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A Magnetic Resonance Imaging Protocol for Stroke Onset Time Estimation in Permanent Cerebral Ischemia
Published on: September 16, 2017
High-Resolution Magnetic Resonance Imaging of Cervicocranial Artery Dissection: Imaging Features Associated With
Ye Wu1, Fang Wu1, Yuehong Liu1
1From the Departments of Radiology (Y.W., F.W., Y.L., Q.Y.), Xuanwu Hospital, Capital Medical University, Beijing, China.
Insights
Irregular surfaces and intraluminal thrombus on high-resolution MRI are linked to stroke in cervicocranial artery dissection (CCAD). These imaging features may help predict stroke risk in CCAD patients.
Area of Science:
- Neurology
- Radiology
- Vascular Medicine
Background:
- Cervicocranial artery dissection (CCAD) is a significant cause of stroke in young adults.
- High-resolution magnetic resonance imaging (HR-MRI) provides detailed views of arterial wall morphology.
- Understanding imaging characteristics associated with stroke in CCAD is crucial for risk stratification.
Purpose of the Study:
- To systematically investigate HR-MRI features of CCAD associated with acute ischemic stroke.
- To identify specific imaging markers that predict stroke occurrence in CCAD patients.
Main Methods:
- Retrospective analysis of 145 affected vessels from 118 CCAD patients.
- Categorization into stroke and non-stroke groups based on clinical outcomes.
- Detailed review of HR-MRI features including lesion location, double lumen, intimal flap, intramural hematoma, pseudoaneurysm, irregular surface, intraluminal thrombus, and stenosis.
- Multivariable logistic regression to determine independent predictors of ischemic stroke.
Main Results:
- Irregular surface (74.7% vs 37.9%, P<0.001) and intraluminal thrombus (44.3% vs 4.5%, P<0.001) were significantly more prevalent in the stroke group.
- Severe stenosis (>70%) was also more common in stroke patients (54.4% vs 31.8%, P=0.008).
- Multivariable analysis identified irregular surface (OR=4.29) and intraluminal thrombus (OR=7.48) as independent predictors of stroke.
Conclusions:
- The presence of an irregular surface and intraluminal thrombus on HR-MRI are significantly associated with acute ischemic stroke in CCAD.
- HR-MRI findings offer insights into the pathogenesis of stroke in CCAD.
- These imaging markers may aid in the early, individual prediction of stroke risk in CCAD patients.
Abstract:
Background and Purpose- We aimed to systematically investigate the characteristics of cervicocranial artery dissection (CCAD) on high-resolution magnetic resonance imaging that are associated with acute ischemic stroke. Methods- Patients with CCAD were recruited and divided into stroke and nonstroke groups. The lesion location, the presence of a double lumen, intimal flap, intramural hematoma, pseudoaneurysm, irregular surface, intraluminal thrombus, and other quantitative parameters of each dissected segment were reviewed. Multiple logistic regression was used to examine the association between imaging features of CCAD and ischemic stroke. Results- A total of 145 affected vessels from 118 patients with CCAD were analyzed. Anterior circulation, intramural hematoma, irregular surface, intraluminal thrombus, and severe stenosis (>70%) on high-resolution magnetic resonance imaging were more prevalent in CCAD patient with stroke (54.4% versus 36.4%; P=0.030, 96.2% versus 84.8%; P=0.017, 74.7% versus 37.9%; P<0.001, 44.3% versus 4.5%; P<0.001, and 54.4% versus 31.8%; P=0.008, respectively). In multivariable logistic regression analysis, the presence of irregular surface and intraluminal thrombus on imaging were independently associated with acute ischemic stroke in CCAD with odds ratios of 4.29 (95% CI, 1.61-11.46, P=0.004) and 7.48 (95% CI, 1.64-34.07, P=0.009). Conclusions- The current findings supported that the presence of irregular surface and intraluminal thrombus were related to stroke occurrence in patients with CCAD. High-resolution magnetic resonance imaging might give insights into pathogenesis of ischemic stroke in CCAD. It may be useful for individual prediction of ischemic stroke early in CCAD.
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