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Evaluation of Recirculation During Venovenous Extracorporeal Membrane Oxygenation Using Computational Fluid Dynamics Incorporating Fluid-Structure Interaction
We have developed a finite element computational fluid dynamics model incorporating fluid-structure interaction (FSI) that incorporates atrial deformation during atrial filling and emptying, with fluid flow solved using large eddy simulation. With this model, we have evaluated an extensive number of factors that could influence recirculation during two-site VV ECMO, and characterized their impact on recirculation, including cannula construction, insertion depth and orientation, VV ECMO configuration, circuit blood flow, and changes in volume, venous return, heart rate, and blood viscosity.
The Safety and Efficacy of Dexmedetomidine for Postoperative Sedation in the Cardiac Surgery Intensive Care Unit
In this study we hypothesized that routine use of dexmedetomidine allows early extubation in cardiac surgery patients.
Antegrade Cerebral Perfusion for Acute Type A Aortic Dissection in 120 Consecutive Patients
The following study investigates clinical results after modification of perfusion technique for cardiopulmonary bypass as well as temperature management.
