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Computational Numerical Analysis of Different Cannulation Methods During Cardiopulmonary Bypass of Type A Aortic Dissection Model Based on Computational Fluid Dynamics
Different cannulation modes have an effect on the hemodynamic characteristic of the tear, but this effect is related to different states of CPB. AAC was found to superior to IAC, especially in reducing velocity, stress, and shear stress of site of tear. However, IAC and AAC are more conductive to blood supply than FAC in branch vessels of the aortic arch without being affected by the CPB state.
Endogenous Gas Formation – An In Vitro Study with Relevanceto Gas Microemboli during Cardiopulmonary Bypass
Gas embolism is an identified problem during cardiopulmonary bypass (CPB). Our aim was to analyze the potential influence from gas solubility based on simple physical laws, here called endogenous gas embolism.
Prediction of Massive Blood Transfusion in Cardiac Surgery
The objective of this study was to develop a prediction rule for massive blood transfusion (MBT) that could be used to optimize the management of, and research on, at-risk patients.
