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Tracking the changes in longitudinal MRI-detected perivascular spaces following ischaemic stroke.

September 5, 2026pubmed logopapers

Authors

Pham W,Khlif MS,Chen Z,Jarema A,Henderson LA,Macefield VG,Brodtmann A

Affiliations (4)

  • Department of Neuroscience, School of Translational Medicine, Faculty of Medicine, Nursing and Health Sciences, Monash University, Melbourne, Victoria, Australia.
  • Department of Radiology, Alfred Health, Melbourne, Victoria, Australia.
  • School of Medical Sciences (Neuroscience), Brain and Mind Centre, The University of Sydney, Sydney, New South Wales, Australia.
  • School of Medicine, Western Sydney University, Sydney, New South Wales, Australia.

Abstract

Stroke is a leading cause of mortality and morbidity worldwide. Magnetic resonance imaging-visible perivascular spaces (PVS) are an emerging marker of cerebral small vessel disease and may have prognostic value in stroke. We aimed to characterise longitudinal changes in PVS volume and cluster count following ischaemic stroke. Perivascular space volumes and cluster counts were compared between stroke survivors (n = 124; 39 women; median [Q1, Q3] age = 70 [62, 76] years) and healthy controls (n = 39; 15 women; median age = 69 [66, 72.5] years). Magnetic resonance imaging scans were acquired at 3 months, 12 months and 36 months post-stroke. Perivascular spaces were automatically segmented from T1-weighted MRI using a validated deep learning algorithm (nnU-Net). Generalised linear mixed-effects models were used to assess group differences and longitudinal changes in PVS, adjusting for baseline age, sex, total intracranial volume and body mass index. At the 3-month timepoint, whole-brain PVS metrics were significantly greater in the stroke group than in controls. By 36 months, stroke patients demonstrated significant PVS reductions relative to controls in the frontal lobe (PVS volume: exp(β) = 0.93; 95% CI, 0.82, 0.99, P = .032; PVS cluster count: exp(β) = 0.91; 95% CI, 0.83, 1; P = .037). Contrary to age-related PVS enlargement observed in controls, stroke survivors showed significant longitudinal reductions in PVS volume and cluster counts over 36 months. These findings suggest that MRI-visible PVS trajectories after stroke are dynamic and region-specific, challenging the interpretation of PVS enlargement as a simple marker of cerebrovascular disease burden. Ischaemic stroke is associated with dynamic and regional changes in PVS volume and count.

Topics

Magnetic Resonance ImagingIschemic StrokeGlymphatic SystemStrokeBrain IschemiaJournal Article

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