Department of Structural Engineering, University of California, San Diego, La Jolla, 92093, USA.
Biomech Model Mechanobiol. 2010 Aug;9(4):481-98. doi: 10.1007/s10237-010-0189-7. Epub 2010 Jan 29.
A computational vascular fluid-structure interaction framework for the simulation of patient-specific cerebral aneurysm configurations is presented. A new approach for the computation of the blood vessel tissue prestress is also described. Simulations of four patient-specific models are carried out, and quantities of hemodynamic interest such as wall shear stress and wall tension are studied to examine the relevance of fluid-structure interaction modeling when compared to the rigid arterial wall assumption. We demonstrate that flexible wall modeling plays an important role in accurate prediction of patient-specific hemodynamics. Discussion of the clinical relevance of our methods and results is provided.
提出了一种用于模拟特定患者脑动脉瘤形态的计算血管流固耦合框架。还描述了一种计算血管组织预应力的新方法。对四个特定患者模型进行了模拟,并研究了血流动力学感兴趣的量,如壁切应力和壁张力,以检查与刚性动脉壁假设相比,流固耦合建模的相关性。我们证明了柔性壁建模在准确预测特定患者的血流动力学方面起着重要作用。讨论了我们的方法和结果的临床相关性。