AbstractPatterning of the early neural tube is achieved in part by the inductive signals, which arise from neuroepithelial signaling centers. The zona limitans intrathalamica (ZLI) is a neuroepithelial domain in the alar plate of the diencephalon which separates the prethalamus from the thalamus. The ZLI has recently been considered to be a possible secondary organizer, effecting its inductions via sonic hedgehog (Shh), a signaling molecule which drives morphogenetic information for the thalamus. Using experimental embryological techniques involving the generation of chimeric embryos, we show that the formation of the ZLI in the diencephalic alar plate is due to an interaction between the prechordal and epichordal plate neuroepithelia. We a...
The formation and wiring of the vertebrate nervous system involves the spatially and temporally orde...
AbstractProper dorsal–ventral pattern formation of the optic cup is essential for vertebrate eye mor...
The formation of the central nervous system depends on the patterned generation of different neuron...
AbstractPatterning of the early neural tube is achieved in part by the inductive signals, which aris...
The diencephalon is the most complex area of the vertebrate brain, being particularly complex in amn...
The structural complexity of the brain depends on precise molecular and cellular regulatory mechanis...
Abstract Background The developing vertebrate brain is patterned first by global signalling gradient...
International audienceRecent studies revealed new insights into the development of a unique caudal f...
AbstractThe diencephalon is a central area of the vertebrate developing brain, where the thalamic nu...
The thalamus is a central brain region that plays a crucial role in distributing incoming sensory in...
<p><b>Copyright information:</b></p><p>Taken from "Tissue interactions in the developing chick dienc...
SummaryA central challenge in embryonic development is to understand how growth and pattern are coor...
Midway between the anterior neural border and the midbrain-hindbrain boundary, two well-known local ...
In the posterior neural tube of vertebrate embryos, the secreted signalling molecules Sonic hedgeho...
The hypothalamus is a region of the diencephalon with particularly complex patterning. Sonic hedgeho...
The formation and wiring of the vertebrate nervous system involves the spatially and temporally orde...
AbstractProper dorsal–ventral pattern formation of the optic cup is essential for vertebrate eye mor...
The formation of the central nervous system depends on the patterned generation of different neuron...
AbstractPatterning of the early neural tube is achieved in part by the inductive signals, which aris...
The diencephalon is the most complex area of the vertebrate brain, being particularly complex in amn...
The structural complexity of the brain depends on precise molecular and cellular regulatory mechanis...
Abstract Background The developing vertebrate brain is patterned first by global signalling gradient...
International audienceRecent studies revealed new insights into the development of a unique caudal f...
AbstractThe diencephalon is a central area of the vertebrate developing brain, where the thalamic nu...
The thalamus is a central brain region that plays a crucial role in distributing incoming sensory in...
<p><b>Copyright information:</b></p><p>Taken from "Tissue interactions in the developing chick dienc...
SummaryA central challenge in embryonic development is to understand how growth and pattern are coor...
Midway between the anterior neural border and the midbrain-hindbrain boundary, two well-known local ...
In the posterior neural tube of vertebrate embryos, the secreted signalling molecules Sonic hedgeho...
The hypothalamus is a region of the diencephalon with particularly complex patterning. Sonic hedgeho...
The formation and wiring of the vertebrate nervous system involves the spatially and temporally orde...
AbstractProper dorsal–ventral pattern formation of the optic cup is essential for vertebrate eye mor...
The formation of the central nervous system depends on the patterned generation of different neuron...