Anomalous aortic origin of a coronary artery (AAOCA) is a rare congenital heart condition with fixed and dynamic stenotic elements, potentially causing ischemia. Invasive coronary angiography under stress is the established method for assessing hemodynamics in AAOCA, yet it is costly, technically intricate, and uncomfortable. Computational fluid dynamics (CFD) simulations offer a noninvasive alternative for patient-specific hemodynamic analysis in AAOCA. This systematic review examines the role of CFD simulations in AAOCA, encompassing patient-specific modeling, noninvasive imaging-based boundary conditions, and flow characteristics. Screening articles using AAOCA and CFD-related terms prior to February 2023 yielded 19 publications, coverin...
Objective: To assess the feasibility of computationally simulating intracoronary blood flow based on...
Patients with coarctation of the aorta (CoA) are prone to morbidity including atherosclerotic plaque...
In recent years, the study of computational hemodynamics within anatomically complex vascular region...
Objectives: Anomalous aortic origin of the coronary artery can be associated with sudden cardiac dea...
ObjectivesThe complexity of aortic disease is not fully exposed by aortic dimensions alone, and morb...
Computational fluid dynamics (CFD) can be used to analyze blood flow and to predict hemodynamic outc...
Introduction: The increased survival rate of patients with congenital heart disease (CHD) has made i...
Rapid technological developments in computed tomography (CT) imaging technique have made coronary CT...
This paper reviews the methods, benefits and challenges associated with the adoption and translation...
Computational Fluid Dynamics (CFD) have been in the focus of the biomedical com- munity for many ...
abstract: A specific type of Congenital Heart Defect (CHD) known as Coarctation (narrowing) of the A...
Aortic dissection (AD) is a vascular condition with high morbidity and mortality rates. Computationa...
The presence of disease in the cardiovascular system results in changes in flow and pressure pattern...
Background Coronary artery disease (CAD) is the leading cause of death in the world. Physiological...
Computational fluid dynamics (CFD) simulations quantifying thoracic aortic flow patterns have not in...
Objective: To assess the feasibility of computationally simulating intracoronary blood flow based on...
Patients with coarctation of the aorta (CoA) are prone to morbidity including atherosclerotic plaque...
In recent years, the study of computational hemodynamics within anatomically complex vascular region...
Objectives: Anomalous aortic origin of the coronary artery can be associated with sudden cardiac dea...
ObjectivesThe complexity of aortic disease is not fully exposed by aortic dimensions alone, and morb...
Computational fluid dynamics (CFD) can be used to analyze blood flow and to predict hemodynamic outc...
Introduction: The increased survival rate of patients with congenital heart disease (CHD) has made i...
Rapid technological developments in computed tomography (CT) imaging technique have made coronary CT...
This paper reviews the methods, benefits and challenges associated with the adoption and translation...
Computational Fluid Dynamics (CFD) have been in the focus of the biomedical com- munity for many ...
abstract: A specific type of Congenital Heart Defect (CHD) known as Coarctation (narrowing) of the A...
Aortic dissection (AD) is a vascular condition with high morbidity and mortality rates. Computationa...
The presence of disease in the cardiovascular system results in changes in flow and pressure pattern...
Background Coronary artery disease (CAD) is the leading cause of death in the world. Physiological...
Computational fluid dynamics (CFD) simulations quantifying thoracic aortic flow patterns have not in...
Objective: To assess the feasibility of computationally simulating intracoronary blood flow based on...
Patients with coarctation of the aorta (CoA) are prone to morbidity including atherosclerotic plaque...
In recent years, the study of computational hemodynamics within anatomically complex vascular region...