Thoughts on the development, structure and evolution of the mammalian and avian telencephalic pallium.

PubWeight™: 1.24‹?› | Rank: Top 10%

🔗 View Article (PMC 1088538)

Published in Philos Trans R Soc Lond B Biol Sci on October 29, 2001

Authors

L Puelles1

Author Affiliations

1: Department of Morphological Sciences, University of Murcia, 30100, Murcia, Spain.

Articles cited by this

Interneuron migration from basal forebrain to neocortex: dependence on Dlx genes. Science (1997) 6.08

What is the amygdala? Trends Neurosci (1998) 3.62

The medial ganglionic eminence gives rise to a population of early neurons in the developing cerebral cortex. J Neurosci (1999) 3.03

Pallial and subpallial derivatives in the embryonic chick and mouse telencephalon, traced by the expression of the genes Dlx-2, Emx-1, Nkx-2.1, Pax-6, and Tbr-1. J Comp Neurol (2000) 2.96

Bone morphogenetic proteins (BMPs) as regulators of dorsal forebrain development. Development (1997) 2.93

Combinatorial expression of three zebrafish genes related to distal-less: part of a homeobox gene code for the head. J Neurosci (1994) 2.88

Roles of Pax-genes in developing and adult brain as suggested by expression patterns. J Neurosci (1994) 2.19

Expression patterns of homeobox and other putative regulatory genes in the embryonic mouse forebrain suggest a neuromeric organization. Trends Neurosci (1993) 1.97

The limbic system of tetrapods: a comparative analysis of cortical and amygdalar populations. Brain Behav Evol (1995) 1.91

T-brain-1: a homolog of Brachyury whose expression defines molecularly distinct domains within the cerebral cortex. Neuron (1995) 1.84

Do birds possess homologues of mammalian primary visual, somatosensory and motor cortices? Trends Neurosci (2000) 1.75

Cadherins in the central nervous system. Prog Neurobiol (2000) 1.73

Early neocortical regionalization in the absence of thalamic innervation. Science (1999) 1.70

Differential origins of neocortical projection and local circuit neurons: role of Dlx genes in neocortical interneuronogenesis. Cereb Cortex (1999) 1.70

DLX-1, DLX-2, and DLX-5 expression define distinct stages of basal forebrain differentiation. J Comp Neurol (1999) 1.68

The emergence and evolution of mammalian neocortex. Trends Neurosci (1995) 1.63

Dlx genes encode DNA-binding proteins that are expressed in an overlapping and sequential pattern during basal ganglia differentiation. Dev Dyn (1997) 1.62

Regionalization of the prosencephalic neural plate. Annu Rev Neurosci (1998) 1.59

Thalamoamygdaloid projections in the rat: a test of the amygdala's role in sensory processing. J Comp Neurol (1991) 1.57

Dynamics of cell migration from the lateral ganglionic eminence in the rat. J Neurosci (1996) 1.57

Neuronal circuits are subdivided by differential expression of type-II classic cadherins in postnatal mouse brains. Mol Cell Neurosci (1997) 1.52

Homology and evolutionary origins of the 'neocortex'. Brain Behav Evol (1991) 1.45

Expression of the Emx-1 and Dlx-1 homeobox genes define three molecularly distinct domains in the telencephalon of mouse, chick, turtle and frog embryos: implications for the evolution of telencephalic subdivisions in amniotes. Development (1998) 1.45

Genomic structure, mapping, activity and expression of fibroblast growth factor 17. Mech Dev (1999) 1.36

Organization of projections to the lateral amygdala from auditory and visual areas of the thalamus in the rat. J Comp Neurol (1999) 1.35

Innervation of cat visual areas 17 and 18 by physiologically identified X- and Y- type thalamic afferents. II. Identification of postsynaptic targets by GABA immunocytochemistry and Golgi impregnation. J Comp Neurol (1985) 1.31

Regulatory gene expression boundaries demarcate sites of neuronal differentiation in the embryonic zebrafish forebrain. Neuron (1994) 1.31

Sequence and expression pattern of pax-6 are highly conserved between zebrafish and mice. Development (1992) 1.30

The telencephalon of tetrapods in evolution. Brain Behav Evol (1997) 1.28

A segmental morphological paradigm for understanding vertebrate forebrains. Brain Behav Evol (1995) 1.26

Patterns of vertebrate neurogenesis and the paths of vertebrate evolution. Brain Behav Evol (1998) 1.21

Separate progenitors for radial and tangential cell dispersion during development of the cerebral neocortex. Neuron (1998) 1.20

Genesis of the dorsal lateral geniculate nucleus in the rhesus monkey: site and time of origin, kinetics of proliferation, routes of migration and pattern of distribution of neurons. J Comp Neurol (1977) 1.18

Evolutionary developmental biology meets the brain: the origins of mammalian cortex. Proc Natl Acad Sci U S A (1997) 1.10

The evolution of the dorsal pallium in the telencephalon of amniotes: cladistic analysis and a new hypothesis. Brain Res Brain Res Rev (1994) 1.10

New subdivision schema for the avian torus semicircularis: neurochemical maps in the chick. J Comp Neurol (1994) 1.07

The organization of neocortex in mammals: are species differences really so different? Trends Neurosci (1995) 1.07

Regulatory gene expression patterns reveal transverse and longitudinal subdivisions of the embryonic zebrafish forebrain. Mech Dev (2000) 1.07

The evolution of isocortex. Brain Behav Evol (1995) 1.03

The forebrain of gnathostomes: in search of a morphotype. Brain Behav Evol (1995) 1.02

Convergent and complementary projections of the caudal paralaminar thalamic nuclei to rat temporal and insular cortex. Cereb Cortex (2000) 1.01

Organization of sensory cortex in a Madagascan insectivore, the tenrec (Echinops telfairi). J Comp Neurol (1997) 1.01

Cells in the posterior thalamus project to both amygdala and temporal cortex: a quantitative retrograde double-labeling study in the rat. J Comp Neurol (2000) 1.00

Calcitonin gene-related peptide (CGRP) immunoreactive projections from the thalamus to the striatum and amygdala in the rat. J Comp Neurol (1991) 0.96

The contribution of the ganglionic eminence to the neuronal cell types of the cerebral cortex. Novartis Found Symp (2000) 0.95

Bottlebrush dendritic endings and large dendritic fields: motion-detecting neurons in the tectofugal pathway. J Comp Neurol (1998) 0.95

Lineage analysis reveals neurotransmitter (GABA or glutamate) but not calcium-binding protein homogeneity in clonally related cortical neurons. J Neurosci (1994) 0.94

Comparison of the mammalian and avian telencephalon from the perspective of gene expression data. Eur J Morphol (1999) 0.94

The evolution of the dorsal thalamus of jawed vertebrates, including mammals: cladistic analysis and a new hypothesis. Brain Res Brain Res Rev (1994) 0.93

Two distinct populations of tectal neurons have unique connections within the retinotectorotundal pathway of the pigeon (Columba livia). J Comp Neurol (1997) 0.93

Morphologic fate of diencephalic prosomeres and their subdivisions revealed by mapping cadherin expression. J Comp Neurol (2000) 0.91

Neuronal characterization, compartmental distribution, and activity-dependent regulation of glutamate immunoreactivity in adult monkey striate cortex. J Neurosci (1994) 0.90

The efferent connections of the nucleus of the optic tract and the superior colliculus in the rabbit. J Comp Neurol (1982) 0.89

Prosomeric map of the lamprey forebrain based on calretinin immunocytochemistry, Nissl stain, and ancillary markers. J Comp Neurol (1999) 0.89

Efferent projections of the thalamic intralaminar nuclei in the cat. Brain Res (1985) 0.88

The prenatal development of the pulvinar in the monkey: 3H-thymidine autoradiographic and morphometric analyses. Anat Embryol (Berl) (1981) 0.87

Expression of calcium-binding proteins in the diencephalon of the lizard Psammodromus algirus. J Comp Neurol (2000) 0.85

Cadherins and the formation of neural circuitry in the vertebrate CNS. Cell Tissue Res (1997) 0.85

Formation of cortical fields on a reduced cortical sheet. J Neurosci (1999) 0.84

Diencephalic and mesencephalic afferents of the rat claustrum. Anat Embryol (Berl) (1986) 0.84

Distribution of CGRP-like immunoreactivity in the chick and quail brain. J Comp Neurol (2000) 0.84

The "neostriatum" develops as part of the lateral pallium in birds. J Neurosci (1998) 0.82

Topographical mapping of the thalamocortical projections in rodents and comparison with that in primates. Exp Brain Res (1991) 0.82

Comparative development of the mammalian isocortex and the reptilian dorsal ventricular ridge. Evolutionary considerations. Cereb Cortex (1999) 0.82

The dorsal thalamus of jawed vertebrates: a comparative viewpoint. Brain Behav Evol (1995) 0.82

Calcitonin-gene related peptide is an evolutionarily conserved marker within the amniote thalamo-telencephalic auditory pathway. J Comp Neurol (1991) 0.81

Prenatal development of calbindin immunoreactivity in the dorsal thalamus of the rat. Neuroscience (1992) 0.80

A segmental map of architectonic subdivisions in the diencephalon of the frog Rana perezi: acetylcholinesterase-histochemical observations. Brain Behav Evol (1996) 0.80

Patterns of calretinin, calbindin, and tyrosine-hydroxylase expression are consistent with the prosomeric map of the frog diencephalon. J Comp Neurol (2000) 0.79

Evolution of cortical lamination: the reelin/Dab1 pathway. Novartis Found Symp (2000) 0.79

Reciprocal connections between the claustrum and visual thalamus in the tree shrew (Tupaia glis). Brain Res (1986) 0.79

Thalamic territories innervated by cerebellar nuclear afferents in the hedgehog tenrec, Echinops telfairi. J Comp Neurol (1998) 0.77

Diencephalic connections of the superior colliculus in the hedgehog tenrec. Exp Brain Res (1996) 0.77

Distribution of radial glia in the developing telencephalon of chicks. J Comp Neurol (1997) 0.77

Monoclonal antibodies to the turtle cortex reveal neuronal subsets, antigenic cross-reactivity with the mammalian neocortex, and forebrain structures sharing a pallial derivation. J Comp Neurol (1986) 0.77

Formation of cadherin-expressing brain nuclei in diencephalic alar plate divisions. J Comp Neurol (2000) 0.77

Distribution of glial fibrillary acidic protein-immunopositive structures in the brain of the domestic chicken (Gallus domesticus). J Comp Neurol (1993) 0.76