The comparison of gene expression patterns in the embryonic brain of mouse and chicken is being essential for understanding pallial organization. However, the scarcity of gene expression data in reptiles, crucial for understanding evolution, makes it difficult to identify homologues of pallial divisions in different amniotes. We cloned and analyzed the expression of the genes Emx1, Lhx2, Lhx9, and Tbr1 in the embryonic telencephalon of the lacertid lizard Psammodromus algirus. The comparative expression patterns of these genes, critical for pallial development, are better understood when using a recently proposed six-part model of pallial divisions. The lizard medial pallium, expressing all genes, includes the medial and dorsomedial cortice...
A comparative analysis of LIM-homeodomain (LIM-hd) expression patterns in the developing stage 32 Xe...
The organization of the cerebral hemispheres of mammals is characterized by corticostriatal glutamat...
A large part of the peripheral nervous system originates from cranial placodes. Placodes are often v...
The neocortex is the most representative and elaborated structure of the mammalian brain and is rela...
The six-layered neocortex is a unique characteristic of mammals and likely provides the neural basis...
Computations in the mammalian cortex are carried out by glutamatergic and GABAergic neurons forming ...
Together with a complex variety of behavioral, physiological, morphological, and neurobiological inn...
The complexity of the pallium during evolution has increased dramatically in many different respects...
The isocortex is a distinctive feature of the mammalian brain, with no clear counterpart in other am...
Embryological studies indicate that the amygdala includes pallial structures, namely the cortical am...
The isocortex is a distinctive feature of mammalian brains, which has no clear counterpart in the ce...
The thorniest problem in comparative neurobiology is the identification of the particular brain regi...
We carried out a study of the expression patterns of seven developmental regulatory genes (Lef1, Lhx...
Structural organization of the telencephalon differs starkly among mammals, birds and non-avian rept...
In our companion study (Jarvis et al. [2013] J Comp Neurol. doi: 10.1002/cne.23404) we used quantita...
A comparative analysis of LIM-homeodomain (LIM-hd) expression patterns in the developing stage 32 Xe...
The organization of the cerebral hemispheres of mammals is characterized by corticostriatal glutamat...
A large part of the peripheral nervous system originates from cranial placodes. Placodes are often v...
The neocortex is the most representative and elaborated structure of the mammalian brain and is rela...
The six-layered neocortex is a unique characteristic of mammals and likely provides the neural basis...
Computations in the mammalian cortex are carried out by glutamatergic and GABAergic neurons forming ...
Together with a complex variety of behavioral, physiological, morphological, and neurobiological inn...
The complexity of the pallium during evolution has increased dramatically in many different respects...
The isocortex is a distinctive feature of the mammalian brain, with no clear counterpart in other am...
Embryological studies indicate that the amygdala includes pallial structures, namely the cortical am...
The isocortex is a distinctive feature of mammalian brains, which has no clear counterpart in the ce...
The thorniest problem in comparative neurobiology is the identification of the particular brain regi...
We carried out a study of the expression patterns of seven developmental regulatory genes (Lef1, Lhx...
Structural organization of the telencephalon differs starkly among mammals, birds and non-avian rept...
In our companion study (Jarvis et al. [2013] J Comp Neurol. doi: 10.1002/cne.23404) we used quantita...
A comparative analysis of LIM-homeodomain (LIM-hd) expression patterns in the developing stage 32 Xe...
The organization of the cerebral hemispheres of mammals is characterized by corticostriatal glutamat...
A large part of the peripheral nervous system originates from cranial placodes. Placodes are often v...