International audienceEarly brain development is regulated by the coordinated actions of multiple signaling centers at key boundaries between compartments. Three telencephalic midline structures are in a position to play such roles in forebrain patterning: The cortical hem, the septum, and the thalamic eminence at the diencephalic-telencephalic boundary. These structures express unique complements of signaling molecules, and they also produce distinct populations of Cajal-Retzius cells, which are thought to act as "mobile patterning units," migrating tangentially to cover the telencephalic surface. We show that these 3 structures require the transcription factor Lhx2 to delimit their extent. In the absence of Lhx2 function, all 3 structures...
International audienceThe timing of cortical neurogenesis has a major effect on the size and organiz...
AbstractThe transcription factors Emx1 and Emx2 exert important functions during development of the ...
peer reviewedHox proteins are key regulators of animal development, providing positional identity an...
Early brain development is regulated by the coordinated actions of multiple signaling centers at key...
We are interested in the early mechanisms that initiate regional patterning in the dorsal telencepha...
The sequential production of neurons and astrocytes from neuroepithelial precursors is a fundamental...
LIM homeodomain transcription factors are critical regulators of early development in multiple syste...
Cajal-Retzius (C-R) cells play important roles in the lamination of the mammalian cortex via reelin ...
The forebrain is generated by distinct sets of precursor cells that express specific transcription f...
Cerebral cortex is comprised of regions including six-layer neocortex and three-layer olfactory cort...
The dorsal medial region of the developing mammalian telencephalon plays a central role in the patte...
AbstractThe organizing centers and molecules that pattern the cerebral cortex have been elusive. Her...
The early cortical primordium develops from a sheet of neuroepithelium that is flanked by distinct s...
The early cortical primordium develops from a sheet of neuroepithelium that is flanked by distinct s...
Initial axial patterning of the neural tube into forebrain, midbrain, and hindbrain primordia occurs...
International audienceThe timing of cortical neurogenesis has a major effect on the size and organiz...
AbstractThe transcription factors Emx1 and Emx2 exert important functions during development of the ...
peer reviewedHox proteins are key regulators of animal development, providing positional identity an...
Early brain development is regulated by the coordinated actions of multiple signaling centers at key...
We are interested in the early mechanisms that initiate regional patterning in the dorsal telencepha...
The sequential production of neurons and astrocytes from neuroepithelial precursors is a fundamental...
LIM homeodomain transcription factors are critical regulators of early development in multiple syste...
Cajal-Retzius (C-R) cells play important roles in the lamination of the mammalian cortex via reelin ...
The forebrain is generated by distinct sets of precursor cells that express specific transcription f...
Cerebral cortex is comprised of regions including six-layer neocortex and three-layer olfactory cort...
The dorsal medial region of the developing mammalian telencephalon plays a central role in the patte...
AbstractThe organizing centers and molecules that pattern the cerebral cortex have been elusive. Her...
The early cortical primordium develops from a sheet of neuroepithelium that is flanked by distinct s...
The early cortical primordium develops from a sheet of neuroepithelium that is flanked by distinct s...
Initial axial patterning of the neural tube into forebrain, midbrain, and hindbrain primordia occurs...
International audienceThe timing of cortical neurogenesis has a major effect on the size and organiz...
AbstractThe transcription factors Emx1 and Emx2 exert important functions during development of the ...
peer reviewedHox proteins are key regulators of animal development, providing positional identity an...