Identifying Distinct Spatiotemporal Patterns of Juxtacortical Microstructure in Alzheimer Disease Using Diffusion

Junfang Zhang1,2, Xinyuan Yang1, Yan Wang3

  • 1Department of Neurology & Institute of Neurology, Ruijin Hospital affiliated with Shanghai Jiao Tong University School of Medicine, 197 Ruijin 2nd Rd, Shanghai 200025, China.

Radiology
|October 7, 2025
PubMed

Insights

Free water fraction (FWF) is elevated in Alzheimer disease (AD) and linked to amyloid-beta and tau pathology. Distinct FWF progression patterns correlate with specific cognitive deficits, offering potential imaging insights for AD.

Area of Science:

  • Neuroimaging
  • Alzheimer's Disease Research
  • Biomarker Discovery

Background:

  • Free water fraction (FWF) is an emerging imaging biomarker for Alzheimer disease (AD).
  • Understanding FWF's role in AD progression and its association with core neuropathologies is crucial.

Purpose of the Study:

  • To investigate juxtacortical FWF in individuals with AD and normal cognition.
  • To assess the relationship between FWF, neuropathologic severity (amyloid-beta and tau), and neurodegeneration.
  • To characterize the spatiotemporal patterns of FWF changes using advanced MRI and PET imaging.

Main Methods:

  • A prospective study analyzed diffusion MRI for FWF, 18F-florbetapir PET for amyloid-beta (Aβ), and 18F-MK-6240 PET for tau in 359 participants.
  • Two subtype and stage inference (SuStaIn) models were employed: one analyzing FWF change, the other integrating FWF and Aβ.
  • Statistical analyses included FDR correction to evaluate associations between FWF, Aβ, tau, and cognitive performance.

Main Results:

  • Participants with AD exhibited significantly increased juxtacortical FWF compared to controls (FDR-corrected P < .001 to P = .049).
  • Elevated FWF correlated with higher global cortical Aβ and tau deposition (FDR-corrected P < .001 to P = .04 for Aβ; P < .001 to P = .01 for tau).
  • Two distinct FWF spatiotemporal trajectories were identified: an 'orbitofrontal-first' subtype associated with smaller hippocampal volumes and worse cognition, and an 'amyloid-first' subtype linked to higher amyloid levels and reduced cortical thickness.

Conclusions:

  • Juxtacortical FWF is elevated in AD and associated with key AD pathologies (Aβ, tau) and neurodegeneration markers.
  • Distinct spatiotemporal progression patterns of FWF are linked to differential cognitive performance profiles.
  • FWF represents a promising imaging biomarker for characterizing AD subtypes and progression.