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Coronary artery bypass grafting hemodynamics and anastomosis design: a biomedical engineering review

Journal

BIOMEDICAL ENGINEERING ONLINE
Volume 12, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/1475-925X-12-129

Keywords

Coronary artery bypass graft (CABG); Anastomosis; Stenosis; Hemodynamic; Wall shear stress; Intimal hyperplasia; End to side; Side to side

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In this paper, coronary arterial bypass grafting hemodynamics and anastomosis designs are reviewed. The paper specifically addresses the biomechanical factors for enhancement of the patency of coronary artery bypass grafts (CABGs). Stenosis of distal anastomosis, caused by thrombosis and intimal hyperplasia (IH), is the major cause of failure of CABGs. Strong correlations have been established between the hemodynamics and vessel wall biomechanical factors and the initiation and development of IH and thrombus formation. Accordingly, several investigations have been conducted and numerous anastomotic geometries and devices have been designed to better regulate the blood flow fields and distribution of hemodynamic parameters and biomechanical factors at the distal anastomosis, in order to enhance the patency of CABGs. Enhancement of longevity and patency rate of CABGs can eliminate the need for re-operation and can significantly lower morbidity, and thereby reduces medical costs for patients suffering from coronary stenosis. This invited review focuses on various endeavors made thus far to design a patency-enhancing optimized anastomotic configuration for the distal junction of CABGs.

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