peer reviewedMalformations of the human neocortex in development constitute a heterogeneous group of complex disorders, resulting in pathologies such as intellectual disability and abnormal neurological/psychiatric conditions such as epilepsy or autism. Advances in genomic sequencing and genetic techniques have allowed major breakthroughs in the field, revealing the molecular basis of several of these malformations. Here, we focus on those malformations of the human neocortex, notably microcephaly, and macrocephaly, where an underlying basis has been established at the level of the neural stem/progenitor cells (NPCs) from which neurons are directly or indirectly derived. Particular emphasis is placed on NPC cell biology and NPC markers. A s...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
During development, the decision of stem and progenitor cells to switch from proliferation to differ...
Malformations of neocortical development are associated with cognitive dysfunction and increased sus...
The mammalian neocortex is the seat of higher cognitive functions, such as thinking and language in ...
International audienceIn this review, we discuss molecular and cellular mechanisms important for the...
International audienceIn this review, we discuss molecular and cellular mechanisms important for the...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
Many of the extraordinary intellectual capabilities of humans are attributed to the proper developme...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
The evolutionary expansion of the mammalian brain, notably the neocortex, provides a platform for th...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
During development, the decision of stem and progenitor cells to switch from proliferation to differ...
Malformations of neocortical development are associated with cognitive dysfunction and increased sus...
The mammalian neocortex is the seat of higher cognitive functions, such as thinking and language in ...
International audienceIn this review, we discuss molecular and cellular mechanisms important for the...
International audienceIn this review, we discuss molecular and cellular mechanisms important for the...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
Many of the extraordinary intellectual capabilities of humans are attributed to the proper developme...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
International audienceHow the brain develops and achieves its final size is a fascinating issue that...
The evolutionary expansion of the mammalian brain, notably the neocortex, provides a platform for th...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
International audienceCerebral cortical development involves a complex series of highly regulated st...
During development, the decision of stem and progenitor cells to switch from proliferation to differ...