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Thalamic nuclei insights into Alzheimer's disease
Preprint   Open access

Thalamic nuclei insights into Alzheimer's disease

Julie P Vidal, Daniel J Myall, Jérémie Pariente, Toni L Pitcher, Reece P Roberts, Erin E Cawston, Campbell Le Heron, Tim J Anderson, Catherine A Morgan, Tracy R Melzer, …
bioRxiv
openRxiv
28/05/2026
Handle:
https://hdl.handle.net/10523/51361

Abstract

Alzheimer's disease Thalamus Thalamic nuclei Amyloid PET Centiloids Neurodegeneration HIPS-THOMAS
Introduction: Thalamic nuclei support multiple cognitive processes, yet their integrity in biologically-defined Alzheimer's disease (AD) remains unknown. Method: Amyloid status was determined using PET Centiloids >24 in 1,327 participants from ADNI. Combined with clinical diagnosis, this yielded six groups: amyloid-negative or positive CN-MCI-dementia/AD. Thalamic nuclei volumes were extracted from T1-weighted MRI using the HIPS-THOMAS algorithm. Results: Large volume reductions in the anteroventral, mediodorsal, and pulvinar nuclei were observed in amyloid-positive MCI and AD. Reduced volumes were also evident in amyloid-positive CN, supporting preclinical AD. Adding the anteroventral nucleus improved cognitive status classification in Random Forest analyses. A phenotypic model integrating thalamic nuclei clearly distinguished amyloid-positive groups from amyloid-negative CN and reclassified non-AD patients with 68% of amyloid-negative MCI subjects as CN-like, and 27% of amyloid-positive CN as MCI-like. Discussion: Thalamic volumetry from conventional T1-weighted MRI enhances clinical insight into AD and provides a practical biomarker for disease intervention.
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Preprint (Author's original) v1 Open Access CC BY V4.0
url
https://doi.org/10.64898/2026.05.26.728015View
Preprint (Author's original) Open CC BY V4.0

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