The complexity of brain structure and function is rooted in the precise spatial and temporal regulation of selective developmental events. During neurogenesis, both vertebrates and invertebrates generate a wide variety of specialized cell types through the expansion and specification of a restricted set of neuronal progenitors. Temporal patterning of neural progenitors rests on fine regulation between cell-intrinsic and cell-extrinsic mechanisms. The rapid emergence of high-throughput single-cell technologies combined with elaborate computational analysis has started to provide us with unprecedented biological insights related to temporal patterning in the developing central nervous system (CNS). Here, we present an overview of recent advan...
The large numbers of neurons that comprise the adult brain display an immense diversity. Repeated di...
In the Drosophila optic lobes, the medulla processes visual information coming from inner photorecep...
The human central nervous system (CNS) contains a daunting number of cells and tremendous cellular d...
The complexity of brain structure and function is rooted in the precise spatial and temporal regulat...
During development a limited number of progenitors generate diverse cell types that comprise the ner...
peer reviewedDuring the development of the central nervous system, progenitors successively generate...
SummaryTemporal patterning is an important aspect of embryonic development, but the underlying molec...
International audienceThe nervous system is one of the most sophisticated animal tissues, consisting...
The Drosophila type-II neuroblast lineages present an attractive model to investigate the neurogenes...
International audienceThe developing central nervous system (CNS) is particularly prone to malignant...
For the construction of complex neural networks, the generation of neurons and glia must be tightly ...
AbstractA key question in developmental neurobiology is how the diversity of cell types that make up...
peer reviewedDuring corticogenesis, distinct subtypes of neurons are sequentially born from ventricu...
International audienceThe mechanisms underlying the temporal specification of neural stem cells (NSC...
The complex function of the nervous system is dependent on precise connectionsbetween hundreds of th...
The large numbers of neurons that comprise the adult brain display an immense diversity. Repeated di...
In the Drosophila optic lobes, the medulla processes visual information coming from inner photorecep...
The human central nervous system (CNS) contains a daunting number of cells and tremendous cellular d...
The complexity of brain structure and function is rooted in the precise spatial and temporal regulat...
During development a limited number of progenitors generate diverse cell types that comprise the ner...
peer reviewedDuring the development of the central nervous system, progenitors successively generate...
SummaryTemporal patterning is an important aspect of embryonic development, but the underlying molec...
International audienceThe nervous system is one of the most sophisticated animal tissues, consisting...
The Drosophila type-II neuroblast lineages present an attractive model to investigate the neurogenes...
International audienceThe developing central nervous system (CNS) is particularly prone to malignant...
For the construction of complex neural networks, the generation of neurons and glia must be tightly ...
AbstractA key question in developmental neurobiology is how the diversity of cell types that make up...
peer reviewedDuring corticogenesis, distinct subtypes of neurons are sequentially born from ventricu...
International audienceThe mechanisms underlying the temporal specification of neural stem cells (NSC...
The complex function of the nervous system is dependent on precise connectionsbetween hundreds of th...
The large numbers of neurons that comprise the adult brain display an immense diversity. Repeated di...
In the Drosophila optic lobes, the medulla processes visual information coming from inner photorecep...
The human central nervous system (CNS) contains a daunting number of cells and tremendous cellular d...