Causal analysis of molecular patterning at neural plate and early neural tube stages has shown that the central nervous system (CNS) of vertebrates is essentially organized into transverse neural segments or neuromeres and longitudinal zones which follow the curved axis of the brain. The intersection of the longitudinal and transverse patterning processes in the embryonic brain leads to the formation of a checkerboard pattern of distinct progenitor domains called "fundamental morphological units" (FMUs). The topologically invariant pattern formed by the ventricular surfaces of the FMUs of a given taxon represents the "Bauplan" or "blueprint" of the brain of that taxon. The FMUs initially represent thin epithelial fields; during further deve...
The neuromeric concept of brain formation has become a well-established model to explain how order i...
The vertebrate brain is hierarchically assembled about orthogonal axes using organizing centers that...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...
In recent years, the classical approaches of experimental embryology have been used in combination w...
AbstractThe vertebrate central nervous system comprises an intricate array of neurons generated in a...
The vertebrate nervous system arises through a series of inductive interactions, beginning with the ...
The complexity of the vertebrate nervous system has driven many to search for simplifying or organi...
AbstractWe describe the essential features of and the molecules involved in dorsoventral (DV) patter...
All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsove...
All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsove...
This article provides a brief review of concepts of the features of the pre- and postnatal developme...
The organization of the non-mammalian forebrain had long puzzled neurobiologists. Unlike typical mam...
The tremendous complexity of the adult forebrain makes it a challenging task to elucidate how this s...
Radial glia is a ubiquitous cell type in the developing central nervous system (CNS) of vertebrates,...
Of all vertebrate structures, the nervous system has perhaps the greatest cellular diversification a...
The neuromeric concept of brain formation has become a well-established model to explain how order i...
The vertebrate brain is hierarchically assembled about orthogonal axes using organizing centers that...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...
In recent years, the classical approaches of experimental embryology have been used in combination w...
AbstractThe vertebrate central nervous system comprises an intricate array of neurons generated in a...
The vertebrate nervous system arises through a series of inductive interactions, beginning with the ...
The complexity of the vertebrate nervous system has driven many to search for simplifying or organi...
AbstractWe describe the essential features of and the molecules involved in dorsoventral (DV) patter...
All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsove...
All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsove...
This article provides a brief review of concepts of the features of the pre- and postnatal developme...
The organization of the non-mammalian forebrain had long puzzled neurobiologists. Unlike typical mam...
The tremendous complexity of the adult forebrain makes it a challenging task to elucidate how this s...
Radial glia is a ubiquitous cell type in the developing central nervous system (CNS) of vertebrates,...
Of all vertebrate structures, the nervous system has perhaps the greatest cellular diversification a...
The neuromeric concept of brain formation has become a well-established model to explain how order i...
The vertebrate brain is hierarchically assembled about orthogonal axes using organizing centers that...
The vertebrate nervous system is extremely complex and contains a wide diversity of cell types. The ...