SummaryFate determination in the mammalian telencephalon, with its diversity of neuronal subtypes and relevance to neuropsychiatric disease, remains a critical area of study in neuroscience. Most studies investigating this topic focus on the diversity of neural progenitors within spatial and temporal domains along the lateral ventricles. Often overlooked is whether the location of neurogenesis within a fate-restricted domain is associated with, or instructive for, distinct neuronal fates. Here, we use in vivo fate mapping and the manipulation of neurogenic location to demonstrate that apical versus basal neurogenesis influences the fate determination of major subgroups of cortical interneurons derived from the subcortical telencephalon. Som...
Variations in size and complexity of the cerebral cortex result from differences in neuron number an...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...
Fate determination in the mammalian telencephalon, with its diversity of neuronal subtypes and relev...
AbstractAlthough it is well established that the ventral telencephalon is the primary source of GABA...
SummaryInterneurons of the cerebral cortex represent a heterogeneous population of cells with import...
A fundamental question in developmental neuroscience is how hundreds of diverse cell types are gener...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
The diverse subtypes of excitatory neurons that populate the neocortex are born from apical progenit...
International audienceNew neurons are generated throughout life in two specific regions of the mamma...
The origins of cortical interneurons in rodents have been localized to the embryonic subcortical tel...
The neurons of the mammalian brain are generated by progenitors dividing either at the apical surfac...
The theme of this dissertation has been to look at characteristics of neurogenesis of the interne...
The developing cerebral cortex contains apical and basal types of neurogenic progenitor cells. Here,...
work The developing cerebral cortex contains apical and basal types of neurogenic progenitor cells. ...
Variations in size and complexity of the cerebral cortex result from differences in neuron number an...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...
Fate determination in the mammalian telencephalon, with its diversity of neuronal subtypes and relev...
AbstractAlthough it is well established that the ventral telencephalon is the primary source of GABA...
SummaryInterneurons of the cerebral cortex represent a heterogeneous population of cells with import...
A fundamental question in developmental neuroscience is how hundreds of diverse cell types are gener...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
The diverse subtypes of excitatory neurons that populate the neocortex are born from apical progenit...
International audienceNew neurons are generated throughout life in two specific regions of the mamma...
The origins of cortical interneurons in rodents have been localized to the embryonic subcortical tel...
The neurons of the mammalian brain are generated by progenitors dividing either at the apical surfac...
The theme of this dissertation has been to look at characteristics of neurogenesis of the interne...
The developing cerebral cortex contains apical and basal types of neurogenic progenitor cells. Here,...
work The developing cerebral cortex contains apical and basal types of neurogenic progenitor cells. ...
Variations in size and complexity of the cerebral cortex result from differences in neuron number an...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...
Neurons of the mammalian CNS are thought to originate from progenitors dividing at the apical surfac...