlight the important contribution of bilateral inferotemporal visual perceptual systems for the performance of IADL in elderly patients with neurodegenerative dementia.

Activities of Daily Living↗

The correlation of cognitive decline with frontotemporal dementia induced annualized gray matter loss using diffeomorphic morphometry.

This study uses large deformation medical image registration to analyze, in a disease-specific normalized space, the annual rate of gray matter atrophy caused by frontotemporal dementia (FTD) and its correlation with cognitive decline. The analysis consists of three parts. First, a labeled structural MRI atlas is deformed into the shape of an average FTD brain. Second, annualized FTD-related atrophy of gray matter structures is estimated for each patient in the database. Third, the group-wise annualized atrophy rate caused by FTD is correlated, for each gray matter voxel, with declining performance on cognitive tests. This study gives insight into the relationship between FTD-related progressive cortical atrophy and loss in cognitive function.

Aged↗