Department of Computational and Data Sciences, Center for Computational Fluid Dynamics, George Mason University, 4400 University Drive, Fairfax, VA 22030, USA.
AJNR Am J Neuroradiol. 2010 Jun;31(6):1127-31. doi: 10.3174/ajnr.A2021. Epub 2010 Feb 11.
The development and validation of methods to stratify the risk of rupture of cerebral aneurysms is highly desired because current treatment risks can exceed the natural risk of rupture. Because unruptured aneurysms are typically treated before they rupture, it is very difficult to connect the proposed risk indices to the rupture of an individual aneurysm. The purpose of this case study was to analyze the hemodynamic environment of a saccular aneurysm of the terminal morphology subtype that was imaged just before its rupture and to test whether the hemodynamic characteristics would designate this particular aneurysm as at high risk.
A patient-specific CFD model was constructed from 3DRA images acquired just hours before the aneurysm ruptured. A pulsatile flow calculation was performed, and hemodynamic characteristics previously connected to rupture were analyzed.
It was found that the aneurysm had a concentrated inflow stream, small impingement region, complex intra-aneurysmal flow structure, asymmetric flow split from the parent vessel to the aneurysm and daughter branches, and high levels of aneurysmal WSS near the impaction zone.
The hemodynamic characteristics observed in this aneurysm right before its rupture are consistent with previous studies correlating aneurysm rupture and hemodynamic patterns in saccular and terminal aneurysms. This study supports the notion that hemodynamic information may be used to help stratify the rupture risk of cerebral aneurysms.
高度期望开发和验证用于对脑动脉瘤破裂风险进行分层的方法,因为目前的治疗风险可能超过破裂的自然风险。由于未破裂的动脉瘤通常在破裂前进行治疗,因此很难将提出的风险指数与个体动脉瘤的破裂联系起来。本病例研究的目的是分析在破裂前刚刚进行成像的终末形态亚型的囊状动脉瘤的血流动力学环境,并测试血流动力学特征是否将该特定动脉瘤指定为高风险。
从破裂前数小时获得的 3DRA 图像构建了一个特定于患者的 CFD 模型。进行了脉动流计算,并分析了先前与破裂相关的血流动力学特征。
发现动脉瘤存在集中的流入流,较小的冲击区域,复杂的瘤内流动结构,从母血管向动脉瘤和子分支的不对称流动分裂,以及在冲击区域附近存在高水平的动脉瘤壁面切应力。
在破裂前观察到的该动脉瘤的血流动力学特征与先前将动脉瘤破裂与囊状和终末动脉瘤的血流模式相关联的研究一致。本研究支持这样一种观点,即血流动力学信息可用于帮助分层脑动脉瘤的破裂风险。