This article provides an overview of signaling processes during early specification of the anterior neural tube, with special emphasis on the telencephalon. A series of signaling systems based on the action of distinct morphogens acts at different developmental stages, specifying interacting developmental fields that define axes of differentiation in the rostrocaudal and the dorsoventral domains. Interestingly, many of these signaling systems are co-opted for several differentiation processes. This strategy provides a simple and efficient mechanism to generate novel structures in evolution, and may have been especially important in the origin of the telencephalon and the mammalian cerebral cortex. For example, the action of fibroblast growt...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...
Borders are important as they demarcate developing tissue into distinct functional units. A key chal...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...
This article provides an overview of signaling processes during early specification of the anterior ...
AbstractRegionalization of the neural plate and the early neural tube is controlled by several signa...
AbstractRegionalization of the neural plate and the early neural tube is controlled by several signa...
The vertebrate nervous system is a highly complex and intriguing structure with diverse functions. T...
Neural development is a highly orchestrated process, patterning of naïve tissue into highly evolved...
AbstractBMPs have been proposed to pattern the medial-lateral axis of the telencephalon in a concent...
AbstractThe vertebrate central nervous system comprises an intricate array of neurons generated in a...
The dorsal medial region of the developing mammalian telencephalon plays a central role in the patte...
Environmental signals including epidermal growth factor family members, Shh, fibroblast growth facto...
AbstractThe question of how the vertebrate embryo gives rise to a nervous system is of paramount int...
The question of how the vertebrate embryo gives rise to a nervous system is of paramount interest in...
The Spemann organizer in amphibians gives rise to the anterior mesendoderm (AME) and is capable of i...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...
Borders are important as they demarcate developing tissue into distinct functional units. A key chal...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...
This article provides an overview of signaling processes during early specification of the anterior ...
AbstractRegionalization of the neural plate and the early neural tube is controlled by several signa...
AbstractRegionalization of the neural plate and the early neural tube is controlled by several signa...
The vertebrate nervous system is a highly complex and intriguing structure with diverse functions. T...
Neural development is a highly orchestrated process, patterning of naïve tissue into highly evolved...
AbstractBMPs have been proposed to pattern the medial-lateral axis of the telencephalon in a concent...
AbstractThe vertebrate central nervous system comprises an intricate array of neurons generated in a...
The dorsal medial region of the developing mammalian telencephalon plays a central role in the patte...
Environmental signals including epidermal growth factor family members, Shh, fibroblast growth facto...
AbstractThe question of how the vertebrate embryo gives rise to a nervous system is of paramount int...
The question of how the vertebrate embryo gives rise to a nervous system is of paramount interest in...
The Spemann organizer in amphibians gives rise to the anterior mesendoderm (AME) and is capable of i...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...
Borders are important as they demarcate developing tissue into distinct functional units. A key chal...
During vertebrate development, the brain becomes progressively subdivided into distinct regions with...