AbstractIn the adult teleost brain, proliferating cells are observed in a broad area, while these cells have a restricted distribution in adult mammalian brains. In the adult teleost optic tectum, most of the proliferating cells are distributed in the caudal margin of the periventricular gray zone (PGZ). We found that the PGZ is largely divided into 3 regions: 1 mitotic region and 2 post-mitotic regions—the superficial and deep layers. These regions are distinguished by the differential expression of several marker genes: pcna, sox2, msi1, elavl3, gfap, fabp7a, and s100β. Using transgenic zebrafish Tg (gfap:GFP), we found that the deep layer cells specifically express gfap:GFP and have a radial glial morphology. We noted that bromodeoxyurid...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
AbstractNeurogenesis in the post-embryonic vertebrate brain varies in extent and efficiency between ...
AbstractIn the adult teleost brain, proliferating cells are observed in a broad area, while these ce...
AbstractOur understanding of the cellular and molecular mechanisms underlying the adult neural stem ...
AbstractLifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that...
Our understanding of the cellular and molecular mechanisms underlying the adult neural stem cell sta...
AbstractOur understanding of the cellular and molecular mechanisms underlying the adult neural stem ...
Abstract Background The persistence in adult teleost ...
AbstractLifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that...
Lifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that contain...
International audienceThe zebrafish has become a new model for adult neurogenesis, owing to its abun...
The zebrafish has become a new model for adult neurogenesis, owing to its abundant neurogenic areas ...
International audienceAdult neurogenesis, i.e., the generation of neurons from neural stem cells (NS...
AbstractNeurogenesis in the post-embryonic vertebrate brain varies in extent and efficiency between ...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
AbstractNeurogenesis in the post-embryonic vertebrate brain varies in extent and efficiency between ...
AbstractIn the adult teleost brain, proliferating cells are observed in a broad area, while these ce...
AbstractOur understanding of the cellular and molecular mechanisms underlying the adult neural stem ...
AbstractLifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that...
Our understanding of the cellular and molecular mechanisms underlying the adult neural stem cell sta...
AbstractOur understanding of the cellular and molecular mechanisms underlying the adult neural stem ...
Abstract Background The persistence in adult teleost ...
AbstractLifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that...
Lifelong neurogenesis in vertebrates relies on stem cells producing proliferation zones that contain...
International audienceThe zebrafish has become a new model for adult neurogenesis, owing to its abun...
The zebrafish has become a new model for adult neurogenesis, owing to its abundant neurogenic areas ...
International audienceAdult neurogenesis, i.e., the generation of neurons from neural stem cells (NS...
AbstractNeurogenesis in the post-embryonic vertebrate brain varies in extent and efficiency between ...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
International audienceNeurogenesis in the post-embryonic vertebrate brain varies in extent and effic...
AbstractNeurogenesis in the post-embryonic vertebrate brain varies in extent and efficiency between ...