scholarly article | Q13442814 |
P356 | DOI | 10.1002/1096-9861(20001106)427:1<67::AID-CNE5>3.0.CO;2-2 |
P698 | PubMed publication ID | 11042592 |
P50 | author | Salvador Guirado | Q46709223 |
P2093 | author name string | L Puelles | |
J C Dávila | |||
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Calbindin D-28k and parvalbumin in the rat nervous system | Q34224142 | ||
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Evolutionary developmental biology meets the brain: the origins of mammalian cortex | Q36152652 | ||
Calretinin distribution in the thalamus of the rat: immunohistochemical and in situ hybridization histochemical analyses | Q38326394 | ||
Telencephalic projections to the eye in Python reticulatus | Q38514024 | ||
The telencephalon of tetrapods in evolution | Q38558702 | ||
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The organization of neocortex in mammals: are species differences really so different? | Q40372341 | ||
Calcium-binding proteins: selective markers of nerve cells | Q40886777 | ||
The thalamus of reptiles and mammals: similarities and differences | Q40947605 | ||
The dorsal thalamus of jawed vertebrates: a comparative viewpoint | Q40947613 | ||
A segmental morphological paradigm for understanding vertebrate forebrains | Q40947637 | ||
Development of catecholamine systems in the brain of the lizard Gallotia galloti. | Q41010648 | ||
Observations on the fate of nucleus superficialis magnocellularis of Rendahl in the avian diencephalon, bearing on the organization and nomenclature of neighboring retinorecipient nuclei | Q41186766 | ||
Nucleus rotundus in a snake, Thamnophis sirtalis: an analysis of a nonretinotopic projection | Q41606879 | ||
Prosencephalic pathways related to the paleostriatum of the pigeon (Columba livia) | Q42441806 | ||
Cholinergic, monoaminergic and peptidergic innervation of the primary visual centers in the brain of the lizards Gekko gecko and Gallotia galloti | Q42449720 | ||
In vitro HRP-labeling of the fasciculus retroflexus in the lizard Gallotia galloti | Q42458275 | ||
Distribution of neuropeptide Y-like immunoreactivity in the brain of the lizard Gallotia galloti. | Q42461060 | ||
Distribution of GABA immunoreactive systems in the forebrain and midbrain of the chameleon | Q42473608 | ||
Retinal and tectal connections of embryonic nucleus superficialis magnocellularis and its mature derivatives in the chick | Q70174389 | ||
Habenular asymmetry and the central connections of the parietal eye of the lizard | Q70765292 | ||
Organization of thalamic afferents to anterior dorsal ventricular ridge in turtles. I. Projections of thalamic nuclei | Q70830501 | ||
Nuclear organization of the bullfrog diencephalon | Q70984085 | ||
Ascending pathways from the monkey superior colliculus: an autoradiographic analysis | Q71332888 | ||
A segmental map of architectonic subdivisions in the diencephalon of the frog Rana perezi: acetylcholinesterase-histochemical observations | Q71511723 | ||
Mapping of neurochemical markers in quail central nervous system: VIP- and SP-like immunoreactivity | Q71699545 | ||
Fine structure of the dorsal lateral geniculate nucleus of the turtle, Emys orbicularis: a Golgi, combined HRP tracing and GABA immunocytochemical study | Q71744875 | ||
Calretinin in the thalamic reticular nucleus of the rat: distribution and relationship with ipsilateral and contralateral efferents | Q71953040 | ||
NADPH diaphorase-positive neurons in the lizard hippocampus: a distinct subpopulation of GABAergic interneurons | Q72329224 | ||
The evolution of the dorsal thalamus of jawed vertebrates, including mammals: cladistic analysis and a new hypothesis | Q72385329 | ||
The evolution of the dorsal pallium in the telencephalon of amniotes: cladistic analysis and a new hypothesis | Q72385332 | ||
Anatomical evidence for an ascending somatosensory pathway to the telencephalon in crocodiles, Caiman crocodilus | Q72620288 | ||
Subpopulations of GABA neurons containing somatostatin, neuropeptide Y, and parvalbumin in the dorsomedial cortex of the lizard Psammodromus algirus | Q72658784 | ||
Some morphological features of a visual thalamic nucleus in a reptile: observations on nucleus rotundus in Caiman crocodilus | Q73338884 | ||
Patterns of calretinin, calbindin, and tyrosine-hydroxylase expression are consistent with the prosomeric map of the frog diencephalon | Q73549673 | ||
A lacertilian dorsal retinorecipient thalamus: a re-investigation in the old-world lizard Podarcis hispanica | Q73959077 | ||
Anterograde degeneration study of the superior colliculus inTupaia glis: Evidence for a subdivision between superficial and deep layers | Q48665876 | ||
The organization and projections of the paleostriatal complex in the pigeon (Columba livia). | Q48675199 | ||
The substance P-containing striatotegmental path in reptiles: An immunohistochemical study | Q48737644 | ||
Do retinal and spinal projections overlap within the turtle thalamus? | Q48750797 | ||
Afferent connections to the diencephalon in the marsupial phalanger and question of sensory convergence in the "posterior group" of the thalamus | Q48768306 | ||
Postnatal development of calbindin and parvalbumin immunoreactivity in the thalamus of the rat. | Q48793679 | ||
The development of the chick optic tectum. I. Normal morphology and cytoarchitectonic development | Q48824319 | ||
A Comparison of Neurotransmitter-Specific and Neuropeptide-Specific Neuronal Cell Types Present in the Dorsal Cortex in Turtles with Those Present in the Isocortex in Mammals: Implications for the Evolution of Isocortex; pp. 53–72 | Q48824516 | ||
The efferent connections of the nucleus of the optic tract and the superior colliculus in the rabbit | Q48913141 | ||
Formation of cadherin-expressing brain nuclei in diencephalic alar plate divisions | Q49017037 | ||
Calretinin immunoreactivity in the thalamus of the squirrel monkey | Q49023480 | ||
Sensory properties and afferents of the N. dorsolateralis posterior thalami of the pigeon | Q49099778 | ||
Somatosensory areas in the telencephalon of the pigeon. II. Spinal pathways and afferent connections. | Q50891058 | ||
A study of the anuran diencephalon. | Q51353124 | ||
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. | Q52166631 | ||
Morphologic fate of diencephalic prosomeres and their subdivisions revealed by mapping cadherin expression. | Q52167816 | ||
The Thalamus | Q56113095 | ||
Light and electron microscopic evidence for projections from the thalamic nucleus rotundus to targets in the basal ganglia, the dorsal ventricular ridge, and the amygdaloid complex in a lizard | Q57540062 | ||
Calcium-binding protein parvalbumin as a neuronal marker | Q59087312 | ||
Asymmetric distribution of calbindin-D28K in the ganglia habenulae of an elasmobranch fish | Q59649830 | ||
Acetylcholinesterase-histochemical differential staining of subdivisions within the nucleus rotundus in the chick | Q67657115 | ||
Afferent connections of the striatum and the nucleus accumbens in the lizard Gekko gecko | Q68629983 | ||
Solitary magnocellular neurons in the avian optic tectum: cytoarchitectonic, histochemical and [3H]thymidine autoradiographic characterization | Q68971777 | ||
Collateral projections of predorsal bundle cells of the superior colliculus in the rat | Q69628880 | ||
GABA-like immunoreactivity of neurons in the chicken diencephalon and mesencephalon | Q69752489 | ||
Topographical organization of the projections from the reticular thalamic nucleus to the intralaminar and medial thalamic nuclei in the cat | Q69948891 | ||
Distribution of choline acetyltransferase immunoreactivity in the brain of the lizard Gallotia galloti | Q42512377 | ||
Calcium binding protein in the basal ganglia system of a non-mammalian vertebrate: an immunohistochemical study in the reptileCaiman crocodilus | Q42519364 | ||
Calbindin D-28k Protein and mRNA Localization in the Rat Brain | Q42523360 | ||
Superior collicular projection to intralaminar thalamus in rat. | Q42525146 | ||
Reciprocal connections between the claustrum and visual thalamus in the tree shrew (Tupaia glis). | Q42526006 | ||
Diencephalic and mesencephalic afferents of the rat claustrum | Q42528571 | ||
Glutamic acid decarboxylase immunoreactivity in some dorsal thalamic nuclei in Crocodilia | Q43520216 | ||
The locus of optic nerve head representation in the retinotopic projection over nucleus geniculatus lateralis ventralis and nucleus griseum tectalis in the chick also lacks a retinal projection. | Q44330810 | ||
The asymmetry of the habenular nuclei of female and male frogs in spring and in winter | Q44553084 | ||
Distribution of GABA-like immunoreactivity in the pigeon brain. | Q44812170 | ||
Differential Calcium Binding Protein Immunoreactivity Distinguishes Classes of Relay Neurons in Monkey Thalamic Nuclei | Q46159408 | ||
Thalamic projections from a midbrain somatosensory area in a reptile, Caiman crocodilus | Q46243790 | ||
Thalamic nuclei that project to reptilian telencephalon lack GABA and GAD immunoreactive neurons and puncta | Q46295853 | ||
Calcium binding protein immunoreactivity in a reptilian thalamic reticular nucleus | Q46327885 | ||
A second auditory area in the non-cortical telencephalon of a reptile | Q46446709 | ||
Progress in the study of brain evolution: from speculative theories to testable hypotheses | Q46725576 | ||
Parvalbumin immunoreactivity in the thalamus of guinea pig: light and electron microscopic correlation with gamma-aminobutyric acid immunoreactivity | Q46812294 | ||
The forebrain of Alligator mississippiensis | Q47005690 | ||
Distribution of neuropeptide Y (NPY) in the cerebral cortex of the lizards Psammodromus algirus and podarcis hispanica: co-localization of NPY, somatostatin, and GABA. | Q47316875 | ||
Ascending projections from the optic tectum in the lizard Podarcis hispanica. | Q47762597 | ||
Calretinin in pretecto- and olivocerebellar projections in the chick: immunohistochemical and experimental study | Q47866569 | ||
Two distinct subgroups of Group B Sox genes for transcriptional activators and repressors: their expression during embryonic organogenesis of the chicken | Q47932230 | ||
Calcium binding protein immunoreactivity in nucleus rotundus in a reptile, Caiman crocodilus | Q48120053 | ||
The lacertidian reticular thalamic nucleus topographically upon the dorsal thalamus: experimental study in Gallotia galloti. | Q48124203 | ||
Distribution of calretinin, calbindin-D28k, and parvalbumin in the rat thalamus | Q48201430 | ||
Laminar distribution of the cells of origin of ascending and descending tectofugal pathways in turtles: implications for the evolution of tectal lamination | Q48214462 | ||
Thalamic projections to the paleostriatum and neostriatum in the pigeon (Columba livia). | Q48233536 | ||
Calbindin-D28k in cortical regions of the lizard Psammodromus algirus | Q48281795 | ||
Calcium-binding proteins in the dorsal ventricular ridge of the lizard Psammodromus algirus | Q48281802 | ||
A second ascending visual pathway from the optic tectum to the telencephalon in the pigeon (Columba livia). | Q48310585 | ||
Percentage of relay and intrinsic neurons in two sensory thalamic nuclei projecting to the non-cortical telencephalon in reptiles Caiman crocodilus | Q48332533 | ||
Organization of the tectofugal visual pathway in the pigeon: a retrograde transport study | Q48381752 | ||
A direct thalamo-cerebellar pathway in pigeon and catfish | Q48403138 | ||
Trigeminal projections to the dorsal thalamus in a lacertid lizard, Podarcis hispanica | Q48422312 | ||
Projections to the subcortical forebrain from anatomically defined regions of the medial geniculate body in the rat. | Q48427937 | ||
Efferent projections of the thalamic intralaminar nuclei in the cat. | Q48480065 | ||
Calretinin-immunoreactive neurons in the human thalamus | Q48491717 | ||
Architectonic studies of the diencephalon ofIguana iguana (Linnaeus) | Q48548785 | ||
Evidence of GABA-immunopositive neurons in the dorsal part of the lateral geniculate nucleus of reptiles: morphological correlates with interneurons | Q48556331 | ||
Prenatal development of calbindin immunoreactivity in the dorsal thalamus of the rat. | Q48562490 | ||
Afferent connections of the habenular complex in the lizard Gallotia galloti | Q48576649 | ||
A cytoarchitectonic study of the diencephalon of the tegu lizard, Tupinambis nigropunctatus | Q48581736 | ||
Ascending connections of a thalamic auditory area in a crocodile, caiman crocodilus | Q48586480 | ||
Ascending connections of a midbrain auditory area in a crocodile, Caiman crocodilus | Q48586490 | ||
Telencephalic connections in lizards. II. Projections to anterior dorsal ventricular ridge | Q48602468 | ||
Telencephalic connections in lizards. I. Projections to cortex | Q48602479 | ||
Calcitonin-gene related peptide is an evolutionarily conserved marker within the amniote thalamo-telencephalic auditory pathway | Q48625113 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Large Psammodromus | Q1851181 |
P304 | page(s) | 67-92 | |
P577 | publication date | 2000-11-01 | |
P1433 | published in | The Journal of Comparative Neurology | Q3186907 |
P1476 | title | Expression of calcium-binding proteins in the diencephalon of the lizard Psammodromus algirus | |
P478 | volume | 427 |
Q51976100 | A model of early molecular regionalization in the chicken embryonic pretectum. |
Q43939820 | A proposed homology between the reptilian dorsomedial thalamic nucleus and the mammalian paraventricular thalamic nucleus. |
Q43939835 | A putative striato-dorsal thalamic pathway in lizards |
Q90254353 | Amphibian thalamic nuclear organization during larval development and in the adult frog Xenopus laevis: Genoarchitecture and hodological analysis |
Q42441440 | Calbindin-D28k and calretinin expression in the forebrain of anuran and urodele amphibians: further support for newly identified subdivisions |
Q45328319 | Calcium binding protein expression in the optic tectum of Alligator during development |
Q30474171 | Calcium-binding protein immunoreactivity characterizes the auditory system of Gekko gecko |
Q48492481 | Calcium-binding proteins, neuronal nitric oxide synthase, and GABA help to distinguish different pallial areas in the developing and adult chicken. I. Hippocampal formation and hyperpallium |
Q50667689 | Characterization of progenitor domains in the developing mouse thalamus. |
Q48646671 | Comparison of thalamic populations in mammals and birds: expression of ErbB4 mRNA. |
Q48155736 | Distribution and development of calretinin-like immunoreactivity in the telencephalon of the brown trout, Salmo trutta fario |
Q48621528 | Distribution of calcitonin gene-related peptide-like immunoreactivity in the brain of the lizard Podarcis hispanica |
Q48467162 | Distribution of neuropeptide FF-like immunoreactivity in the brain of the lizard Gekko gecko and its relation to catecholaminergic structures |
Q42477225 | Distribution of the limbic system-associated membrane protein (LAMP) in pigeon forebrain and midbrain |
Q42691705 | Embryonic genoarchitecture of the pretectum in Xenopus laevis: a conserved pattern in tetrapods |
Q78493823 | Evolutionary divergence of the reptilian and the mammalian brains: considerations on connectivity and development |
Q39932450 | Expression of calcium-binding proteins and selected neuropeptides in the human, chimpanzee, and crab-eating macaque claustrum |
Q42440075 | Expression of calcium-binding proteins in the mouse claustrum. |
Q42689540 | Expression of regulatory genes in the embryonic brain of a lizard and implications for understanding pallial organization and evolution. |
Q48310271 | Expression of the genes GAD67 and Distal-less-4 in the forebrain of Xenopus laevis confirms a common pattern in tetrapods |
Q34581597 | Field homology as a way to reconcile genetic and developmental variability with adult homology |
Q34226596 | Forebrain gene expression domains and the evolving prosomeric model. |
Q48646716 | Gbx2 expression in the late embryonic chick dorsal thalamus |
Q44472144 | Genoarchitectonic profile of developing nuclear groups in the chicken pretectum |
Q42610779 | Hodological characterization of the medial amygdala in anuran amphibians. |
Q48389863 | Homologous thalamic nuclei of the tectofugal visual system of reptiles and birds have different immunoreactivities towards calcium-binding proteins |
Q42518873 | Immunohistochemical distribution of calretinin and calbindin (D-28k) in the brain of the cladistian Polypterus senegalus. |
Q42454530 | Immunohistochemical localization of calbindin-D28k and calretinin in the brainstem of anuran and urodele amphibians |
Q42499053 | Immunohistochemical study of the distribution of calcium binding proteins in the brain of a chondrostean (Acipenser baeri). |
Q48141917 | Internal structure of the nucleus rotundus revealed by mapping cadherin expression in the embryonic chicken visual system |
Q95269379 | Lacz-Reporter mapping of Dlx5/6 expression and genoarchitectural analysis of the postnatal mouse prethalamus |
Q80796862 | Localization and connectivity of the lateral amygdala in anuran amphibians |
Q36082871 | Localization of cerebellin-2 in late embryonic chicken brain: implications for a role in synapse formation and for brain evolution |
Q22337420 | Organization and evolution of the avian forebrain |
Q48646710 | Organization of the mouse dorsal thalamus based on topology, calretinin immnunostaining, and gene expression |
Q42507673 | Pattern of calbindin-D28k and calretinin immunoreactivity in the brain of Xenopus laevis during embryonic and larval development |
Q33203397 | Pretectal and tectal afferents to the dorsal lateral geniculate nucleus of the turtle: an electron microscopic axon tracing and gamma-aminobutyric acid immunocytochemical study. |
Q52362113 | Regional chemoarchitecture of the brain of lungfishes based on calbindin D-28K and calretinin immunohistochemistry. |
Q51871702 | Sites of origin and developmental dynamics of the neurons in the core and shell regions of torus semicircularis in the Chinese softshell turtle (Pelodiscus sinensis). |
Q64094928 | Survey of Midbrain, Diencephalon, and Hypothalamus Neuroanatomic Terms Whose Prosomeric Definition Conflicts With Columnar Tradition |
Q42519494 | Thalamo-telencephalic connections: new insights on the cortical organization in reptiles. |
Q22337104 | Thoughts on the development, structure and evolution of the mammalian and avian telencephalic pallium |
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