Department of Cardiac Surgery, Boston Children's Hospital, Boston, MA, USA.
Cardiovasc Eng Technol. 2021 Dec;12(6):631-639. doi: 10.1007/s13239-021-00540-z. Epub 2021 May 20.
Among patients with congenital heart disease, those born with only a single working ventricle represent a particularly complex sub-population, typically requiring multiple surgeries and suffering from high levels of mortality and morbidity. Their cardiac care is complex and has evolved considerably since surgical palliation was first introduced more than 50 years ago. Improvements in treatment have been driven both by growing clinical experience and by knowledge gained through experimental and computational studies of blood flow in these patients. The Cardiovascular Fluid Mechanics Lab at the Georgia Institute of Technology, founded 30 years ago by Dr. Ajit Yoganathan, has pioneered work in this field.
In this review, key contributions of Dr. Yoganathan's Cardiovascular Fluid Dynamics Lab are surveyed, including experimental flow loop studies as well as computational fluid dynamics analyses that address many of the critical challenges that cardiologists and surgeons face in treating these patients, including how to reconstruct cardiovascular anatomy to minimize power loss, balance blood flow distribution at key bifurcation points, and avoid other unfavorable hemodynamic conditions.
Among many contributions in this field, work from the Cardiovascular Fluid Mechanics Lab has led to novel medical devices and patient-specific computational modeling workflows and software tools. These key contributions from this group have enhanced our understanding of the physiology and management of single-ventricle patients.
在先天性心脏病患者中,那些仅具有单个工作心室的患者代表了一个特别复杂的亚人群,他们通常需要多次手术,并且死亡率和发病率都很高。自 50 多年前首次引入手术姑息治疗以来,他们的心脏护理就变得非常复杂,并且已经有了很大的发展。治疗方法的改进不仅得益于临床经验的积累,还得益于对这些患者血流进行的实验和计算研究获得的知识。由 Ajit Yoganathan 博士于 30 年前创立的佐治亚理工学院心血管流体力学实验室在该领域率先开展了相关工作。
在这篇综述中,调查了 Yoganathan 博士的心血管流体动力学实验室的主要贡献,包括实验流路研究以及计算流体动力学分析,这些研究解决了心脏病专家和外科医生在治疗这些患者时面临的许多关键挑战,包括如何重建心血管解剖结构以最小化功率损耗、平衡关键分叉点的血流分布以及避免其他不利的血液动力学条件。
在该领域的众多贡献中,心血管流体力学实验室的工作带来了新颖的医疗设备和针对患者个体的计算建模工作流程和软件工具。该团队的这些关键贡献增强了我们对单心室患者生理学和管理的理解。