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Author
- Cheng, Andrew L1
- Deshpande, Shriprasad R1
- Friedman, Connie1
- Herrington, Cynthia1
- Hibino, Narutoshi1
- Kanter, Kirk R1
- Kim, Byeol1
- Krieger, Axel1
- Loke, Yue-Hin1
- Maher, Kevin1
- Mass, Paige1
- Olivieri, Laura1
- Opfermann, Justin D1
- Patel, Neil D1
- Slesnick, Timothy C1
- Tree, Mike1
- Trusty, Phillip M1
- Wood, John C1
- Yoganathan, Ajit P1
Congenital: Fontan
3 Results
- Congenital: Fontan
Progression in Fontan conduit stenosis and hemodynamic impact during childhood and adolescence
The Journal of Thoracic and Cardiovascular SurgeryVol. 162Issue 2p372–380.e2Published online: October 28, 2020- Neil D. Patel
- Connie Friedman
- Cynthia Herrington
- John C. Wood
- Andrew L. Cheng
Cited in Scopus: 7To characterize changes in Fontan conduit size over time and determine if cross-sectional area (CSA) affects cardiac output, pulmonary artery growth, and exercise capacity. - Congenital: FontanOpen Archive
Role of surgeon intuition and computer-aided design in Fontan optimization: A computational fluid dynamics simulation study
The Journal of Thoracic and Cardiovascular SurgeryVol. 160Issue 1p203–212.e2Published online: January 8, 2020- Yue-Hin Loke
- Byeol Kim
- Paige Mass
- Justin D. Opfermann
- Narutoshi Hibino
- Axel Krieger
- and others
Cited in Scopus: 14Customized Fontan designs, generated by computer-aided design (CAD) and optimized by computational fluid dynamics simulations, can lead to novel, patient-specific Fontan conduits unconstrained by off-the-shelf grafts. The relative contributions of both surgical expertise and CAD to Fontan optimization have not been addressed. In this study, we assessed hemodynamic performance of Fontans designed by both surgeon's unconstrained modeling (SUM) and by CAD. - Congenital: FontanOpen Archive
An in vitro analysis of the PediMag and CentriMag for right-sided failing Fontan support
The Journal of Thoracic and Cardiovascular SurgeryVol. 158Issue 5p1413–1421Published online: April 26, 2019- Phillip M. Trusty
- Mike Tree
- Kevin Maher
- Timothy C. Slesnick
- Kirk R. Kanter
- Ajit P. Yoganathan
- and others
Cited in Scopus: 10Right-sided mechanical circulatory support for failing Fontan physiology has been largely unsuccessful due to inherent hemodynamic differences between these patients and the target populations for most assist devices. This study uses advanced benchtop modeling of Fontan physiology to examine the use of PediMag and CentriMag to improve failing Fontan hemodynamics.