scholarly article | Q13442814 |
P50 | author | Constance Scharff | Q22036075 |
Ezequiel Mendoza | Q57645527 | ||
Antonio Abellan | Q58367330 | ||
Loreta Medina | Q43071692 | ||
P2093 | author name string | Alba Vicario | |
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Revised nomenclature for avian telencephalon and some related brainstem nuclei | Q22337412 | ||
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Expression of cLhx6 and cLhx7/8 suggests a pallido-pedunculo-preoptic origin for the lateral and medial parts of the avian bed nucleus of the stria terminalis | Q57540050 | ||
Neural distribution of vasotocin receptor mRNA in two species of songbird. | Q64996777 | ||
Coexistence of peptides (corticotropin releasing factor/neurotensin and substance P/somatostatin) in the bed nucleus of the stria terminalis and central amygdaloid nucleus of the rat | Q69084881 | ||
Distribution of CGRP-like immunoreactivity in the chick and quail brain | Q73863890 | ||
Multiple telencephalic and extratelencephalic embryonic domains contribute neurons to the medial extended amygdala | Q83753426 | ||
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A neuronal migratory pathway crossing from diencephalon to telencephalon populates amygdala nuclei | Q48188370 | ||
Development of sexually dimorphic vasotocinergic system in the bed nucleus of stria terminalis in chickens | Q48207240 | ||
Amygdala and socio-sexual behavior in male zebra finches | Q48241887 | ||
Three types of neurochemical projection from the bed nucleus of the stria terminalis to the ventral tegmental area in adult mice. | Q48254327 | ||
FOXP2 in focus: what can genes tell us about speech and language? | Q48282355 | ||
Molecular characterization of the intercalated cell masses of the amygdala: implications for the relationship with the striatum. | Q48381573 | ||
Nucleus accumbens subregions: hodological and immunohistochemical study in the domestic chick (Gallus domesticus). | Q48401230 | ||
Fiber connections of the compact division of the posterior pallial amygdala and lateral part of the bed nucleus of the stria terminalis in the pigeon (Columba livia). | Q48420566 | ||
Evidence for corticotropin-releasing factor, neurotensin, and somatostatin in the neural pathway from the central nucleus of the amygdala to the parabrachial nucleus. | Q48436060 | ||
Peptide immunoreactive neurons in the amygdala and the bed nucleus of the stria terminalis project to the midbrain central gray in the rat | Q48488454 | ||
Olfactory and amygdalar structures of the chicken ventral pallium based on the combinatorial expression patterns of LIM and other developmental regulatory genes. | Q48523443 | ||
Subpallial amygdala and nucleus taeniae in birds resemble extended amygdala and medial amygdala in mammals in their expression of markers of regional identity. | Q48786923 | ||
Subdivisions of the turtle Pseudemys scripta hypothalamus based on the expression of regulatory genes and neuronal markers. | Q48887366 | ||
Sites of origin and patterns of migration of vasotocin/mesotocin neurons in developing brain of the chick. | Q48922138 | ||
The distinct and overlapping phenotypic spectra of FOXP1 and FOXP2 in cognitive disorders | Q24629522 | ||
The olfactory amygdala in amniotes: an evo-devo approach | Q26862256 | ||
Contribution of genoarchitecture to understanding forebrain evolution and development, with particular emphasis on the amygdala | Q26992009 | ||
Amygdala microcircuits mediating fear expression and extinction | Q27028062 | ||
A forkhead-domain gene is mutated in a severe speech and language disorder | Q28190379 | ||
FOXP2 as a molecular window into speech and language | Q28238901 | ||
The role of the central nucleus of the amygdala in mediating fear and anxiety in the primate | Q28267264 | ||
Songbirds and the revised avian brain nomenclature | Q28277305 | ||
Pain responses, anxiety and aggression in mice deficient in pre-proenkephalin | Q28505477 | ||
Expression of Foxp4 in the developing and adult rat forebrain | Q28567339 | ||
Expression of Foxp2, a gene involved in speech and language, in the developing and adult striatum | Q28582343 | ||
Recent Advances in the Genetics of Vocal Learning | Q28645740 | ||
Behavior-linked FoxP2 regulation enables zebra finch vocal learning | Q28649796 | ||
Diminished FoxP2 levels affect dopaminergic modulation of corticostriatal signaling important to song variability | Q28660849 | ||
Molecular profiling of the developing avian telencephalon: regional timing and brain subdivision continuities | Q28661106 | ||
Young and intense: FoxP2 immunoreactivity in Area X varies with age, song stereotypy, and singing in male zebra finches | Q28706259 | ||
The avian subpallium: new insights into structural and functional subdivisions occupying the lateral subpallial wall and their embryological origins | Q28728249 | ||
Ultrasonic vocalizations in mouse models for speech and socio-cognitive disorders: insights into the evolution of vocal communication | Q28742271 | ||
Contributions of the amygdala to emotion processing: from animal models to human behavior | Q29615011 | ||
FoxP2 expression in avian vocal learners and non-learners | Q29618488 | ||
The neurobiology of pair bonding | Q29618579 | ||
Twitter evolution: converging mechanisms in birdsong and human speech | Q29619470 | ||
An evolutionary perspective on FoxP2: strictly for the birds? | Q30011031 | ||
Vocal production in different social contexts relates to variation in immediate early gene immunoreactivity within and outside of the song control system | Q30011061 | ||
Organization of the avian basal forebrain: chemical anatomy in the parrot (Melopsittacus undulatus). | Q30011099 | ||
Hormonal regulation of vasotocin receptor mRNA in a seasonally breeding songbird | Q30414220 | ||
Behavioral relevance of species-specific vasotocin anatomy in gregarious finches. | Q30445256 | ||
Evolving nonapeptide mechanisms of gregariousness and social diversity in birds | Q30457730 | ||
New perspectives in basal forebrain organization of special relevance for neuropsychiatric disorders: the striatopallidal, amygdaloid, and corticopetal components of substantia innominata | Q30461561 | ||
Vasotocin neurons and septal V1a-like receptors potently modulate songbird flocking and responses to novelty | Q30467039 | ||
Central amygdala activity during fear conditioning | Q30474897 | ||
Phasic vs sustained fear in rats and humans: role of the extended amygdala in fear vs anxiety | Q30477934 | ||
Selective participation of the bed nucleus of the stria terminalis and CRF in sustained anxiety-like versus phasic fear-like responses | Q30478689 | ||
Anxiety- and depressive-like responses and c-fos activity in preproenkephalin knockout mice: oversensitivity hypothesis of enkephalin deficit-induced posttraumatic stress disorder | Q30481522 | ||
FoxP2 in songbirds. | Q39156045 | ||
Embryological staging of the Zebra Finch, Taeniopygia guttata | Q39393687 | ||
Alkaline fixation drastically improves the signal of in situ hybridization. | Q39556538 | ||
Amygdaloid CRF pathways. Role in autonomic, neuroendocrine, and behavioral responses to stress | Q40788434 | ||
Embryonic Origin of the Islet1 and Pax6 Neurons of the Chicken Central Extended Amygdala Using Cell Migration Assays and Relation to Different Neuropeptide-Containing Cells. | Q40891929 | ||
Genetic identification of the central nucleus and other components of the central extended amygdala in chicken during development. | Q42156929 | ||
Subdivisions and derivatives of the chicken subpallium based on expression of LIM and other regulatory genes and markers of neuron subpopulations during development. | Q42454080 | ||
Central vasotocin-immunoreactive system in a male passerine bird (Junco hyemalis). | Q42473200 | ||
Similarities and differences in the forebrain expression of Lhx1 and Lhx5 between chicken and mouse: Insights for understanding telencephalic development and evolution. | Q42473560 | ||
Subdivisions of the turtle Pseudemys scripta subpallium based on the expression of regulatory genes and neuronal markers | Q42479088 | ||
Characterization of the bed nucleus of the stria terminalis in the forebrain of anuran amphibians. | Q42489983 | ||
Distribution of parvalbumin, calretinin, and calbindin-D(28k) immunoreactivity in the rat amygdaloid complex and colocalization with gamma-aminobutyric acid | Q42493403 | ||
Encoding of conditioned fear in central amygdala inhibitory circuits | Q42822319 | ||
Interaction between MAOA and FOXP2 in association with autism and verbal communication in a Korean population | Q43679558 | ||
Selective striatal connections of midbrain dopaminergic nuclei in the chick (Gallus domesticus). | Q43994713 | ||
Herpes virus-mediated preproenkephalin gene transfer to the amygdala is antinociceptive | Q44183937 | ||
Genetic and experimental evidence supports the continuum of the central extended amygdala and a mutiple embryonic origin of its principal neurons. | Q44830397 | ||
Very early development of nucleus taeniae of the amygdala | Q44841700 | ||
Conserved pattern of OTP-positive cells in the paraventricular nucleus and other hypothalamic sites of tetrapods. | Q46001952 | ||
Radial derivatives of the mouse ventral pallium traced with Dbx1-LacZ reporters | Q46099496 | ||
Lhx6 delineates a pathway mediating innate reproductive behaviors from the amygdala to the hypothalamus | Q46374692 | ||
Enkephalin co-expression with classic neurotransmitters in the amygdaloid complex of the rat. | Q46846332 | ||
Expression of Dbx1, Neurogenin 2, Semaphorin 5A, Cadherin 8, and Emx1 distinguish ventral and lateral pallial histogenetic divisions in the developing mouse claustroamygdaloid complex | Q47403766 | ||
The bed nucleus of the stria terminalis mediates inter-individual variations in anxiety and fear | Q30483212 | ||
Conservation and diversity of Foxp2 expression in muroid rodents: functional implications | Q30484346 | ||
Identification of distinct telencephalic progenitor pools for neuronal diversity in the amygdala. | Q30490374 | ||
Experience-dependent modification of a central amygdala fear circuit. | Q30536522 | ||
Genetic dissection of an amygdala microcircuit that gates conditioned fear | Q30537577 | ||
Distinct extended amygdala circuits for divergent motivational states | Q30545744 | ||
Tbr1 regulates differentiation of the preplate and layer 6. | Q32138516 | ||
Mesotocin and nonapeptide receptors promote estrildid flocking behavior | Q33821150 | ||
Developmental origin of the neuronal subtypes that comprise the amygdalar fear circuit in the mouse. | Q33899219 | ||
Sonic hedgehog expressing and responding cells generate neuronal diversity in the medial amygdala. | Q33942392 | ||
The inhibitory circuit architecture of the lateral hypothalamus orchestrates feeding | Q34039913 | ||
Pair bond formation is impaired by VPAC receptor antagonism in the socially monogamous zebra finch | Q34230832 | ||
The role of the amygdala in fear and anxiety | Q34401070 | ||
Corticotropin releasing factor: a key role in the neurobiology of addiction | Q34421204 | ||
Anatomical and neurochemical definition of the nucleus of the stria terminalis in Japanese quail (Coturnix japonica). | Q34472595 | ||
The evolution of cerebrotypes in birds | Q34555907 | ||
Oxytocin, vasopressin and pair bonding: implications for autism | Q34583424 | ||
Role of the bed nucleus of the stria terminalis versus the amygdala in fear, stress, and anxiety | Q35071515 | ||
New vistas on amygdala networks in conditioned fear | Q35814347 | ||
The therapeutic potential of CRF1 antagonists for anxiety | Q35814456 | ||
Wired for behaviors: from development to function of innate limbic system circuitry | Q35914998 | ||
Mapping of radial glia and of a new cell type in adult canary brain | Q36455211 | ||
Histogenetic compartments of the mouse centromedial and extended amygdala based on gene expression patterns during development | Q37028024 | ||
Two interconnected functional systems in the amygdala of amniote vertebrates. | Q37106777 | ||
Role of the extended amygdala in short-duration versus sustained fear: a tribute to Dr. Lennart Heimer | Q37182877 | ||
Oxytocin, vasopressin and sociality | Q37227032 | ||
Oxytocin, vasopressin, and the neurogenetics of sociality | Q37319197 | ||
Development and evolution of the pallium | Q37459303 | ||
Fear conditioning potentiates synaptic transmission onto long-range projection neurons in the lateral subdivision of central amygdala | Q37578428 | ||
Deconstructing sociality, social evolution and relevant nonapeptide functions | Q38071740 | ||
Social functions of individual vasopressin-oxytocin cell groups in vertebrates: what do we really know? | Q38210651 | ||
What can mice tell us about Foxp2 function? | Q38232451 | ||
Developmental stress predicts social network position | Q38914530 | ||
Differential coexpression of FoxP1, FoxP2, and FoxP4 in the Zebra Finch (Taeniopygia guttata) song system | Q39064897 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | histology | Q7168 |
P304 | page(s) | 481-514 | |
P577 | publication date | 2017-01-01 | |
P1433 | published in | Brain Structure and Function | Q13444883 |
P1476 | title | Genoarchitecture of the extended amygdala in zebra finch, and expression of FoxP2 in cell corridors of different genetic profile | |
P478 | volume | 222 |
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