血流动力学
动脉瘤
血流
流量(数学)
灵敏度(控制系统)
放射科
医学
生物医学工程
心脏病学
计算机科学
内科学
数学
几何学
工程类
电子工程
作者
Juan R. Cebral,Marcelo A. Castro,Sunil Appanaboyina,Christopher M. Putman,Daniel Millán,Alejandro F. Frangi
标识
DOI:10.1109/tmi.2005.844159
摘要
Hemodynamic factors are thought to be implicated in the progression and rupture of intracranial aneurysms. Current efforts aim to study the possible associations of hemodynamic characteristics such as complexity and stability of intra-aneurysmal flow patterns, size and location of the region of flow impingement with the clinical history of aneurysmal rupture. However, there are no reliable methods for measuring blood flow patterns in vivo. In this paper, an efficient methodology for patient-specific modeling and characterization of the hemodynamics in cerebral aneurysms from medical images is described. A sensitivity analysis of the hemodynamic characteristics with respect to variations of several variables over the expected physiologic range of conditions is also presented. This sensitivity analysis shows that although changes in the velocity fields can be observed, the characterization of the intra-aneurysmal flow patterns is not altered when the mean input flow, the flow division, the viscosity model, or mesh resolution are changed. It was also found that the variable that has the greater impact on the computed flow fields is the geometry of the vascular structures. We conclude that with the proposed modeling pipeline clinical studies involving large numbers cerebral aneurysms are feasible.
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