The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but the mechanisms involved remain unclear. Here we show that mouse embryonic stem cells, cultured without any morphogen but in the presence of a sonic hedgehog inhibitor, recapitulate in vitro the major milestones of cortical development, leading to the sequential generation of a diverse repertoire of neurons that display most salient features of genuine cortical pyramidal neurons. When grafted into the cerebral cortex, these neurons develop patterns of axonal projections corresponding to a wide range of cortical layers, but also to highly specific cortical areas, in particular visual and limbic areas, thereby demonstrating that the identity of ...
The cerebral cortex is the most complex structure of our brain. During evolution, the relative size ...
The study of human cortical development has major implications for brain evolution and diseases but ...
The study of human cortical development has major implications for brain evolution and diseases but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal <p>subtypes, b...
peer reviewedThe cerebral cortex develops through the coordinated generation of dozens of neuronal s...
The cerebral cortex is arguably the most complex structure in the mammalian brain. It develops throu...
The cerebral cortex is arguably the most complex structure in the mammalian brain. It develops throu...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
The cerebral cortex is the most complex structure in the mammalian brain, which develops through the...
The cerebral cortex is the most complex structure of our brain. During evolution, the relative size ...
The study of human cortical development has major implications for brain evolution and diseases but ...
The study of human cortical development has major implications for brain evolution and diseases but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal subtypes, but ...
The cerebral cortex develops through the coordinated generation of dozens of neuronal <p>subtypes, b...
peer reviewedThe cerebral cortex develops through the coordinated generation of dozens of neuronal s...
The cerebral cortex is arguably the most complex structure in the mammalian brain. It develops throu...
The cerebral cortex is arguably the most complex structure in the mammalian brain. It develops throu...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
Embryonic stem cells (ESCs) constitute a tool of great potential in neurobiology, enabling the direc...
The cerebral cortex is the most complex structure in the mammalian brain, which develops through the...
The cerebral cortex is the most complex structure of our brain. During evolution, the relative size ...
The study of human cortical development has major implications for brain evolution and diseases but ...
The study of human cortical development has major implications for brain evolution and diseases but ...