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Numerical modeling of hemodynamics scenarios of patient-specific coronary artery bypass grafts

机译:患者特异性冠状动脉旁路移植物血流动力学情景的数值模拟

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A fast computational framework is devised to the study of several configurations of patient-specific coronary artery bypass grafts. This is especially useful to perform a sensitivity analysis of the hemodynamics for different flow conditions occurring in native coronary arteries and bypass grafts, the investigation of the progression of the coronary artery disease and the choice of the most appropriate surgical procedure. A complete pipeline, from the acquisition of patient-specific medical images to fast parameterized computational simulations, is proposed. Complex surgical configurations employed in the clinical practice, such as Y-grafts and sequential grafts, are studied. A virtual surgery platform based on model reduction of unsteady Navier-Stokes equations for blood dynamics is proposed to carry out sensitivity analyses in a very rapid and reliable way. A specialized geometrical parameterization is employed to compare the effect of stenosis and anastomosis variation on the outcome of the surgery in several relevant cases.
机译:快速计算框架是针对患者特异性冠状动脉旁路移植物的几种配置的研究。这对于对天然冠状动脉和旁路移植物中发生的不同流动条件进行血流动力学的敏感性分析特别有用,调查冠状动脉疾病的进展以及最合适的外科手术的选择。提出了一种完整的流水线,从获取特定于患者的医学图像到快速参数化计算模拟。研究了在临床实践中采用的复杂外科结构,例如y-移植物和顺序移植物。提出了一种虚拟外科平台,基于非稳态Navier-Stokes方程的模型减少血液动力学,以非常快速可靠的方式进行敏感性分析。采用专门的几何参数化来比较狭窄和吻合变化在几种相关病例中对手术结果的影响。

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