MTT and Blood-Brain Barrier Disruption within Asymptomatic Vascular WM Lesions
B E Dewey1,2, X Xu2,3, L Knutsson3,4
1From the Department of Electrical and Computer Engineering (B.E.D., J.L.P.), Johns Hopkins University, Baltimore, Maryland.
Background And Purpose:
White matter lesions of presumed ischemic origin are associated with progressive cognitive impairment and impaired BBB function. Studying the longitudinal effects of white matter lesion biomarkers that measure changes in perfusion and BBB patency within white matter lesions is required for long-term studies of lesion progression. We studied perfusion and BBB disruption within white matter lesions in asymptomatic subjects.
Materials And Methods:
Anatomic imaging was followed by consecutive dynamic contrast-enhanced and DSC imaging. White matter lesions in 21 asymptomatic individuals were determined using a Subject-Specific Sparse Dictionary Learning algorithm with manual correction. Perfusion-related parameters including CBF, MTT, the BBB leakage parameter, and volume transfer constant were determined.
Results:
MTT was significantly prolonged (7.88 [SD, 1.03] seconds) within white matter lesions compared with normal-appearing white (7.29 [SD, 1.14] seconds) and gray matter (6.67 [SD, 1.35] seconds). The volume transfer constant, measured by dynamic contrast-enhanced imaging, was significantly elevated (0.013 [SD, 0.017] minutes-1) in white matter lesions compared with normal-appearing white matter (0.007 [SD, 0.011] minutes-1). BBB disruption within white matter lesions was detected relative to normal white and gray matter using the DSC-BBB leakage parameter method so that increasing BBB disruption correlated with increasing white matter lesion volume (Spearman correlation coefficient = 0.44; P < .046).
Conclusions:
A dual-contrast-injection MR imaging protocol combined with a 3D automated segmentation analysis pipeline was used to assess BBB disruption in white matter lesions on the basis of quantitative perfusion measures including the volume transfer constant (dynamic contrast-enhanced imaging), the BBB leakage parameter (DSC), and MTT (DSC). This protocol was able to detect early pathologic changes in otherwise healthy individuals.
Insights
This study shows that white matter lesions in asymptomatic individuals exhibit prolonged mean transit time (MTT) and elevated volume transfer constant, indicating impaired blood-brain barrier (BBB) function and perfusion changes.
Area of Science:
- Neuroimaging
- Vascular Neurology
- Biomarkers
Background:
- White matter lesions, often ischemic, are linked to cognitive decline and blood-brain barrier (BBB) dysfunction.
- Longitudinal studies require biomarkers to track perfusion and BBB patency changes within white matter lesions.
Purpose of the Study:
- To investigate perfusion and BBB disruption within white matter lesions in asymptomatic individuals.
- To establish quantitative imaging biomarkers for early detection of white matter lesion progression.
Main Methods:
- Utilized a dual-contrast-injection MRI protocol with dynamic contrast-enhanced (DCE) and dynamic susceptibility contrast (DSC) imaging.
- Applied a 3D automated segmentation analysis pipeline to quantify perfusion parameters (CBF, MTT, BBB leakage, volume transfer constant) in white matter lesions.
- Analyzed data from 21 asymptomatic individuals with identified white matter lesions.
Main Results:
- Mean transit time (MTT) was significantly prolonged in white matter lesions compared to normal-appearing white and gray matter.
- The volume transfer constant, a measure of BBB permeability, was significantly elevated in white matter lesions.
- Detected significant BBB disruption within white matter lesions, correlating with lesion volume.
Conclusions:
- A dual-contrast-injection MRI protocol effectively assesses BBB disruption and perfusion changes in white matter lesions.
- This quantitative imaging approach can detect early pathological changes in white matter lesions in asymptomatic individuals.
- The findings support the use of advanced MRI techniques for monitoring white matter lesion progression and associated BBB dysfunction.
More Related Videos
05:19Evaluation of Blood-Brain Barrier Breakdown in a Mouse Model of Mild Traumatic Brain Injury
Published on: October 18, 2024
09:48Quantification of Neurovascular Protection Following Repetitive Hypoxic Preconditioning and Transient Middle Cerebral Artery Occlusion in Mice
Published on: May 4, 2015
