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Influences of graft diameter on the blood flow in 2-way bypassing surgery / 生物医学工程学杂志
Journal of Biomedical Engineering ; (6): 346-377, 2008.
Article in Chinese | WPRIM | ID: wpr-291235
ABSTRACT
The graft diameter plays a critically important role in the long-term patency rates of bypass surgery. To clarify the influence of graft diameter on the blood flows in the femoral 2-way bypass surgery, the physiologically pulsatile flows in two femoral bypass models were simulated with numerical methods. For the sake of comparison, the models were constructed with identical geometry parameters except the different diameters of grafts. Two models with small and large grafts were studied. The boundary conditions for the simulation of blood flow were constant for both models. The maximum Reynolds number was 832.8, and the Womersley number was 6.14. The emphases of results were on the analysis of flow fields in the vicinity of the distal anastomosis. The temporal-spatial distributions of velocity vectors, pressure drop between the proximal and distal toe, wall shear stresses, wall shear stress gradients and oscillating shear index were compared. The present study indicated that femoral artery bypassed with a large graft demonstrated disturbed axial flow and secondary flow at the distal anastomosis while the axial flow at its downstream of toe was featured with larger and more uniform longitudinal velocities. Meanwhile, the large model exhibits less refluences, relatively uniform wall shear stresses, lower pressure and smaller wall shear stress gradients, whereas it does not have any advantages in the distributions of secondary flow and the oscillating shear index. In general, the large model exhibits better and more uniform hemodynamic phenomena near the vessel wall and may be effective in preventing the initiation and development of postoperative intimal hyperplasia and restenosis.
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Physiology / Arterial Occlusive Diseases / Stress, Mechanical / General Surgery / Blood Flow Velocity / Blood Vessel Prosthesis / Anastomosis, Surgical / Blood Vessel Prosthesis Implantation / Shear Strength / Femoral Artery Limits: Humans Language: Chinese Journal: Journal of Biomedical Engineering Year: 2008 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Physiology / Arterial Occlusive Diseases / Stress, Mechanical / General Surgery / Blood Flow Velocity / Blood Vessel Prosthesis / Anastomosis, Surgical / Blood Vessel Prosthesis Implantation / Shear Strength / Femoral Artery Limits: Humans Language: Chinese Journal: Journal of Biomedical Engineering Year: 2008 Type: Article