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PMID: 35446218 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Computational Fontan Analysis: Preserving Accuracy While Expediting Workflow.

World journal for pediatric & congenital heart surgery ·Vol. 13 ·No. 3 ·2022-00-00 ·页码 293-301

Liu X, Aslan S, Kim B, Warburton L, Jackson D, Muhuri A, Subramanian A, Mass P, Cleveland V, Loke YH, Hibino N, Olivieri L, Krieger A

Abstract

Background: Postoperative outcomes of the Fontan operation have been linked to geometry of the cavopulmonary pathway, including graft shape after implantation. Computational fluid dynamics (CFD) simulations are used to explore different surgical options. The objective of this study is to perform a systematic in vitro validation for investigating the accuracy and efficiency of CFD simulation to predict Fontan hemodynamics. Methods: CFD simulations were performed to measure indexed power loss (iPL) and hepatic flow distribution (HFD) in 10 patient-specific Fontan models, with varying mesh and numerical solvers. The results were compared with a novel in vitro flow loop setup with 3D printed Fontan models. A high-resolution differential pressure sensor was used to measure the pressure drop for validating iPL predictions. Microparticles with particle filtering system were used to measure HFD. The computational time was measured for a representative Fontan model with different mesh sizes and numerical solvers. Results: When compared to in vitro setup, variations in CFD mesh sizes had significant effect on HFD (P  =  .0002) but no significant impact on iPL (P  =  .069). Numerical solvers had no significant impact in both iPL (P  =  .50) and HFD (P  =  .55). A transient solver with 0.5 mm mesh size requires computational time 100 times more than a steady solver with 2.5 mm mesh size to generate similar results. Conclusions: The predictive value of CFD for Fontan planning can be validated against an in vitro flow loop. The prediction accuracy can be affected by the mesh size, model shape complexity, and flow competition.

Keywords
flow dynamics patient specific model virtual surgical planning
MeSH 主题词
Computer Simulation Fontan Procedure/methods Hemodynamics Humans Models, Cardiovascular Workflow
作者与单位
共 13 位作者,点击展开单位 / ORCID
Liu Xiaolong
Department of Mechanical Engineering, 1466Johns Hopkins University, Baltimore, MD, USA. | Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Aslan Seda
Department of Mechanical Engineering, 1466Johns Hopkins University, Baltimore, MD, USA. | Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Kim Byeol
Department of Mechanical Engineering, 1466Johns Hopkins University, Baltimore, MD, USA. | Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Warburton Linnea
Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Jackson Derrick
Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Muhuri Abir
Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Subramanian Akshay
Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Mass Paige
Sheikh Zayed Institute for Pediatric Surgical Innovation, 8404Children's National Medical Center, Washington, DC, USA.
Cleveland Vincent
Sheikh Zayed Institute for Pediatric Surgical Innovation, 8404Children's National Medical Center, Washington, DC, USA.
Loke Yue-Hin
8404Division of Cardiology, Children's National Medical Center, Washington, DC, USA.
Hibino Narutoshi
2462Department of Cardiac Surgery, University of Chicago/21880Advocate Children's Hospital, Chicago, IL, USA.
Olivieri Laura
Sheikh Zayed Institute for Pediatric Surgical Innovation, 8404Children's National Medical Center, Washington, DC, USA. | 8404Division of Cardiology, Children's National Medical Center, Washington, DC, USA.
Krieger Axel
Department of Mechanical Engineering, 1466Johns Hopkins University, Baltimore, MD, USA. | Department of Mechanical Engineering, 1068University of Maryland, College Park, MD, USA.
Article Info
Journal
World journal for pediatric & congenital heart surgery
Abbr.
World J Pediatr Congenit Heart Surg
ISSN
2150-136X
Published
2022-00-00
页码
293-301
Language
English
Country/Region
United States
NLM ID
101518415
基金资助
NHLBI NIH HHS · R01 HL143468 · United States
NICHD NIH HHS · R33 HD090671 · United States
NICHD NIH HHS · R21 HD090671 · United States
勘误 / 撤稿关联
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