Proper heart morphogenesis requires a delicate balance between hemodynamic forces, myocardial activity, morphogen gradients, and epigenetic signaling, all of which are coupled with genetic regulatory networks. Recently both in vivo and in silico studies have tried to better understand hemodynamics at varying stages of veretebrate cardiogenesis. In particular, the intracardial hemodynamics during the onset of trabeculation is notably complex—the inertial and viscous fluid forces are approximately equal at this stage and small perturbations in morphology, scale, and steadiness of the flow can lead to significant changes in bulk flow structures, shear stress distributions, and chemical morphogen gradients. The immersed boundary method wa...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
<div><p>Blood flow and mechanical forces in the ventricle are implicated in cardiac development and ...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Embryonic heart development is a mechanosensitive process, where specific fluid forces are needed fo...
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 ...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Proper cardiogenesis requires a delicate balance between genetic and environmental (epigenetic) sign...
Proper cardiogenesis requires a delicate balance between genetic and environmental (epigenetic) sign...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
<div><p>Blood flow and mechanical forces in the ventricle are implicated in cardiac development and ...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Embryonic heart development is a mechanosensitive process, where specific fluid forces are needed fo...
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 ...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Proper cardiogenesis requires a delicate balance between genetic and environmental (epigenetic) sign...
Proper cardiogenesis requires a delicate balance between genetic and environmental (epigenetic) sign...
The pattern of blood flow in the developing heart has long been proposed to play a significant role ...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
Hemodynamic shear force has been implicated as modulating Notch signaling-mediated cardiac trabecula...
<div><p>Blood flow and mechanical forces in the ventricle are implicated in cardiac development and ...
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear st...