Damon Verstappen, Joost J A de Jong, Paulien H Voorter, Maud van Dinther, Robert J van Oostenbrugge, Julie Staals, Jacobus F A F A Jansen, Walter H Backes
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引用次数: 0
Abstract
Background: In neurovascular and neurodegenerative diseases, blood-brain barrier (BBB) disruption can be subtle, diffuse, and MRI-derived measures are confounded by microvascular architecture. Therefore, we aimed to disentangle MRI-derived blood-brain barrier leakage rate (Ki) into intrinsic vascular permeability (P) and surface area (S).
Methods: In this cross-sectional study, 45 patients with cSVD and 26 elderly controls underwent dynamic contrast-enhanced (DCE) MRI to determine Ki and vessel architecture imaging (VAI) to estimate S. These measures were used to calculate P.
Results: Compared to normal-appearing white matter (NAWM), Ki was higher in WMH (β=0.297, p<0.001) and deep gray matter (DGM) (β=0.210, p=0.007). P was higher in WMH (β=0.410, p<0.001) and similar between NAWM and DGM. S was smaller in WMH (β=-0.467, p<0.001) and larger in DGM (β=0.540, p<0.001). Ki (β=0.289, p=0.007) and P (β=0.249, p=0.021) were only higher in patients than controls in concentric shells surrounding WMH. S was smaller in WMH of patients than controls (β=-0.085, p=0.049). With age, Ki (β=0.260, p=0.008) and P increased (β=0.273, p<0.001), while S decreased (β=-0.079, p=0.025).
Conclusion: Disentangling P and S from the BBB leakage rate provides two biologically more specific and interpretable measures, which have counteracting effects on the BBB leakage in aging and disease.