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Intracranial Arterial Calcification and Intracranial Atherosclerosis: Close but Different
Heng Du1, Jia Li2, Wenjie Yang3
1Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Kowloon, Hong Kong SAR, China.
Insights
Intracranial arterial calcification (IAC) patterns differ in stroke patients. Intimal IAC is more strongly linked to atherosclerosis markers like stenosis and plaque burden than medial IAC.
Area of Science:
- Neurology
- Radiology
- Cardiovascular Disease
Background:
- Intracranial arterial calcification (IAC) can affect intimal or medial layers.
- Understanding IAC's link to intracranial atherosclerosis is crucial for stroke risk assessment.
Purpose of the Study:
- To investigate the association between intimal and medial IAC patterns and markers of intracranial atherosclerosis.
- To compare the characteristics of intimal versus medial IAC in patients with acute ischemic stroke.
Main Methods:
- Utilized multi-detector computed tomography (CT) and vessel-wall magnetic resonance imaging (vwMRI) in acute ischemic stroke patients.
- Analyzed IAC patterns (intimal vs. medial) and assessed atherosclerotic markers including luminal stenosis, plaque burden, eccentricity, and intraplaque hemorrhage (IPH).
Main Results:
- IAC was found in 35% of analyzed artery segments, with intimal calcification being more prevalent (61.5%).
- Intimal IAC showed a stronger association with atherosclerotic plaques (79.8%) compared to medial IAC (64.5%).
- Intimal IAC was significantly linked to luminal stenosis, larger plaque burden, plaque eccentricity, and intraplaque hemorrhage.
Conclusions:
- Intimal IAC is more frequently associated with significant atherosclerotic disease markers than medial IAC.
- Findings support the clinical significance of differentiating IAC patterns for evaluating stroke mechanisms, risks, and prognosis.
Background And Purpose:
Intracranial arterial calcification (IAC) may be present in the intimal or medial arterial layer. This study aimed to elucidate the link between the calcification and atherosclerotic disease in the intracranial vasculature.
Methods:
Consecutive patients with acute ischemic stroke were included. Bilateral intracranial segment of the internal carotid artery, M1 segment of the middle cerebral artery, intracranial segment of the vertebral artery, and the basilar artery were visualized by the multi-detector computed tomography (CT) and vessel-wall magnetic resonance imaging (vwMRI) within 14 days after stroke onset. IAC was into the intimal or medial pattern. Subsequently, on the vwMRI, we assessed the luminal stenosis, eccentricity, plaque burden, and intraplaque hemorrhage (IPH) as markers of atherosclerosis at each IAC site.
Results:
Among 69 patients with stroke, IAC was identified in 35% of (161/483) artery segments, of which 61.5% were predominantly intimal calcification and 38.5% were predominantly medial calcification. About 79.8% of intimal calcifications and 64.5% of medial calcifications co-existed with atherosclerotic plaques. Intimal calcification was associated with luminal stenosis (p = 0.003) caused by atherosclerotic lesions. Compared with the medial IAC, intimal IAC was more often accompanied by eccentric plaques (p = 0.02), larger plaque burden (p = 0.001), and IPH (p = 0.001).
Conclusion:
Our multimodal imaging-based comparison study on intracranial arteriosclerosis demonstrated that intimal IAC, compared with medial IAC, was more often accompanied by the luminal stenosis, larger plaque burden, eccentricity, and IPH, providing strong evidence for clinical evaluation on the mechanism, risk, and prognosis of ischemic stroke.
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