Regional associations of white matter hyperintensities and early cortical amyloid pathology

Luigi Lorenzini1, Loes T Ansems1, Isadora Lopes Alves1

  • 1Dept. of Radiology and Nuclear Medicine, Amsterdam University Medical Center, Amsterdam Neuroscience, Amsterdam, The Netherlands.

Insights

Two distinct patterns of white matter hyperintensities (WMH) and amyloid in the brain were identified in non-demented individuals. These patterns differentially impact cognitive function, suggesting distinct underlying pathologies contributing to early cognitive decline.

Area of Science:

  • Neuroimaging
  • Neuropathology
  • Cognitive Neuroscience

Background:

  • White matter hyperintensities (WMH) and amyloid deposition are common in aging brains and linked to Alzheimer's disease.
  • The regional interplay between WMH and amyloid and their combined effect on cognition is not well understood.

Purpose of the Study:

  • To investigate the regional relationship between white matter hyperintensities (WMH) and cortical amyloid burden in a non-demented population.
  • To explore the joint contribution of these pathologies to cognitive performance across different domains.

Main Methods:

  • Utilized PET imaging to assess regional amyloid burden and Bayesian Model Selection for regional WMH volume in 662 participants.
  • Employed Partial Least Square (PLS) regression to identify regional associations between WMH, amyloid, and cardiovascular risk factors.
  • Related individual PLS scores to cognitive performance in attention, memory, executive functioning, and language.

Main Results:

  • Two distinct patterns of WMH-amyloid associations emerged: a fronto-parietal WMH pattern linked to medial orbitofrontal-precuneal amyloid, vascular risk, and age; and a posterior WMH pattern linked to precuneus-cuneus amyloid.
  • Component 1 was associated with poorer performance across all cognitive domains, while Component 2 was specifically linked to worse memory.
  • No significant global association was found between WMH and amyloid.

Conclusions:

  • Identified two distinct regional WMH-amyloid patterns in a pre-dementia population, reflecting potentially vascular-dependent and -independent pathways.
  • These patterns differentially impact cognitive function, highlighting their joint role in early cognitive deterioration.
  • Findings suggest distinct pathophysiological mechanisms underlying WMH-amyloid interactions in early Alzheimer's disease.

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