Regional brain aging patterns reveal disease-specific pathways of neurodegeneration
Vakli, P.; Weiss, B.; Keresztes, A.; Hermann, P.; Alzheimer's Disease Neuroimaging Initiative (ADNI), ; Cole, J. H.; Vidnyanszky, Z.
Show abstract
The heterogeneity of brain aging is a hallmark of neurological and psychiatric disorders, yet machine-learning tools used to characterize this process, including the brain age paradigm, have largely relied on global metrics that lack the specificity to map these complex patterns. Here, we introduce BrainAgeMap, an interpretable deep learning framework that generates fine-grained, voxel-wise maps of brain-predicted age difference (brain-PAD) from T1-weighted magnetic resonance imaging scans. We provide converging lines of evidence for the frameworks clinical, prognostic, and neurobiological utility. Disorder-specific topographies of accelerated aging were identified in Alzheimers disease (AD), frontotemporal dementia, and schizophrenia. Longitudinal analysis of the hippocampus revealed accelerated aging in individuals with progressive versus stable mild cognitive impairment (MCI), demonstrating prognostic value. Regional brain-PAD in the temporal lobe correlated strongly with in vivo tau pathology measured by positron emission tomography in AD, linking the maps to underlying molecular pathology. Furthermore, regional brain aging in MCI and AD was linked to individual differences in episodic memory function. BrainAgeMap provides a robust tool to delineate disease-specific pathways of neurodegeneration, offering new opportunities for early diagnosis, patient stratification, and monitoring therapeutic interventions.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Differential effects of aging, Alzheimer's pathology, and APOE4 on longitudinal functional connectivity and episodic memory in older adults 96%
- Higher levels of myelin are associated with higher resistance against tau pathology in Alzheimer’s disease 96%
- Tau-PET and in vivo Braak-staging as a prognostic marker in Alzheimer’s disease 95%
Similar papers in this journal
- Hemispheric Asymmetry of Tau Pathology is Related to Asymmetric Amyloid Deposition in Alzheimer's Disease 97%
- Individual bioenergetic capacity as a potential source of resilience to Alzheimer’s disease 96%
- Cognitive Reserve Against Alzheimer's Pathology Is Linked to Brain Activity During Memory Formation 96%
Similar papers in this journal
- Detecting the effect of genetic diversity on brain composition in an Alzheimer's disease mouse model 96%
- Linking structural and functional changes during aging using multilayer brain network analysis 95%
- Knockout of the longevity gene Klotho perturbs aging- and Alzheimer's disease-linked brain microRNAs and tRNA fragments 94%
Similar papers in this journal
- Longitudinal functional connectivity during rest and task is differentially related to Alzheimer's pathology and episodic memory in older adults 96%
- Predicting cognitive decline in a low-dimensional representation of brain morphology 95%
- Changes in electrophysiological static and dynamic human brain functional architecture from childhood to late adulthood 94%
Similar papers in this journal
- Diffusion Deep Learning for Brain Age Prediction and Longitudinal Tracking in Children Through Adulthood 96%
- BrainAgeNeXt: Advancing Brain Age Modeling for Individuals with Multiple Sclerosis 94%
- Reduced expression of fMRI subsequent memory effects with increasing severity across the Alzheimer’s disease risk spectrum 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.