Embryonic heart development is a mechanosensitive process, where specific fluid forces are needed for the correct development, and abnormal mechanical stimuli can lead to malformations. It is thus important to understand the nature of embryonic heart fluid forces. However, the fluid dynamical behaviour close to the embryonic endocardial surface is very sensitive to the geometry and motion dynamics of fine-scale cardiac trabecular surface structures. Here, we conducted image-based computational fluid dynamics (CFD) simulations to quantify the fluid mechanics associated with the zebrafish embryonic heart trabeculae. To capture trabecular geometric and motion details, we used a fish line that expresses fluorescence at the endocardial cell memb...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Images, simulation files, and user-defined functions used for the data shown in the manuscript "Flui...
<div><p>Blood flow and mechanical forces in the ventricle are implicated in cardiac development and ...
Blood flow and mechanical forces in the ventricle are implicated in cardiac development and trabecul...
Proper heart morphogenesis requires a delicate balance between hemodynamic forces, myocardial activi...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
<div><p>Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall ...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
<div><p>Physical forces can influence the embryonic development of many tissues. Within the cardiova...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Images, simulation files, and user-defined functions used for the data shown in the manuscript "Flui...
<div><p>Blood flow and mechanical forces in the ventricle are implicated in cardiac development and ...
Blood flow and mechanical forces in the ventricle are implicated in cardiac development and trabecul...
Proper heart morphogenesis requires a delicate balance between hemodynamic forces, myocardial activi...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
<div><p>Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall ...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
<div><p>Physical forces can influence the embryonic development of many tissues. Within the cardiova...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Physical forces can influence the embryonic development of many tissues. Within the cardiovascular s...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Images, simulation files, and user-defined functions used for the data shown in the manuscript "Flui...