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Updated: Jan 8, 2026

Hybrid PET/MRI Imaging of Alzheimer's Disease Based on 18F-AV-1451
Published on: April 18, 2025
Alzheimer's Imaging Consortium
Jazlynn Xiu Min Tan1, Min Su Kang2, Yi-Hsuan Yeh2
1Department of Medical Biophysics, University of Toronto, Toronto, ON, Canada.
This study reveals how tau pathology spreads through altered brain networks in Alzheimer's disease (AD). Tau connectivity shifts across brain organization gradients with disease progression, highlighting network reorganization.
Area of Science:
- Neuroscience
- Neuroimaging
- Connectomics
Background:
- Previous research on tau spread focused on short-range connections within anatomical space.
- This study introduces connectome gradients, a novel coordinate system reflecting brain hierarchy, to analyze tau spread along long-range connections.
- Understanding tau spread in this new framework offers insights into network alterations and susceptibility in Alzheimer's disease (AD).
Purpose of the Study:
- To investigate tau spread along long-range connections using connectome gradients.
- To explore alterations in connectivity patterns associated with tau pathology in Alzheimer's disease.
- To understand how tau spread relates to the brain's hierarchical organization and network susceptibility.
Main Methods:
- Included 213 participants (A- CN, A+ CN, A+ CI) with diffusion-weighted MRI, resting-state fMRI, and 18F-MK6240 tau-PET.
- Employed graph theory-based stepwise connectivity analyses to map long-range connections from the entorhinal cortex.
- Investigated connectivity patterns in relation to tau within a coordinate system defined by functional and structural connectome gradients.
Main Results:
- Preclinical AD (A+ CN) showed increased connectivity in functional gradient space compared to controls (A- CN).
- Clinical AD (A+ CI) exhibited reduced connectivity from the entorhinal cortex to specific gradient ends (transmodal/DMN/limbic and posterior/temporo-occipital).
- Tau-connectivity correlations shifted spatially within gradient space with disease progression, indicating network reorganization.
Conclusions:
- A novel integration of stepwise connectivity and connectome gradients enhances understanding of tau spread along major brain organization axes.
- Widespread network reorganization was observed in Alzheimer's disease.
- Tau-connectivity correlations shift between major functional connectome networks during disease progression.
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