Cardiac hemodynamics can be computed from medical imaging data, and results could potentially aid in cardiac diagnosis and treatment optimization. However, simulations are often based on simplified geometries, ignoring features such as papillary muscles and trabeculae due to their complex shape, limitations in image acquisitions, and challenges in computational modeling. This severely hampers the use of computational fluid dynamics in clinical practice. The overall aim of this study was to develop a novel numerical framework that incorporated these geometrical features. The model included the left atrium, ventricle, ascending aorta, and heart valves. The framework used image registration to obtain patient-specific wall motion, automatic rem...
We present a virtual heart model simulating the flow in the left human ventricle and in the aorta. B...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...
Cardiac hemodynamics can be computed from medical imaging data, and results could potentially aid in...
The heart has long been seen as a symbol of life, due to its critical function of pumping blood thro...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
International audienceThe simulation of cardiac blood flow using patient-specific geometries can hel...
Computational models are an absolutely necessary tool in many engineering disciplines. For example, ...
International audienceThe simulation of cardiac blood flow using patient-specific geometries can hel...
University of Minnesota Ph.D. dissertation. December 2012. Major: Civil Engineering. Advisor: Profes...
The aim of the present study is to characterize the hemodynamics of left ventricular (LV) geometries...
Intra-cardiac blood flow imaging and visualization is challenging due to the processes involved in g...
We present a virtual heart model simulating the flow in the left human ventricle and in the aorta. B...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...
Cardiac hemodynamics can be computed from medical imaging data, and results could potentially aid in...
The heart has long been seen as a symbol of life, due to its critical function of pumping blood thro...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
Heart disease is the main cause of death today, and studying causes and treatments are of great inte...
International audienceThe simulation of cardiac blood flow using patient-specific geometries can hel...
Computational models are an absolutely necessary tool in many engineering disciplines. For example, ...
International audienceThe simulation of cardiac blood flow using patient-specific geometries can hel...
University of Minnesota Ph.D. dissertation. December 2012. Major: Civil Engineering. Advisor: Profes...
The aim of the present study is to characterize the hemodynamics of left ventricular (LV) geometries...
Intra-cardiac blood flow imaging and visualization is challenging due to the processes involved in g...
We present a virtual heart model simulating the flow in the left human ventricle and in the aorta. B...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...
Numerical simulations to evaluate thoracic aortic hemodynamics include a computational fluid dynamic...