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Towards RealTime 3D Coronary Hemodynamics Simulations During Cardiac Catheterisation

机译:在心脏导管插入术中实现实时3D冠状动脉血流动力学模拟

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Virtual Fractional Flow Reserve (vFFR) is an emerging technology that assesses the severity of coronary stenosis by means of patient specific of Computational Fluid Dynamics simulations. To be of practical clinical utility within a catheter laboratory, FFR results must be obtainable within minutes to guide intervention. We present the design of a novel Lattice-Boltzmann method code specifically tailored for fully automatic near real-time 3D coronary blood flow simulations. The key contributions of the work include a hybrid multicore-GPU accelerated sparse lattice generation algorithm and specialized 3D-0D coupled hemodynamics solver. We present results on state of the art GPU hardware, simulating hemodynamics within multi segment coronary tree. The results demonstrate that vFFR simulations can be performed in the order of minutes, making the replacement of pressure wire based FFR in a catheter laboratory setting with vFFR simulations feasible, without the need to reduce the fidelity of the hemodynamics modelling.
机译:虚拟分数流量储备(vFFR)是一项新兴技术,可通过特定于患者的Computational Fluid Dynamics模拟来评估冠状动脉狭窄的严重程度。为了在导管实验室中具有实际的临床实用性,必须在几分钟内获得FFR结果以指导干预。我们介绍了专门为全自动近实时3D冠状动脉血流仿真量身定制的新型Lattice-Boltzmann方法代码的设计。这项工作的主要贡献包括混合多核GPU加速的稀疏晶格生成算法和专用的3D-0D耦合血流动力学求解器。我们在最先进的GPU硬件上提供结果,以模拟多段冠状动脉内的血液动力学。结果表明,vFFR仿真可以在几分钟内完成,从而在导管实验室环境中用vFFR仿真替代基于压力线的FFR是可行的,而无需降低血液动力学建模的保真度。

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