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Published on: November 20, 2015
Intracranial Vessel Wall MRI in Cryptogenic Stroke and Intracranial Vasculitis
Virginie Destrebecq1, Niloufar Sadeghi2, Boris Lubicz3
1Department of Neurology, Erasme University Hospital, Université Libre de Bruxelles, Brussels, Belgium.
Introduction:
Intracranial vasculopathies easily elude classic stroke work-up. We aim in this work to show that vessel wall-MRI could prove an efficient alternative to digital subtraction angiography for the diagnosis of intracranial vasculopathies by identifying intracranial arterial vessel walls anomalies and contrast enhancement, suggestive of angiitis of the central nervous system.
Materials And Methods:
Clinical and imaging characteristics of stroke patients diagnosed with primary angiitis of the central nervous system based on vessel wall-MRI were retrospectively reviewed and the clinical and imaging features of angiitis associated with intracranial vessel walls anomalies and contrast enhancement detailed.
Results:
Twenty patients were included (mean age was 59 years old). All patients were admitted for focal neurological deficits of sudden onset that were recurrent in 13 subjects. Cognitive impairment, headache and seizures occurred in, respectively, 13, 5, and 2 patients. Cerebrospinal fluid analysis was abnormal in 15 patients. In MRI, FLAIR sequences showed ischemic infarcts in 20 patients and DWI showed acute infarct in 15 patients. Digital subtraction angiography was performed in 11 patients and disclosed proximal and distal multifocal stenosis in 10 patients along distal irregularities in different vascular territories in 7. For all of our patients, VW-MRI revealed a concentric contrast enhancement of arterial walls, localized in multiple vascular territories, suggesting angiitis. Abnormalities on digital subtraction angiography and/or MR-Angiography, and vessel wall-MRI were consistent in all patients.
Conclusions:
This report underlies the added value of vessel wall-MRI to the diagnosis of underlying intracranial vasculopathy, particularly primary angiitis of the central nervous system, without the use of invasive endovascular techniques and the yield of vessel wall-MRI in the work-up of cryptogenic stroke.
Insights
Vessel wall MRI is an effective tool for diagnosing intracranial vasculopathies, such as primary central nervous system angiitis. This non-invasive imaging identifies arterial wall abnormalities and contrast enhancement, aiding in stroke work-up.
Area of Science:
- Neurology
- Radiology
- Vascular Imaging
Background:
- Intracranial vasculopathies often present diagnostic challenges with conventional stroke imaging.
- Digital subtraction angiography is invasive and may not fully capture all vessel wall pathologies.
Purpose of the Study:
- To evaluate the efficacy of vessel wall magnetic resonance imaging (VW-MRI) as an alternative to digital subtraction angiography for diagnosing intracranial vasculopathies.
- To identify characteristic VW-MRI findings suggestive of primary central nervous system angiitis.
Main Methods:
- Retrospective review of clinical and imaging data from 20 patients diagnosed with primary central nervous system angiitis using VW-MRI.
- Detailed analysis of clinical presentation, conventional MRI findings (FLAIR, DWI), and digital subtraction angiography results.
- Focus on VW-MRI findings, including arterial wall enhancement and anomalies.
Main Results:
- Twenty patients (mean age 59) presented with focal neurological deficits, cognitive impairment, headache, or seizures.
- Conventional MRI showed ischemic infarcts in all patients; cerebrospinal fluid analysis was abnormal in 15.
- VW-MRI revealed concentric arterial wall enhancement in multiple territories, consistent with angiitis, correlating with digital subtraction angiography findings in all cases.
Conclusions:
- VW-MRI offers significant diagnostic value for intracranial vasculopathies, particularly primary central nervous system angiitis.
- It serves as a non-invasive alternative to endovascular techniques for diagnosing these conditions.
- VW-MRI is beneficial in the work-up of cryptogenic stroke, revealing underlying vasculopathy.
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