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Prog Biophys Mol Biol ; 116(1): 48-55, 2014 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-25256102

RESUMO

The fractional flow reserve (FFR) is a widely used clinical index to evaluate the functional severity of coronary stenosis. A computer simulation method based on patients' computed tomography (CT) data is a plausible non-invasive approach for computing the FFR. This method can provide a detailed solution for the stenosed coronary hemodynamics by coupling computational fluid dynamics (CFD) with the lumped parameter model (LPM) of the cardiovascular system. In this work, we have implemented a simple computational method to compute the FFR. As this method uses only coronary arteries for the CFD model and includes only the LPM of the coronary vascular system, it provides simpler boundary conditions for the coronary geometry and is computationally more efficient than existing approaches. To test the efficacy of this method, we simulated a three-dimensional straight vessel using CFD coupled with the LPM. The computed results were compared with those of the LPM. To validate this method in terms of clinically realistic geometry, a patient-specific model of stenosed coronary arteries was constructed from CT images, and the computed FFR was compared with clinically measured results. We evaluated the effect of a model aorta on the computed FFR and compared this with a model without the aorta. Computationally, the model without the aorta was more efficient than that with the aorta, reducing the CPU time required for computing a cardiac cycle to 43.4%.


Assuntos
Velocidade do Fluxo Sanguíneo , Estenose Coronária/fisiopatologia , Vasos Coronários/fisiopatologia , Modelos Cardiovasculares , Modelagem Computacional Específica para o Paciente , Pressão Sanguínea , Simulação por Computador , Estenose Coronária/diagnóstico por imagem , Vasos Coronários/diagnóstico por imagem , Humanos , Radiografia , Reprodutibilidade dos Testes , Reologia/métodos , Sensibilidade e Especificidade , Resistência ao Cisalhamento , Resistência Vascular
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