Zhenglun Alan Wei to Models, Cardiovascular
This is a "connection" page, showing publications Zhenglun Alan Wei has written about Models, Cardiovascular.
Connection Strength
3.362
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Wei ZA, Huddleston C, Trusty PM, Singh-Gryzbon S, Fogel MA, Veneziani A, Yoganathan AP. Analysis of Inlet Velocity Profiles in Numerical Assessment of Fontan Hemodynamics. Ann Biomed Eng. 2019 Nov; 47(11):2258-2270.
Score: 0.628
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Wei ZA, Sonntag SJ, Toma M, Singh-Gryzbon S, Sun W. Computational Fluid Dynamics Assessment Associated with Transcatheter Heart Valve Prostheses: A Position Paper of the ISO Working Group. Cardiovasc Eng Technol. 2018 09; 9(3):289-299.
Score: 0.579
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Wei ZA, Tree M, Trusty PM, Wu W, Singh-Gryzbon S, Yoganathan A. The Advantages of Viscous Dissipation Rate over Simplified Power Loss as a Fontan Hemodynamic Metric. Ann Biomed Eng. 2018 Mar; 46(3):404-416.
Score: 0.561
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Wei ZA, Trusty PM, Tree M, Haggerty CM, Tang E, Fogel M, Yoganathan AP. Can time-averaged flow boundary conditions be used to meet the clinical timeline for Fontan surgical planning? J Biomech. 2017 01 04; 50:172-179.
Score: 0.524
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Wei ZA, Fogel MA. Engineering Perspective on Cardiovascular Simulations of Fontan Hemodynamics: Where Do We Stand with a Look Towards Clinical Application. Cardiovasc Eng Technol. 2021 12; 12(6):618-630.
Score: 0.180
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Kohli K, Wei ZA, Sadri V, Netto T, Lisko JC, Greenbaum AB, Babaliaros V, Oshinski JN, Yoganathan AP. A Simplified In Silico Model of Left Ventricular Outflow in Patients After Transcatheter Mitral Valve Replacement with Anterior Leaflet Laceration. Ann Biomed Eng. 2021 Jun; 49(6):1449-1461.
Score: 0.177
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Singh-Gryzbon S, Ncho B, Sadri V, Bhat SS, Kollapaneni SS, Balakumar D, Wei ZA, Ruile P, Neumann FJ, Blanke P, Yoganathan AP. Influence of Patient-Specific Characteristics on Transcatheter Heart Valve Neo-Sinus Flow: An In Silico Study. Ann Biomed Eng. 2020 Oct; 48(10):2400-2411.
Score: 0.167
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Singh-Gryzbon S, Sadri V, Toma M, Pierce EL, Wei ZA, Yoganathan AP. Development of a Computational Method for Simulating Tricuspid Valve Dynamics. Ann Biomed Eng. 2019 Jun; 47(6):1422-1434.
Score: 0.154
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Trusty PM, Slesnick TC, Wei ZA, Rossignac J, Kanter KR, Fogel MA, Yoganathan AP. Fontan Surgical Planning: Previous Accomplishments, Current Challenges, and Future Directions. J Cardiovasc Transl Res. 2018 04; 11(2):133-144.
Score: 0.142
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Tree M, Wei ZA, Trusty PM, Raghav V, Fogel M, Maher K, Yoganathan A. Using a Novel In Vitro Fontan Model and Condition-Specific Real-Time MRI Data to Examine Hemodynamic Effects of Respiration and Exercise. Ann Biomed Eng. 2018 Jan; 46(1):135-147.
Score: 0.140
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Trusty PM, Wei ZA, Slesnick TC, Kanter KR, Spray TL, Fogel MA, Yoganathan AP. The first cohort of prospective Fontan surgical planning patients with follow-up data: How accurate is surgical planning? J Thorac Cardiovasc Surg. 2019 03; 157(3):1146-1155.
Score: 0.038
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Tang E, Wei ZA, Trusty PM, Whitehead KK, Mirabella L, Veneziani A, Fogel MA, Yoganathan AP. The effect of respiration-driven flow waveforms on hemodynamic metrics used in Fontan surgical planning. J Biomech. 2019 01 03; 82:87-95.
Score: 0.038
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Tang E, Wei ZA, Whitehead KK, Khiabani RH, Restrepo M, Mirabella L, Bethel J, Paridon SM, Marino BS, Fogel MA, Yoganathan AP. Effect of Fontan geometry on exercise haemodynamics and its potential implications. Heart. 2017 11; 103(22):1806-1812.
Score: 0.034