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PMID: 30669173 Published · ppublish English Case Reports Comparative Study Journal Article Research Support, Non-U.S. Gov't

Influence of Offset on Hemodynamics of Intra-atrial Conduit Fontan's Procedure and Its Clinical Implications.

The Thoracic and cardiovascular surgeon ·Vol. 68 ·No. 1 ·2020-00-00 ·页码 38-44

Hu J, Wang Q, Tong Z, Shen J, Liu J, Sun Y, Zhang H

Abstract

The desirable distance, defined as offset, between the central line of the superior vena cava (SVC) and the intra-atrial conduit after an intra-atrial conduit (IAC) Fontan's procedure remained unclear. We compared the hemodynamic features using virtual surgery with different offset designs in our study. Three-dimensional models of IAC Fontan's procedure were reconstructed according to the magnetic resonance imagings (MRIs) of three patients, then four models for each patient with different offsets equaling 100, 67, 33, and 0% of the diameter of the IVC were reconstructed. Computational fluid dynamics (CFD) were performed in each model to predict the best hemodynamic features, including streamlines of blood flow, wall shear stress (WSS), energy loss (EL), and the hepatic flow distribution (HFD) ratio. Comprehensive evaluation of WSS, EL, and HFD revealed than an offset of 33% presents the best hemodynamic performance among the three patients modeled. In patient A, an offset of 33% resulted in the best HFD (left pulmonary artery/right pulmonary artery [LPA/RPA] = 35/65%). In patient B, the best trade-off between HFD (35/65%), and WSS was achieved with an offset of 33%. In patient C, EL peaked at an offset of 0% and significantly dropped at an offset of 33% with a desirable HFD (60/40%). We verified that the offset distance influences hemodynamic performance in IAC Fontan's procedure. Considering several hemodynamic parameters, the best trade-offs between hemorheology, pulmonary perfusion, and energy efficiency were achieved at an offset of 33%. This distance should be taken into consideration and optimized during the surgical planning for the IAC Fontan's procedure.

MeSH 主题词
Adolescent Blood Flow Velocity Female Fontan Procedure/adverse effects Heart Defects, Congenital/diagnostic imaging,physiopathology,surgery Hemodynamics Humans Magnetic Resonance Imaging Male Models, Cardiovascular Patient-Specific Modeling Pulmonary Artery/abnormalities,diagnostic imaging,physiopathology,surgery Pulmonary Circulation Treatment Outcome Vena Cava, Inferior/abnormalities,diagnostic imaging,physiopathology,surgery Vena Cava, Superior/abnormalities,diagnostic imaging,physiopathology,surgery
作者与单位
共 7 位作者,点击展开单位 / ORCID
Hu Jie
Department of Pediatric Cardio-Thoracic Surgery, Shanghai Children's Medical Center, Shanghai, China.
Wang Qian
Department of Radiology, Shanghai Children's Medical Center, Shanghai, China.
Tong Zhirong
Institute of Pediatric Translational Medicine, Shanghai Children's Medical Center, Shanghai, China.
Shen Juanya
Institute of Pediatric Translational Medicine, Shanghai Children's Medical Center, Shanghai, China.
Liu Jinlong
Institute of Pediatric Translational Medicine, Shanghai Children's Medical Center, Shanghai, China.
Sun Yanjun
Department of Pediatric Cardio-Thoracic Surgery, Shanghai Children's Medical Center, Shanghai, China.
Zhang Haibo
Department of Pediatric Cardio-Thoracic Surgery, Shanghai Children's Medical Center, Shanghai, China.
Article Info
Journal
The Thoracic and cardiovascular surgeon
Abbr.
Thorac Cardiovasc Surg
ISSN
1439-1902
Published
2020-00-00
电子出版
2019-00-22
页码
38-44
Language
English
Country/Region
Germany
NLM ID
7903387
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