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PMID: 39864855 Published · ppublish English Journal Article Observational Study

High Middle Cerebral Artery Wall Shear Stress in Branch Atheromatous Disease: A Computational Fluid Dynamics Analysis.

Journal of atherosclerosis and thrombosis ·Vol. 32 ·No. 8 ·2025-08-01 ·页码 994-1005

Hattori Y, Imada S, Usui R, Yamamoto A, Nakamura M, Ihara M

Abstract

Branch atheromatous disease (BAD), characterized by the occlusion of perforating branches near the orifice of a parent artery, often develops early neurological deterioration because the mechanisms underlying BAD remain unclear. Abnormal wall shear stress (WSS) is strongly associated with endothelial dysfunction and plaque growth or rupture. Therefore, we hypothesized that computational fluid dynamics (CFD) modeling could detect differences in WSS between BAD and small-vessel occlusion (SVO), both of which result from perforating artery occlusion/stenosis. This cross-sectional observational study included consecutive patients admitted to our institution within 7 days after symptom onset who met the following criteria: absence of stenosis/occlusion in the intracranial major arteries on brain magnetic resonance angiography (MRA) or extracranial carotid arteries on carotid ultrasonography. The WSS and blood flow velocity in the M1 segment of the middle cerebral artery were analyzed using CFD based on MRA. The number of patients with a WSS ratio (ipsilesional/contralesional) of >1 was significantly higher in patients with BAD (n = 27) than in those with SVO (n = 27) [20 (74.1%) vs. 11 (40.7%), p = 0.013]. Higher WSS on ipsilesional M1 than on contralesional M1 was an independent risk factor for BAD (adjusted odds ratio 4.38, 95% confidence interval 1.29-14.82, p = 0.018). Blood flow velocity in the M1 segment was not associated with BAD. In patients with BAD, higher M1 segment WSS on CFD can be a risk factor for the development of vulnerable plaques in branch orifices. Moreover, the use of CFD may contribute to the diagnosis of BAD.

Keywords
Branch atheromatous disease Computational fluid dynamics Flow velocity Middle cerebral artery Wall shear stress
MeSH 主题词
Humans Female Male Cross-Sectional Studies Middle Cerebral Artery/physiopathology,pathology,diagnostic imaging Hydrodynamics Plaque, Atherosclerotic/physiopathology,pathology Aged Magnetic Resonance Angiography/methods Stress, Mechanical Middle Aged Blood Flow Velocity Intracranial Arteriosclerosis/physiopathology
作者与单位
共 6 位作者,点击展开单位 / ORCID
Hattori Yorito
Department of Neurology, National Cerebral and Cardiovascular Center. | Department of Preemptive Medicine for Dementia, National Cerebral and Cardiovascular Center.
Imada Shuta
Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology.
Usui Ryo
Department of Neurology, National Cerebral and Cardiovascular Center.
Yamamoto Akimasa
Department of Neurology, National Cerebral and Cardiovascular Center.
Nakamura Masanori
Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology.
Ihara Masafumi
Department of Neurology, National Cerebral and Cardiovascular Center.
Article Info
Journal
Journal of atherosclerosis and thrombosis
Abbr.
J Atheroscler Thromb
ISSN
1880-3873
Published
2025-08-01
电子出版
2025-00-24
页码
994-1005
Language
English
Country/Region
Japan
NLM ID
9506298
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