Associations between subregional thalamic volume and brain pathology in autosomal dominant Alzheimer’s disease

Author:

Pardilla-Delgado Enmanuelle1,Torrico-Teave Heirangi1,Sanchez Justin S1ORCID,Ramirez-Gomez Liliana A1,Baena Ana2,Bocanegra Yamile2,Vila-Castelar Clara1,Fox-Fuller Joshua T13,Guzmán-Vélez Edmarie1,Martínez Jairo1,Alvarez Sergio4,Ochoa-Escudero Martin4,Lopera Francisco2,Quiroz Yakeel T12ORCID

Affiliation:

1. Massachusetts General Hospital, Harvard Medical School, Boston, MA 02114, USA

2. Grupo de Neurociencias de Antioquia, Universidad de Antioquia, Medellin 050010, Colombia

3. Boston University, Boston, MA 02215, USA

4. Hospital Pablo Tobon Uribe, Medellin 050034, Colombia

Abstract

Abstract Histopathological reports suggest that subregions of the thalamus, which regulates multiple physiological and cognitive processes, are not uniformly affected by Alzheimer’s disease. Despite this, structural neuroimaging studies often consider the thalamus as a single region. Identification of in vivo Alzheimer’s-dependent volumetric changes in thalamic subregions may aid the characterization of early nuclei-specific neurodegeneration in Alzheimer’s disease. Here, we leveraged access to the largest single-mutation cohort of autosomal-dominant Alzheimer’s disease to test whether cross-sectional abnormalities in subregional thalamic volumes are evident in non-demented mutation carriers (n = 31), compared to non-carriers (n = 36), and whether subregional thalamic volume is associated with age, markers of brain pathology and cognitive performance. Using automatic parcellation we examined the thalamus in six subregions (anterior, lateral, ventral, intralaminar, medial, and posterior) and their relation to age and brain pathology (amyloid and tau), as measured by PET imaging. No between-group differences were observed in the volume of the thalamic subregions. In carriers, lower volume in the medial subregion was related to increased cortical amyloid and entorhinal tau burden. These findings suggest that thalamic Alzheimer’s-related volumetric reductions are not uniform even in preclinical and prodromal stages of autosomal-dominant Alzheimer’s disease and therefore, this structure should not be considered as a single, unitary structure in Alzheimer’s disease research.

Funder

National Heart, Lung, and Blood Institute

National Institutes of Health (NIH) Office of the Director

National Institute on Aging

Alzheimer’s Association, and Massachusetts General Hospital Executive Committee on Research

NIA

Alzheimer's Association

NIH Research Supplement for Diversity

Anonymous Foundation, and the Administrative Department of Science, Technology and Innovation

Publisher

Oxford University Press (OUP)

Subject

General Earth and Planetary Sciences,General Environmental Science

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