Search results for "olfactory tubercle"

showing 10 items of 25 documents

Afferent and Efferent Connections of the Cortex-Amygdala Transition Zone in Mice

2016

The transitional zone between the ventral part of the piriform cortex and the anterior cortical nucleus of the amygdala, named the cortex-amygdala transition zone (CxA), shows two differential features that allow its identification as a particular structure. First, it receives dense cholinergic and dopaminergic innervations as compared to the adjacent piriform cortex and amygdala, and second, it receives projections from the main and accessory olfactory bulbs. In this work we have studied the pattern of afferent and efferent projections of the CxA, which are mainly unknown, by using the retrograde tracer Fluorogold and the anterograde tracer biotinylated dextranamine. The results show that …

0301 basic medicineOlfactory systemVomeronasal organSistema nerviós central MalaltiesEfferentNeuroscience (miscellaneous)OlfactevomeronasalPiriform cortexAmygdala03 medical and health sciencesCellular and Molecular Neurosciencepiriform cortex0302 clinical medicineNeural tracingPiriform cortexCortex (anatomy)medicineOriginal ResearchOlfactory tubercleAnatomyamygdalaNeuroanatomiaAmygdalaolfactoryVentral tegmental areaNeuroanatomy030104 developmental biologymedicine.anatomical_structurenervous systemAnatomyneural tracingPsychologyVomeronasalNeuroscience030217 neurology & neurosurgerypsychological phenomena and processesOlfactoryFrontiers in Neuroanatomy
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Terminal nerve in the mouse-eared bat (Myotis myotis): ontogenetic aspects.

2006

As in other mammals, ontogenesis of the terminal nerve (TN) in the mouse-eared bat (Myotis myotis) starts shortly after the formation of the olfactory placode, a derivative of the ectoderm. During development of the olfactory pit, proliferating neuroblasts thicken the placodal epithelium and one cell population migrates toward the rostroventral tip of the telencephalon. Here they accumulate in a primordial terminal ganglion, which successively divides into smaller units. Initial fibers of the TN can be distinguished from olfactory fibers in the mid-embryonic period. The main TN fiber bundle (mfb) originates from the anteriormost ganglion in the nasal roof, whereas one or more inconstant sma…

AgingPopulationEctodermMyotis myotisNoseChiropteramedicineAnimalseducationCell ProliferationCell SizeNeuronseducation.field_of_studybiologyCerebrumOlfactory tubercleCranial NervesCell DifferentiationAnatomyOlfactory Pathwaysbiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)Olfactory BulbOlfactory bulbGanglionmedicine.anatomical_structureTerminal nerveAnatomyThe anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology
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GABAergic basal forebrain afferents innervate selectively GABAergic targets in the main olfactory bulb

2010

In this work we have analyzed the targets of the GABAergic afferents to the main olfactory bulb originating in the basal forebrain of the rat. We combined anterograde tracing of 10 kD biotinylated dextran amine (BDA) injected in the region of the horizontal limb of the diagonal band of Broca that projects to the main olfactory bulb, with immunocytochemical detection of GABA under electron microscopy or vesicular GABA transporter (vGABAt) under confocal fluorescent microscopy. GABAergic afferents were identified as double labeled BDA-GABA boutons. Their targets were identified by their ultrastructure and GABA content. We found that GABAergic afferents from the basal forebrain were distribute…

MaleOlfactory systemVesicular Inhibitory Amino Acid Transport ProteinsPeriglomerular cellOlfactionBiologyProsencephalonNeural PathwaysmedicineAnimalsNeurons AfferentRats Wistargamma-Aminobutyric AcidBasal forebrainGeneral NeuroscienceOlfactory tubercleGranule cellOlfactory BulbRatsOlfactory bulbNeuroanatomical Tract-Tracing Techniquesmedicine.anatomical_structurenervous systemGABAergicFemaleNeuroscienceNeuroscience
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Vomeronasal inputs to the rodent ventral striatum.

2008

Vertebrates sense chemical signals through the olfactory and vomeronasal systems. In squamate reptiles, which possess the largest vomeronasal system of all vertebrates, the accessory olfactory bulb projects to the nucleus sphericus, which in turn projects to a portion of the ventral striatum known as olfactostriatum. Characteristically, the olfactostriatum is innervated by neuropeptide Y, tyrosine hydroxylase and serotonin immunoreactive fibers. In this study, the possibility that a structure similar to the reptilian olfactostriatum might be present in the mammalian brain has been investigated. Injections of dextran-amines have been aimed at the posteromedial cortical amygdaloid nucleus (th…

MaleSerotoninVomeronasal organTyrosine 3-MonooxygenasePheromoneBiotinBiologyNucleus accumbensSubstance PBasal GangliaVentral pallidumRats Sprague-DawleyMicemedicineAnimalsNeuropeptide YAfferent PathwaysTyrosine hydroxylaseGeneral NeuroscienceOlfactory tubercleVentral striatumDextransAnatomyAmygdalaFluoresceinsRatsMice Inbred C57BLAnterograde tracingmedicine.anatomical_structureIslands of CallejaFemaleTyrosine hydroxylaseVomeronasal OrganNeuroscienceBrain research bulletin
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Convergence of olfactory and vomeronasal projections in the rat basal telencephalon

2007

Olfactory and vomeronasal projections have been traditionally viewed as terminating in contiguous non-overlapping areas of the basal telencephalon. Original reports, however, described areas such as the anterior medial amygdala where both chemosensory afferents appeared to overlap. We addressed this issue by injecting dextran amines in the main or accessory olfactory bulbs of rats and the results were analyzed with light and electron microscopes. Simultaneous injections of different fluorescent dextran amines in the main and accessory olfactory bulbs were performed and the results were analyzed using confocal microscopy. Similar experiments with dextran amines in the olfactory bulbs plus Fl…

MaleTelencephalonOlfactory systemVomeronasal organBiologyAmygdalaRats Sprague-DawleyOlfactory MucosamedicineAnimalsNeurons AfferentBrain MappingCerebrumGeneral NeuroscienceOlfactory tubercleOlfactory PathwaysAnatomyOlfactory BulbRetrograde tracingChemoreceptor CellsRatsStria terminalismedicine.anatomical_structurenervous systemFemaleSeptal NucleiVomeronasal OrganNeuroscienceOlfactory tractThe Journal of Comparative Neurology
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Gene Transcription Alterations Associated with Decrease of Ethanol Intake Induced by Naltrexone in the Brain of Wistar Rats

2006

Preclinical and clinical studies suggest that the administration of the opioid antagonist naltrexone decreases the intake of ethanol. However, the neuroplastic adaptations in the brain associated to reduction of ethanol consumption remains to be elucidated. The aim of the study was to identify gene transcription alterations underlying the attenuation of voluntary ethanol intake by administration of naltrexone in rats. Increasing doses of naltrexone (0.7 mg/kg, 4 days and 1.4 mg/kg/day, 4 days) to rats with acquired high preferring ethanol consumption (>3.5 g of ethanol/kg/day) decreased voluntary ethanol intake (50%). Voluntary ethanol consumption altered mu-opioid receptor function in the …

Malemedicine.medical_specialtyAlcohol DrinkingTranscription Geneticmedicine.drug_classNarcotic AntagonistsNucleus accumbensPharmacologyNaltrexoneInternal medicineImage Processing Computer-AssistedmedicineAnimalsRats WistarOpioid peptideIn Situ HybridizationBrain ChemistryPharmacologyEthanolTyrosine hydroxylaseChemistryOlfactory tubercleCentral Nervous System DepressantsEnkephalin Ala(2)-MePhe(4)-Gly(5)-NaltrexoneRatsAnalgesics OpioidVentral tegmental areaPsychiatry and Mental healthmedicine.anatomical_structureEndocrinologynervous systemGuanosine 5'-O-(3-Thiotriphosphate)HypothalamusAutoradiographyOpioid antagonistmedicine.drugNeuropsychopharmacology
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Effect of sertraline treatment on benzodiazepine receptors in the rat brain.

1993

In this paper we describe the modification of benzodiazepine (BDZ) binding sites in the rat brain after different times of treatment with the 5-hydroxytryptamine-(5HT) uptake blocker sertraline. We investigated the effect of 8, 15 and 30 days sertraline treatment (10 mg/kg/day, i.p.) on 3 H-flunitrazepam binding sites. In order to describe the anatomical site of action of the drug, the experiment has been carried out by means of quantitative receptor autoradiography. After 8 days of sertraline treatment, an increase of BDZ receptor density is found in the olfactory tubercle. This effect is reversed at 15 and 30 days. At 15 days of treatment, an increase is found in the anterior cingulate co…

Malemedicine.medical_specialtymedicine.drug_classRats Sprague-DawleyInternal medicineSertralinemedicineLimbic SystemAnimalsReceptorBiological Psychiatry5-HT receptorBrain ChemistryCerebral CortexBenzodiazepineSertralineBehavior AnimalGABAA receptorChemistryOlfactory tubercleBody WeightSeptal nucleiOlfactory PathwaysReceptors GABA-AAntidepressive AgentsRatsPsychiatry and Mental healthmedicine.anatomical_structureEndocrinology1-NaphthylamineNeurologyAnti-Anxiety AgentsCerebral cortexNeurology (clinical)Selective Serotonin Reuptake Inhibitorsmedicine.drugJournal of neural transmission. General section
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Afferent and efferent connections of the olfactory bulbs in the lizard Podarcis hispanica.

1991

The connections of the olfactory bulbs of Podarcis hispanica were studied by tract-tracing of injected horseradish peroxidase. Restricted injections into the main olfactory bulb (MOB) resulted in bilateral terminallike labeling in the medial part of the anterior olfactory nucleus (AON) and in the rostral septum, lateral cortex, nucleus of the lateral olfactory tract, and ventrolateral amygdaloid nucleus. Bilateral retrograde labeling was found in the rostral lateral cortex and in the medial and dorsolateral AON. Ipsilaterally the dorsal cortex, nucleus of the diagonal band, lateral preoptic area, and dorsolateral amygdala showed labeled cell bodies. Retrogradely labeled cells were also foun…

Olfactory systemAfferent PathwaysVomeronasal organGeneral NeuroscienceOlfactory tubercleBrainLizardsAnatomyBiologyAmygdalaAxonal TransportEfferent PathwaysOlfactory BulbFunctional LateralityOlfactory bulbAnterior olfactory nucleusStria terminalisDorsal raphe nucleusnervous systemAnimalsNeuroscienceHorseradish PeroxidaseOlfactory tractThe Journal of comparative neurology
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Neural substrates for processing chemosensory information in snakes.

2002

Snakes interact with their chemical environment through their olfactory and vomeronasal systems. The present report summarizes advances on neural substrates for processing chemosensory information. First, the efferent and centrifugal afferent connections of the main and accessory olfactory bulbs were reinvestigated. Second, the afferent and efferent connections of the nucleus sphericus, the main target of the accessory olfactory bulb, were characterized. The nucleus sphericus gives rise to a very small projection to the hypothalamus, but it does project to other telencephalic structures where olfactory and vomeronasal information could converge. Third, the intra-amygdaloid circuitry and the…

Olfactory systemHypoglossal NerveVomeronasal organHypoglossal nucleusCerebrumGeneral NeuroscienceEfferentOlfactory tubercleHypothalamusSnakesBiologyAmygdalaOlfactory BulbSynaptic TransmissionChemoreceptor Cellsmedicine.anatomical_structureHypothalamusmedicineAnimalsNervous System Physiological PhenomenaVomeronasal OrganNeuroscienceBrain research bulletin
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Projections from the posterolateral olfactory amygdala to the ventral striatum: neural basis for reinforcing properties of chemical stimuli

2007

Abstract Background Vertebrates sense chemical stimuli through the olfactory receptor neurons whose axons project to the main olfactory bulb. The main projections of the olfactory bulb are directed to the olfactory cortex and olfactory amygdala (the anterior and posterolateral cortical amygdalae). The posterolateral cortical amygdaloid nucleus mainly projects to other amygdaloid nuclei; other seemingly minor outputs are directed to the ventral striatum, in particular to the olfactory tubercle and the islands of Calleja. Results Although the olfactory projections have been previously described in the literature, injection of dextran-amines into the rat main olfactory bulb was performed with …

Olfactory systemMaleBiologyAmygdalalcsh:RC321-571Rats Sprague-DawleyCellular and Molecular NeuroscienceChemical stimulimedicineAnimalslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryNeuronsOlfactory receptorGeneral NeuroscienceOlfactory tuberclelcsh:QP351-495Ventral striatumOlfactory PathwaysAmygdalaCorpus StriatumOlfactory bulbRatslcsh:Neurophysiology and neuropsychologymedicine.anatomical_structurenervous systemIslands of CallejaFemaleNeuroscienceResearch Article
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