AbstractThe vertebrate inner ear develops from an ectodermal placode adjacent to rhombomeres 4 to 6 of the segmented hindbrain. The placode then transforms into a vesicle and becomes regionalised along its anteroposterior, dorsoventral and mediolateral axes. To investigate the role of hindbrain signals in instructing otic vesicle regionalisation, we analysed ear development in zebrafish mutants for vhnf1, a gene expressed in the caudal hindbrain during otic induction and regionalisation. We show that, in vhnf1 homozygous embryos, the patterning of the otic vesicle is affected along both the anteroposterior and dorsoventral axes. First, anterior gene expression domains are either expanded along the whole anteroposterior axis of the vesicle o...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
The inner ear is a remarkably intricate structure able to detect sound, motion, and gravity. During ...
The inner ear is responsible for the perception of motion and sound in vertebrates. Its functional u...
AbstractDevelopment of the vertebrate inner ear begins during gastrulation with induction of the oti...
AbstractZebrafish holds great potential as a model system for studying inner ear development because...
BMP signalling is known to have a conserved function in development of the semicircular canal system...
The study of the morphogenetic processes underlying organogenesis has always proved to be challengin...
In a large scale screen for genetic defects in zebrafish embryogenesis we identified mutations affec...
<p>(A,B) At otic placode stages, FGF3 from the hindbrain patterns anterior otic regions, while RA si...
<div><p>During development of the zebrafish inner ear, regional patterning in the ventral half of th...
International audienceReconstructing the lineage of cells is central to understanding how the wide d...
In the inner ear, sensory versus neuronal specification is achieved through few well-defined bHLH tr...
Reconstructing the lineage of cells is central to understanding how the wide diversity of cell types...
To advance the understanding of genetic mechanisms involved in the patterning and the differentiatio...
The vertebrate inner ear is a complex structure responsible for hearing and balance. The inner ear h...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
The inner ear is a remarkably intricate structure able to detect sound, motion, and gravity. During ...
The inner ear is responsible for the perception of motion and sound in vertebrates. Its functional u...
AbstractDevelopment of the vertebrate inner ear begins during gastrulation with induction of the oti...
AbstractZebrafish holds great potential as a model system for studying inner ear development because...
BMP signalling is known to have a conserved function in development of the semicircular canal system...
The study of the morphogenetic processes underlying organogenesis has always proved to be challengin...
In a large scale screen for genetic defects in zebrafish embryogenesis we identified mutations affec...
<p>(A,B) At otic placode stages, FGF3 from the hindbrain patterns anterior otic regions, while RA si...
<div><p>During development of the zebrafish inner ear, regional patterning in the ventral half of th...
International audienceReconstructing the lineage of cells is central to understanding how the wide d...
In the inner ear, sensory versus neuronal specification is achieved through few well-defined bHLH tr...
Reconstructing the lineage of cells is central to understanding how the wide diversity of cell types...
To advance the understanding of genetic mechanisms involved in the patterning and the differentiatio...
The vertebrate inner ear is a complex structure responsible for hearing and balance. The inner ear h...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
The inner ear is a remarkably intricate structure able to detect sound, motion, and gravity. During ...
The inner ear is responsible for the perception of motion and sound in vertebrates. Its functional u...