The vertebrate heart develops from several progenitor lineages. After early-differentiating first heart field (FHF) progenitors form the linear heart tube, late-differentiating second heart field (SHF) progenitors extend the atrium and ventricle, and form inflow and outflow tracts (IFT/OFT). However, the position and migration of late-differentiating progenitors during heart formation remains unclear. Here, we track zebrafish heart development using transgenics based on the cardiopharyngeal gene tbx1. Live imaging uncovers a tbx1 reporter-expressing cell sheath that continuously disseminates from the lateral plate mesoderm towards the forming heart tube. High-speed imaging and optogenetic lineage tracing corroborates that the zebrafish vent...
Many vertebrate organs are derived from monolayered epithelia that undergo morphogenesis to acquire ...
Despite extensive research on cardiovascular development, much remains to be learned about the molec...
Vertebrate heart development occurs through contribution from two spatio-temporally distinct progeni...
The vertebrate heart develops from several progenitor lineages. After early-differentiating first he...
The vertebrate heart develops from several progenitor lineages. After early-differentiating first he...
Amongst animal species, there is enormous variation in the size and complexity of the heart, ranging...
During development, mesodermal progenitors from the first heart field (FHF) form a primitive cardiac...
AbstractIn birds and mammals, cardiac neural crest is essential for heart development and contribute...
The vertebrate heart forms from two distinct progenitor populations called the First Heart Field (FH...
The vertebrate heart forms from two distinct progenitor populations called the First Heart Field (FH...
AbstractCardiac neural crest cells are essential for outflow tract remodeling in animals with divide...
During development, mesodermal progenitors from the first heart field (FHF) form a primitive cardiac...
Cardiac neural crest cells are essential for outflow tract remodeling in animals with divided system...
Early stages of cardiac development are well conserved among vertebrates. However, later morphologic...
<p>Despite its lack of septation, the tissue patterning of the arterial pole of the zebrafish is rem...
Many vertebrate organs are derived from monolayered epithelia that undergo morphogenesis to acquire ...
Despite extensive research on cardiovascular development, much remains to be learned about the molec...
Vertebrate heart development occurs through contribution from two spatio-temporally distinct progeni...
The vertebrate heart develops from several progenitor lineages. After early-differentiating first he...
The vertebrate heart develops from several progenitor lineages. After early-differentiating first he...
Amongst animal species, there is enormous variation in the size and complexity of the heart, ranging...
During development, mesodermal progenitors from the first heart field (FHF) form a primitive cardiac...
AbstractIn birds and mammals, cardiac neural crest is essential for heart development and contribute...
The vertebrate heart forms from two distinct progenitor populations called the First Heart Field (FH...
The vertebrate heart forms from two distinct progenitor populations called the First Heart Field (FH...
AbstractCardiac neural crest cells are essential for outflow tract remodeling in animals with divide...
During development, mesodermal progenitors from the first heart field (FHF) form a primitive cardiac...
Cardiac neural crest cells are essential for outflow tract remodeling in animals with divided system...
Early stages of cardiac development are well conserved among vertebrates. However, later morphologic...
<p>Despite its lack of septation, the tissue patterning of the arterial pole of the zebrafish is rem...
Many vertebrate organs are derived from monolayered epithelia that undergo morphogenesis to acquire ...
Despite extensive research on cardiovascular development, much remains to be learned about the molec...
Vertebrate heart development occurs through contribution from two spatio-temporally distinct progeni...