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Atherosclerosis in the circle of Willis: Spatial differences in composition and in distribution of plaques
Nerissa P Denswil1, Allard C van der Wal1, Katja Ritz1
1Academic Medical Center, Department Pathology, Cardiovascular Research, Meibergdreef 9, 1105 AZ, Amsterdam, The Netherlands.
Insights
Advanced atherosclerotic plaques in the Circle of Willis (CoW) are rare and stable, primarily affecting large arteries. Intraplaque hemorrhages (IPH) were infrequent and linked to cardiovascular events.
Area of Science:
- Neurology
- Cardiovascular Science
- Pathology
Background:
- Intracranial atherosclerosis is a significant cause of ischemic stroke.
- Characteristics of intracranial arteries and atherosclerosis remain understudied.
- This study systematically investigated atherosclerotic changes in the Circle of Willis (CoW).
Purpose of the Study:
- To systematically investigate atherosclerotic changes in all arteries of the Circle of Willis (CoW).
- To characterize atherosclerotic plaques and relate them to local vessel properties.
Main Methods:
- Autopsy examination of 67 Circle of Willis (CoW) samples.
- Analysis of 1220 arterial segments from 22 sites.
- Classification of atherosclerotic plaques using the American Heart Association criteria and assessment of vessel characteristics.
Main Results:
- 15% of segments showed advanced plaques, predominantly in large arteries (internal carotid, middle cerebral, basilar, vertebral).
- Complicated plaques, including intraplaque hemorrhages (IPH), were rare (1%) and associated with cardiovascular events.
- Calcification was infrequent (3%), with a higher prevalence in the vertebral artery.
Conclusions:
- Advanced atherosclerotic plaques in the CoW are scarce and primarily found in four major arteries.
- These plaques typically exhibit an early, stable phenotype with low calcification and IPH frequency.
- Findings highlight the specific characteristics of atherosclerosis within the CoW network.
Background And Aims:
Intracranial atherosclerosis is one of the main causes of ischemic stroke. However, the characteristics of intracranial arteries and atherosclerosis have rarely been studied. Therefore, we systematically investigated atherosclerotic changes in all arteries of the Circle of Willis (CoW).
Methods:
Sixty-seven CoWs obtained at autopsy from randomly chosen hospital patients (mean age, 67.3 ± 12.5 years), of which a total of 1220 segments were collected from 22 sites. Atherosclerotic plaques were classified according to the revised American Heart Association classification and were related to local vessel characteristics, such as the presence of an external and internal elastic lamina and the elastic fibre density of the media.
Results:
181 out of the 1220 segments had advanced plaques (15%), which were mainly observed in large arteries such as the internal carotid, middle cerebral, basilar and vertebral artery. Only 11 out of 1220 segments (1%) showed complicated plaques (p < 0.001). Six of these were intraplaque hemorrhages (IPH) and observed only in patients who had cardiovascular-related events (p = 0.015). The frequency of characteristics such as the external elastic lamina and a high elastin fibre density in the media was most often associated with the vertebral artery. Only 3% (n = 33) of the CoW arteries contained calcification (p < 0.001), which were mostly observed in the vertebral artery (n = 13, 12%).
Conclusions:
Advanced atherosclerotic plaques in the CoW are relatively scarce and mainly located in the 4 large arteries, and mostly characterized by an early and stable phenotype, a low calcific burden, and a low frequency of IPH.
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