Mice are widely used to investigate atherogenesis, which is known to be influenced by stresses related to blood flow. However, numerical characterization of the haemodynamic environment in the commonly studied aortic arch has hitherto been based on idealizations of inflow into the aorta. Our purpose in this work was to numerically characterize the haemodynamic environment in the mouse aortic arch using measured inflow velocities, and to relate the resulting shear stress patterns to known locations of high- and low-lesion prevalence. Blood flow velocities were measured in the aortic root of C57/BL6 mice using phase-contrast MRI. Arterial geometries were obtained by micro-CT of corrosion casts. These data were used to compute blood flow and w...
<div><p>Purpose</p><p>Cardiovascular diseases remain the number one death cause worldwide. Preclinic...
Cardiovascular diseases remain the number one death cause worldwide. Preclinical 4D flow phase contr...
Atherosclerotic lesions are non-uniformly distributed at arterial bends and branch sites, suggesting...
Mice are widely used to investigate atherogenesis, which is known to be influenced by stresses relat...
Abstract:- The aims of this study were (1) to demonstrate the feasibility of computational fluid dyn...
AbstractAtherosclerotic plaques develop at particular sites in the arterial tree, and this regional ...
Abstract:- The aims of this study were (1) to demonstrate the feasibility of computational fluid dyn...
In recent studies wall shear stress (WSS) in the mouse aortic arch has been investigated and values ...
In recent studies wall shear stress (WSS) in the mouse aortic arch has been investigated and values ...
In this paper, the influence of the aortic dimensions of an investigated mouse on its resulting wall...
In this paper, the influence of the aortic dimensions of an investigated mouse on its resulting wall...
Atherosclerotic plaques develop at particular sites in the arterial tree, and this regional localisa...
Atherosclerotic plaques are distributed differently in the aortic arches of C57BL/6 (B6) and 129/SvE...
Atherosclerotic plaques are distributed differently in the aortic arches of C57BL/6 (B6) and 129/SvE...
Animal models and in vitro endothelial cell culture devices are used extensively to understand the i...
<div><p>Purpose</p><p>Cardiovascular diseases remain the number one death cause worldwide. Preclinic...
Cardiovascular diseases remain the number one death cause worldwide. Preclinical 4D flow phase contr...
Atherosclerotic lesions are non-uniformly distributed at arterial bends and branch sites, suggesting...
Mice are widely used to investigate atherogenesis, which is known to be influenced by stresses relat...
Abstract:- The aims of this study were (1) to demonstrate the feasibility of computational fluid dyn...
AbstractAtherosclerotic plaques develop at particular sites in the arterial tree, and this regional ...
Abstract:- The aims of this study were (1) to demonstrate the feasibility of computational fluid dyn...
In recent studies wall shear stress (WSS) in the mouse aortic arch has been investigated and values ...
In recent studies wall shear stress (WSS) in the mouse aortic arch has been investigated and values ...
In this paper, the influence of the aortic dimensions of an investigated mouse on its resulting wall...
In this paper, the influence of the aortic dimensions of an investigated mouse on its resulting wall...
Atherosclerotic plaques develop at particular sites in the arterial tree, and this regional localisa...
Atherosclerotic plaques are distributed differently in the aortic arches of C57BL/6 (B6) and 129/SvE...
Atherosclerotic plaques are distributed differently in the aortic arches of C57BL/6 (B6) and 129/SvE...
Animal models and in vitro endothelial cell culture devices are used extensively to understand the i...
<div><p>Purpose</p><p>Cardiovascular diseases remain the number one death cause worldwide. Preclinic...
Cardiovascular diseases remain the number one death cause worldwide. Preclinical 4D flow phase contr...
Atherosclerotic lesions are non-uniformly distributed at arterial bends and branch sites, suggesting...