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Experimental measurements of energy augmentation for mechanical circulatory assistance in a patient-specific Fontan model.

Authors :
Chopski SG
Rangus OM
Moskowitz WB
Throckmorton AL
Source :
Artificial organs [Artif Organs] 2014 Sep; Vol. 38 (9), pp. 791-9. Date of Electronic Publication: 2014 Jan 10.
Publication Year :
2014

Abstract

A mechanical blood pump specifically designed to increase pressure in the great veins would improve hemodynamic stability in adolescent and adult Fontan patients having dysfunctional cavopulmonary circulation. This study investigates the impact of axial-flow blood pumps on pressure, flow rate, and energy augmentation in the total cavopulmonary circulation (TCPC) using a patient-specific Fontan model. The experiments were conducted for three mechanical support configurations, which included an axial-flow impeller alone in the inferior vena cava (IVC) and an impeller with one of two different protective stent designs. All of the pump configurations led to an increase in pressure generation and flow in the Fontan circuit. The increase in IVC flow was found to augment pulmonary arterial flow, having only a small impact on the pressure and flow in the superior vena cava (SVC). Retrograde flow was neither observed nor measured from the TCPC junction into the SVC. All of the pump configurations enhanced the rate of power gain of the cavopulmonary circulation by adding energy and rotational force to the fluid flow. We measured an enhancement of forward flow into the TCPC junction, reduction in IVC pressure, and only minimally increased pulmonary arterial pressure under conditions of pump support.<br /> (Copyright © 2014 International Center for Artificial Organs and Transplantation and Wiley Periodicals, Inc.)

Details

Language :
English
ISSN :
1525-1594
Volume :
38
Issue :
9
Database :
MEDLINE
Journal :
Artificial organs
Publication Type :
Academic Journal
Accession number :
24404904
Full Text :
https://doi.org/10.1111/aor.12255