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PMID: 27570334 Published · ppublish English Journal Article

Percutaneous Double Lumen Cannula for Right Ventricle Assist Device System: A Computational Fluid Dynamics Study.

Biocybernetics and biomedical engineering ·Vol. 36 ·No. 3 ·2016-00-00 ·页码 482-490

Condemi F, Wang D, Fragomeni G, Yang F, Zhao G, Jones C, Ballard-Croft C, Zwischenberger JB

Abstract

Our goal is to develop a double lumen cannula (DLC) for a percutaneous right ventricular assist device (pRVAD) in order to eliminate two open chest surgeries for RVAD installation and removal. The objective of this study was to evaluate the performance, flow pattern, blood hemolysis, and thrombosis potential of the pRVAD DLC. Computational fluid dynamics (CFD), using the finite volume method, was performed on the pRVAD DLC. For Reynolds numbers <4000, the laminar model was used to describe the blood flow behavior, while shear-stress transport k-ω model was used for Reynolds numbers >4000. Bench testing with a 27 Fr prototype was performed to validate the CFD calculations. There was <1.3% difference between the CFD and experimental pressure drop results. The Lagrangian approach revealed a low index of hemolysis (0.012% in drainage lumen and 0.0073% in infusion lumen) at 5 l/min flow rate. Blood stagnancy and recirculation regions were found in the CFD analysis, indicating a potential risk for thrombosis. The pRVAD DLC can handle up to 5 l/min flow with limited potential hemolysis. Further modification of the pRVAD DLC is needed to address blood stagnancy and recirculation.

Keywords
computational fluid dynamics double lumen cannula heart failure percutaneous ventricular assist device
作者与单位
共 8 位作者,点击展开单位 / ORCID
Condemi Francesca
Department of Surgery, Cardiothoracic Surgery Division, University of Kentucky.
Wang Dongfang
Department of Surgery, Cardiothoracic Surgery Division, University of Kentucky.
Fragomeni Gionata
Bioengineering Unit, Magna Graecia University, Catanzaro, Italy.
Yang Fuqian
Department of Chemical and Materials Engineering, University of Kentucky.
Zhao Guangfeng
W-Z Biotech, LLC.
Jones Cameron
Department of Surgery, Cardiothoracic Surgery Division, University of Kentucky.
Ballard-Croft Cherry
Department of Surgery, Cardiothoracic Surgery Division, University of Kentucky.
Zwischenberger Joseph B
Department of Surgery, Cardiothoracic Surgery Division, University of Kentucky.
Article Info
Journal
Biocybernetics and biomedical engineering
Abbr.
Biocybern Biomed Eng
ISSN
0208-5216
Published
2016-00-00
电子出版
2016-00-18
页码
482-490
Language
English
Country/Region
Poland
NLM ID
8212385
基金资助
NHLBI NIH HHS · R43 HL110562 · United States
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