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多巴酚丁胺负荷试验在生物力学模型增强的法洛四联症患者中的应用。

Dobutamine stress testing in patients with Fontan circulation augmented by biomechanical modeling.

机构信息

School of Biomedical Engineering & Imaging Sciences, St Thomas' Hospital, King's College London, London, England, United Kingdom.

Department of Pediatrics, UT Southwestern Medical Center, Dallas, TX, United States of America.

出版信息

PLoS One. 2020 Feb 21;15(2):e0229015. doi: 10.1371/journal.pone.0229015. eCollection 2020.

Abstract

Understanding (patho)physiological phenomena and mechanisms of failure in patients with Fontan circulation-a surgically established circulation for patients born with a functionally single ventricle-remains challenging due to the complex hemodynamics and high inter-patient variations in anatomy and function. In this work, we present a biomechanical model of the heart and circulation to augment the diagnostic evaluation of Fontan patients with early-stage heart failure. The proposed framework employs a reduced-order model of heart coupled with a simplified circulation including venous return, creating a closed-loop system. We deploy this framework to augment the information from data obtained during combined cardiac catheterization and magnetic resonance exams (XMR), performed at rest and during dobutamine stress in 9 children with Fontan circulation and 2 biventricular controls. We demonstrate that our modeling framework enables patient-specific investigation of myocardial stiffness, contractility at rest, contractile reserve during stress and changes in vascular resistance. Hereby, the model allows to identify key factors underlying the pathophysiological response to stress in these patients. In addition, the rapid personalization of the model to patient data and fast simulation of cardiac cycles make our framework directly applicable in a clinical workflow. We conclude that the proposed modeling framework is a valuable addition to the current clinical diagnostic XMR exam that helps to explain patient-specific stress hemodynamics and can identify potential mechanisms of failure in patients with Fontan circulation.

摘要

理解 Fontan 循环患者(即天生单心室功能障碍患者所建立的手术循环)的病理生理现象和衰竭机制仍然具有挑战性,这是由于其复杂的血液动力学以及解剖结构和功能方面的个体间高度差异所致。在这项工作中,我们提出了一种心脏和循环的生物力学模型,以增强对早期心力衰竭的 Fontan 患者的诊断评估。所提出的框架采用了心脏的降阶模型,并结合了包括静脉回流在内的简化循环,从而构成了一个闭环系统。我们将该框架应用于增强在 9 名 Fontan 循环患儿和 2 名双心室对照患儿在休息和多巴酚丁胺应激期间进行的联合心脏导管插入术和磁共振检查(XMR)中获得的数据的信息。我们证明了我们的建模框架能够对心肌僵硬度、静息时的收缩性、应激时的收缩储备以及血管阻力的变化进行特定于患者的研究。通过这种方式,该模型可以确定这些患者对压力的病理生理反应的关键因素。此外,模型能够快速针对患者数据进行个性化设置,并快速模拟心脏周期,这使得我们的框架可以直接应用于临床工作流程中。我们得出结论,所提出的建模框架是当前临床诊断性 XMR 检查的有益补充,有助于解释患者特定的应激血液动力学,并可以识别 Fontan 循环患者的潜在衰竭机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/129b/7034893/2a112bc282fe/pone.0229015.g001.jpg

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