Alzheimer's Imaging Consortium

Niels Reijner1,2,3, Danielle V Toen4, Betty M Tijms5

  • 1Amsterdam Neuroscience, Neurodegeneration, Amsterdam, Netherlands.

Abstract

Insights

The T1-weighted/T2-weighted (T1w/T2w) ratio detects microstructural changes in Alzheimer's disease (AD) brains, correlating with tissue integrity and differentiating AD subtypes. This neuroimaging biomarker shows promise for clinical applications.

Area of Science:

  • Neuroimaging
  • Neuropathology
  • Biomarker Discovery

Background:

  • Microstructural brain changes precede Alzheimer's disease (AD) onset and progression.
  • The T1-weighted/T2-weighted (T1w/T2w) magnetic resonance imaging (MRI) ratio is a potential biomarker for these changes.
  • Understanding the T1w/T2w ratio's sensitivity to microstructural alterations is crucial for its clinical utility.

Purpose of the Study:

  • To investigate the relationship between the T1w/T2w ratio and histological measures of microstructural changes in AD.
  • To clarify the potential of the T1w/T2w ratio as a neuroimaging biomarker for AD and its subtypes.

Main Methods:

  • Postmortem and antemortem T1w/T2w MRI scans were acquired from AD and control brain donors.
  • Histological analysis of brain tissue was performed for myelin, neuro-axonal damage, microglia, iron, amyloid-beta (Aβ), and phosphorylated tau (pTau).
  • Statistical models were used to assess the correlation between T1w/T2w ratios and histological markers, adjusted for relevant covariates.

Main Results:

  • Postmortem AD brains exhibited a global decrease in T1w/T2w ratio compared to controls, most pronounced in the hippocampus and parahippocampus.
  • The T1w/T2w ratio was strongly correlated between postmortem and antemortem scans.
  • T1w/T2w ratios correlated with myelin and microglia in both control and AD groups, and additionally with Aβ, pTau, neuro-axonal damage, and iron in the AD group.

Conclusions:

  • The T1w/T2w ratio serves as a broad indicator of cortical tissue integrity in AD, beyond just myelin.
  • The T1w/T2w ratio can effectively distinguish between control and AD brains.
  • Regional T1w/T2w ratio variations can differentiate between clinical subtypes of AD, enhancing its research and clinical applications.

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