collaborators

5 papers

physics.flu-dyn2026

Comparative analysis of resistive immersed surface and immersed boundary methods for aortic valve simulation

Han Zhao, Alexander D. Kaiser, Fanwei Kong +5

Numerical modeling of aortic valve dynamics is essential for understanding the complex fluid-structure interaction (FSI) governing valve biomechanics in health and disease. Immerse…

cs.CE2026

Semi-Automated Generation and Hemodynamic Assessment of Surgical Baffle Geometry for Biventricular Repair

Elena Sabdy Martinez, Alexander D. Kaiser, Alexander K. Reed +6

Patient-specific computational modeling has emerged as a powerful tool for surgical planning in complex congenital heart disease. One promising application is complex biventricular…

q-bio.TO2026

Simulations Predict Improved Valve Performance Without Direct Leaflet Intervention After Neonatal Truncus Arteriosus Repair

Karoline-Marie Bornemann, Perry S. Choi, Jay Huber +6

Truncus arteriosus (TA) is a rare and severe congenital heart disease. Quadricuspid valve morphology occurs in 25% of all TA patients and is linked to regurgitation and increased r…

q-bio.TO2025

Simulation-Based Design of Bicuspidization of the Aortic Valve

Alexander D. Kaiser, Moussa A. Haidar, Perry S. Choi +3

Objective: Severe congenital aortic valve pathology in the growing patient remains a challenging clinical scenario. Bicuspidization of the diseased aortic valve has proven to be a…

q-bio.TO2025

A Fluid-Structure Interaction Model of the Zebrafish Aortic Valve

Alexander D. Kaiser, Jing Wang, Aaron L. Brown +3

The zebrafish is a valuable model organism for studying cardiac development and diseases due to its many shared aspects of genetics and anatomy with humans and ease of experimental…