首页> 外文期刊>Engineering Applications of Computational Fluid Mechanics >Modeling of Flow Through The Circle of Willis and Cerebral Vasculature to Assess The Effects of Changes In The Peripheral Small Cerebral Vasculature on The Inflows
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Modeling of Flow Through The Circle of Willis and Cerebral Vasculature to Assess The Effects of Changes In The Peripheral Small Cerebral Vasculature on The Inflows

机译:建模通过Willis和脑血管循环的流,以评估周围小脑血管的变化对入流的影响

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AbstractThe cerebral hemodynamics through the Circle of Willis (CoW) was modeled by coupling a three-dimensional (3D) Computational Fluid Dynamics (CFD) model of the CoW with a one-dimensional (1D) branching tree model of the peripheral cerebral vasculature. CFD was used to model the 3D transient flow through idealized and patient-specific CoW geometries. A 1D pipe network model was also used to predict the flow through the idealized CoW. The coupled model provided useful insight into the variation of the flow through the CoW as a result of possible physiological and pathological changes (for example associated with ‘onset’ of Alzheimer’s Disease) in the peripheral networks of small cerebral vasculature. A comparison was made between the complete CoW and geometric variations with communicating arteries missing. A CoW inflow ratio showed that vasoconstriction of the peripheral vasculature of the posterior cerebral artery predominantly decreases the flow rate in the vertebral arteries, while vasoconstrictio...
机译:摘要通过将CoW的三维(3D)计算流体动力学(CFD)模型与周围脑脉管系统的一维(1D)分支树模型耦合来模拟通过Willis环(CoW)进行的大脑血液动力学。 CFD用于通过理想化和患者特定的CoW几何形状对3D瞬态流进行建模。一维管网模型也用于预测通过理想化CoW的流量。耦合模型为细小脑血管外围网络中可能发生的生理和病理变化(例如,与阿尔茨海默氏病的“发作”相关)导致的通过CoW的流量变化提供了有用的见解。比较了完整的CoW和缺少连通动脉的几何变化。 CoW流入比率显示,大脑后动脉周围血管的血管收缩主要降低了椎动脉的流速,而血管收缩...

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