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PMID: 40702929 Published · aheadofprint English Journal Article

Patient-specific hemodynamic analysis of the anterior communicating artery: comparative evaluation of unilateral and bilateral vascular models using MRI-based computational simulations.

Chen ZY, Wu TC, Shih TC

Abstract

The anterior communicating artery (AComA) is a key collateral pathway in the Circle of Willis. This study investigated the effects of bilateral inflows and vascular geometry on hemodynamics using computational fluid dynamics (CFD) simulations derived from magnetic resonance angiography (MRA) data in four subjects. Flow rates were measured using phase-contrast MRA (1.5T Siemens) at major anterior circulation segments. CFD models incorporated rigid walls, pulsatile flow, and MRA-derived inlet waveform curves under laminar, incompressible assumptions. Simulated internal carotid artery velocities correlated strongly (>90%) with measurements. While inlet phase lags had limited impact on time-averaged wll shear stress (TAWSS), significant TAWSS differences (>90%) were observed in a subject with marked anterior cerebral artery (ACA) asymmetry (92% diameter ratio). Bilateral ACA inflows are critical for accurate TAWSS estimation, especially in symmetric anatomies. These findings support incorporting patient-specific bilateral inflows in CFD models for improved AComA hemodynamic evaluation and treatment planning.

Keywords
Anterior communicating artery Circle of Willis computational fluid dynamics magnetic resonance angiography wall shear stress
作者与单位
共 3 位作者,点击展开单位 / ORCID
Chen Zhen-Ye
Graduate Institute of Biomedical Sciences, College of Medicine, China Medical University, Taichung, Taiwan.
Wu Te-Chang ORCID
Department of Medical Imaging, Chi-Mei Medical Center, Tainan, Taiwan. | Department of Medical Sciences Industry, Chang Jung Christian University, Tainan, Taiwan.
Shih Tzu-Ching ORCID
Department of Biomedical Imaging and Radiological Science, China Medical University, Taichung, Taiwan. | The Ph.D. Program for Medical Engineering and Rehabilitation Science, China Medical University, Taichung, Taiwan.
Article Info
Journal
Computer methods in biomechanics and biomedical engineering
Abbr.
Comput Methods Biomech Biomed Engin
ISSN
1476-8259
Published
2025-07-24
电子出版
2025-00-24
页码
1-17
Language
English
Country/Region
England
NLM ID
9802899
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