MRI-visible perivascular space location is associated with Alzheimer's disease independently of amyloid burden

Gargi Banerjee1, Hee Jin Kim2,3, Zoe Fox4

  • 1UCL Stroke Research Centre, Department of Brain Repair and Rehabilitation, UCL Institute of Neurology and the National Hospital for Neurology and Neurosurgery, Russell Square House, 10-12 Russell Square, London WC1B 5EH, UK.

Insights

The location of enlarged perivascular spaces on MRI can help differentiate Alzheimer's disease from vascular cognitive impairment. Centrum semi-ovale spaces indicate Alzheimer's, while basal ganglia spaces suggest vascular issues.

Area of Science:

  • Neuroimaging
  • Neurology
  • Radiology

Background:

  • Perivascular spaces (PVS) visible on MRI are markers of cerebral small vessel disease.
  • PVS location may indicate underlying pathology: centrum semi-ovale PVS linked to cerebral amyloid angiopathy (CAA), basal ganglia PVS to arteriolosclerosis.
  • CAA is common in Alzheimer's disease (AD), suggesting a link between PVS location and cognitive impairment type.

Purpose of the Study:

  • To investigate the association between the location and severity of MRI-visible PVS and clinical diagnoses of AD and subcortical vascular cognitive impairment (SVCI).
  • To determine if centrum semi-ovale PVS severity correlates with brain amyloid burden measured by PiB-PET.
  • To assess the diagnostic value of PVS distribution in differentiating AD from SVCI.

Main Methods:

  • Retrospective analysis of 226 patients (110 AD, 116 SVCI) with standardized MRI and PiB-PET scans.
  • MRI-visible PVS were rated for severity (none/mild, moderate, frequent/severe) in centrum semi-ovale and basal ganglia.
  • Univariable and multivariable regression analyses were used to assess associations, adjusting for relevant clinical and demographic factors.

Main Results:

  • Increased severity of centrum semi-ovale PVS was independently associated with a clinical diagnosis of AD (OR 6.26, P=0.017).
  • Increased severity of basal ganglia PVS was associated with SVCI and negatively predicted AD (OR 0.03, P=0.009).
  • PVS severity in either location did not predict PiB-PET amyloid burden.

Conclusions:

  • The anatomical distribution of MRI-visible PVS reflects underlying cerebral small vessel disease pathology.
  • PVS location and severity, combined with other imaging markers, can enhance neuroimaging's diagnostic value in memory clinics.
  • This approach aids in differentiating between clinically diagnosed AD and SVCI.

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