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Role of Computational Modelling in Planning and Executing Interventional Procedures for Congenital Heart Disease

机译:计算模拟在先天性心脏病规划和执行介入程序中的作用

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Increasingly, computational modelling and numerical simulations are used to help plan complex surgical and interventional cardiovascular procedures in children and young adults with congenital heart disease. From its origins more than 30 years ago, surgical planning with analysis of flow hemodynamics and energy loss/efficiency has helped design and implement many modifications to existing techniques. On the basis of patient-specific medical imaging, surgical planning allows accurate model production that can then be manipulated in a virtual surgical environment, with the proposed solutions finally tested with advanced computational fluid dynamics to evaluate the results. Applications include a broad range of congenital heart disease, including patients with single-ventricle anatomy undergoing staged palliation, those with arch obstruction, with double outlet right ventricle, or with tetralogy of Fallot. In the present work, we focus on clinical applications of this exciting field. We describe the framework for these techniques, including brief descriptions of the engineering principles applied and the interaction between "benchtop" data with medical decision-making. We highlight some early insights learned from pioneers over the past few decades, including refinements in Fontan baffle geometries and configurations. Finally, we offer a glimpse into exciting advances that are presently being explored, including use of modelling for transcatheter interventions. In this era of personalized medicine, computational modelling and surgical planning allows patient-specific tailoring of interventions to optimize clinical outcomes.
机译:越来越多地,计算建模和数值模拟用于帮助在儿童和年轻人与先天性心脏病中进行复杂的外科手术和介入心血管程序。从它的起源超过30年前,通过分析流动血流动力学和能量损失/效率的手术规划有助于设计和实施对现有技术的许多修改。在患者特定的医学成像的基础上,手术规划允许准确的模型生产,然后可以在虚拟外科环境中操纵,提出的解决方案最终通过先进的计算流体动力学进行测试以评估结果。应用包括广泛的先天性心脏病,包括患有单心室解剖学的患者接受阶段的粘土,弓形梗阻,双出口右心室,或用Tetralogy的椎间盘。在目前的工作中,我们专注于这个令人兴奋的领域的临床应用。我们描述了这些技术的框架,包括使用医学决策的“台式”数据的工程原则的简要说明。我们突出了过去几十年中从开拓者学到的一些早期见解,包括Fontan Baffle几何形状和配置的改进。最后,我们向目前正在探索的令人兴奋的进步提供一瞥,包括用于经转截管干预的建模。在这个个性化医学时代,计算建模和外科手术规划允许患者特异性定制干预措施来优化临床结果。

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