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Updated: Dec 8, 2025

Longitudinal In Vivo Imaging of the Cerebrovasculature: Relevance to CNS Diseases
Published on: December 6, 2016
Vessel wall MR imaging for the detection of intracranial inflammatory vasculopathies
Myriam Edjlali1, Ye Qiao2, Gregoire Boulouis1
1Department of Neuroradiology, Université Paris-Descartes-Sorbonne-Paris-Cité, IMABRAIN-INSERM-UMR1266, DHU-Neurovasc, Centre Hospitalier Sainte-Anne, Paris, France.
Insights
Intracranial vessel wall MRI (VW-MRI) directly analyzes arterial wall abnormalities, improving diagnosis of various cerebrovascular diseases beyond lumen imaging. This technique is crucial for identifying stroke causes and understanding conditions like Moyamoya disease.
Area of Science:
- Neurology
- Radiology
- Medical Imaging
Background:
- Current lumen-based imaging (MRA, CTA, DSA) misses intracranial vasculopathies originating within the vessel wall.
- Abnormal vessel wall thickening is a key disease indicator, often present without lumen narrowing.
- There is a clinical need for direct analysis of intracranial vessel wall abnormalities.
Purpose of the Study:
- To review technical aspects of 3D high-resolution black blood intracranial vessel wall MRI (VW-MRI).
- To recommend applications of VW-MRI for diagnosing diverse cerebrovascular diseases.
- To highlight VW-MRI's utility in determining stroke etiology in all age groups.
Main Methods:
- Development of 3D high-resolution black blood MRI sequences for intracranial vessel wall imaging.
- Consideration of technical factors: flow suppression (blood, CSF), spatial resolution, and signal-to-noise ratio (SNR).
- Clinical implementation and expert consensus guidelines for intracranial VW-MRI.
Main Results:
- Intracranial VW-MRI enables routine clinical diagnosis of vasculitis, intracranial atherosclerotic disease (ICAD), dissections, RCVS, Moyamoya disease, and aneurysms.
- High-resolution VW-MRI is increasingly used to solve diagnostic problems in ischemic stroke and hemorrhage.
- VW-MRI aids in identifying culprit plaques and understanding non-occlusive intracranial vasculopathies.
Conclusions:
- Intracranial VW-MRI is a valuable tool for direct vessel wall assessment, complementing lumen-based techniques.
- VW-MRI offers significant diagnostic advantages for a wide spectrum of intracranial vascular diseases.
- This advanced imaging modality is essential for comprehensive stroke workup across pediatric and adult populations.
Abstract:
Intracranial vasculopathies are routinely investigated by lumen-based modalities such as magnetic resonance angiography (MRA), computed tomography angiography (CTA), and digital subtraction angiography (DSA). These techniques are useful to analyze the vessel lumen, allowing to detect vessel stenosis or occlusion. However, the primum movins of the disease, i.e., an abnormal thickening of the vessel wall, remains within the arterial wall. The vasculopathy can moreover be present without always narrowing the lumen or modifying its regularity. Hence, there is a need to detect directly and analyze vessel wall abnormalities. Development of 3D high-resolution black blood sequences for intracranial vessel wall MR imaging (VW-MRI) enabled routine clinical applications not only vasculitis, but also of intracranial atherosclerotic disease (ICAD), intracranial dissections, reversible intracranial dissections, reversible cerebral vasoconstriction syndrome (RCVS), Moyamoya disease, and intracranial aneurysms. This high-resolution intracranial VW- MRI approach is increasingly used on a clinical basis at many centers to solve diagnostic problems, especially in patients with ischemic stroke or intracranial hemorrhage. An expert consensus Guideline from the American Society of Neuroradiology provides recommendations for clinical implementation of intracranial vessel wall MRI. There are several technical aspects needed to be considered when implementing VW-MRI in intracranial vessels, including flow suppression, both in blood and cerebrospinal fluid (CSF), spatial resolution and signal-to-noise ratio (SNR). In this article, we review the technical aspects of VW-MRI, and recommend applications for vascular diseases including non-occlusive intracranial vasculopathies, Moyamoya disease, and identifying culprit plaques. We also give a focus on the utility of VW-MRI for determining stroke etiology in adults and in children and young adults.
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