Search results for "OLFACTORY"

showing 10 items of 319 documents

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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Early-blind individuals show impaired performance in wine odor categorization

2018

International audience; Blind individuals display superior sensory abilities in other modalities, yet results remain contradictory regarding their performance on olfactory tasks. Using complex ecological olfactory tasks, we evaluated the impact of blindness on olfactory performance. We tested 12 early-blind individuals (M = 49, SD = 13.09) and 12 sighted controls (M = 49, SD = 14.31) who were all blindfolded. Based solely on the wine odors, participants evaluated 24 pairs of wine and determined if both samples belonged to the same category (red wine, white wine, or rosé wine) or not (odor categorization), and if so, whether they were identical or not (odor differentiation). Then, they had t…

MaleSignal Detection PsychologicalTime FactorsWineAudiologyBlindness0302 clinical medicinevinGeneral Neuroscience05 social sciencesdigestive oral and skin physiology[SDV.NEU.SC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive Sciencesfood and beveragesMiddle AgedSmellCategorizationcatégorisation alimentaireAlimentation et NutritionEarly-blindFemalePsychologypsychological phenomena and processesolfactionAdultmedicine.medical_specialtyceciteSensory systemOlfactionOdor categorization050105 experimental psychologyYoung Adult03 medical and health sciencesmedicineHumansFood and Nutrition0501 psychology and cognitive sciencesAgedWineWhite (horse)Blindnessperception des odeursNeurosciencesblindness;early-blind;wine odors;olfaction;odor perception;odor categorizationOlfactory Perceptionmedicine.diseaseOdor perceptionWine odorsOdorWhite WineNeurons and CognitionOdorants[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgery
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Novel Potent Anticonvulsant Agent Containing a Tetrahydroisoquinoline Skeleton

2006

In our studies on the development of new anticonvulsants, we planned the synthesis of N-substituted 1,2,3,4-tetrahydroisoquinolines to explore the structure-activity relationships. All derivatives were evaluated against audiogenic seizures in DBA/2 mice, and the 1-(4'-bromophenyl)-6,7-dimethoxy-2-(piperidin-1-ylacetyl) derivative (26) showed the highest activity with a potency comparable to that of talampanel, the only noncompetitive alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) antagonist in clinical trials as an anticonvulsant agent. Electrophysiological experiments indicated that 26 acts as noncompetitive AMPA receptor modulator.

MaleStereochemistrymedicine.medical_treatmentAMPA receptorIn Vitro TechniquesChemical synthesisMiceStructure-Activity Relationshipchemistry.chemical_compoundPiperidinesSeizuresTetrahydroisoquinolinesAMPADrug DiscoverymedicineAnimalsPotencyReceptors AMPARats WistarTalampanelTetrahydroisoquinolineAntagonistAMPA; Isoquinolines; anticonvulsantsOlfactory PathwaysIsoquinolinesRatsAnticonvulsant AgentAnticonvulsantAcoustic StimulationchemistryMice Inbred DBAMolecular MedicineAnticonvulsants
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Postnatal neurogenesis in the telencephalon of turtles: evidence for nonradial migration of new neurons from distant proliferative ventricular zones …

1997

Postnatal neurogenesis in the the turtle telencephalon was investigated by using bromodeoxyuridine immunocytochemistry and [3H]thymidine autoradiography. Red-eared slider turtles Trachemys scripta elegans (Cryptodira, Emydidae) 2-3 months old were injected with the thymidine analogue 5'-bromodeoxyuridine (BrdU) and allowed to survive for 7, 30, 90, and 180 days. Results indicate that cells in the walls of the lateral ventricles continue to proliferate postnatally. Shortly after BrdU treatment (seven days) most labelled cells were found in the walls of the lateral ventricles (ventricular zone: VZ). Labelled cells were particularly abundant in and around the ventricular sulci. The same patter…

MaleTelencephalonCryptodiraTime FactorsAntimetabolitesImmunocytochemistryCell CountEmydidaeBiologyCerebral VentriclesAndrologyLateral ventricleschemistry.chemical_compoundDevelopmental NeuroscienceCell MovementmedicineAnimalsNeuronsCerebrumTurtle (syntax)Anatomybiology.organism_classificationImmunohistochemistryOlfactory BulbTurtlesMicroscopy Electronmedicine.anatomical_structurenervous systemchemistryBromodeoxyuridineFemaleThymidineBromodeoxyuridineDevelopmental BiologyThymidineBrain research. Developmental brain research
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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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Migration of Neuronal Precursors From the Telencephalic Ventricular Zone Into the Olfactory Bulb in Adult Zebrafish

2011

In the brain of adult mammals, neuronal precursors are generated in the subventricular zone in the lateral wall of the lateral ventricles and migrate into the olfactory bulbs (OBs) through a well-studied route called the rostral migratory stream (RMS). Recent studies have revealed that a comparable neural stem cell niche is widely conserved at the ventricular wall of adult vertebrates. However, little is known about the migration route of neuronal precursors in nonmammalian adult brains. Here, we show that, in the adult zebrafish, a cluster of neuronal precursors generated in the telencephalic ventricular zone migrates into the OB via a route equivalent to the mammalian RMS. Unlike the mamm…

MaleTelencephalonRostral migratory streamNeurogenesisSubventricular zoneBiologyAnimals Genetically Modifiedblood vesselsLateral ventriclesrostral migratory streamventricular zoneCell MovementLateral VentriclesmedicineAnimalsZebrafishZebrafishNeuronsneuronal migrationCerebrumStem CellsGeneral NeuroscienceNeurogenesisfungiAge Factorsbiology.organism_classificationzebrafishOlfactory BulbNeural stem cellOlfactory bulbadult neurogenesismedicine.anatomical_structurenervous systemFemaleNeuroscience
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Long-term habituation to spatial novelty in blind cave fish (Astyanax hubbsi): role of the telencephalon and its subregions.

2000

Blind cave fish, when released into a novel environment, show a typical exploratory behavior characterized by high swim speed along walls shortly after release. This behavior wanes during prolonged exposure and thus may reflect habituation to novelty. As the hippocampus of mammals, which plays a crucial role in spatial learning, is part of the telencephalon, the possible involvement of this brain structure of fish was investigated in exploratory behavior. Ablation of the whole telencephalon or bilateral removal of dorsal parts of the hemispheres reduced activity; in contrast, unilateral lesions of one hemisphere, bilateral lesions of dorsal and dorsoventral parts, and removal of olfactory b…

MaleTelencephalonTime FactorsCognitive NeuroscienceHippocampusBiologyArousalCellular and Molecular NeuroscienceCavemedicineAnimalsHabituationHabituation PsychophysiologicgeographyAstyanax hubbsiCommunicationgeography.geographical_feature_categoryBehavior AnimalCerebrumbusiness.industryfungiFishesNoveltyOlfactory BulbNeuropsychology and Physiological Psychologymedicine.anatomical_structurenervous systemExploratory BehaviorFish <Actinopterygii>FemalebusinessNeuroscienceLearning &amp; Memory
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Olfactory discrimination ability and brain expression of c-fos, Gir and Glut1 mRNA are altered in n-3 fatty acid-depleted rats

2007

Abstract The long-chain polyunsaturated n  − 3 fatty acids ( n  − 3 PUFA), particularly docosahexaenoic acid (DHA), are abundantly present in the central nervous system and play an important role in cognitive functions such as learning and memory. We, therefore, investigated the effects of n  − 3 PUFA-depletion in rats (F2 generation) on the learning of an olfactory discrimination task, progressively acquired within a four-arm maze, and on the mRNA expression of some candidate genes, i.e., c-fos, Gir and glucose transporter (Glut1), which could reflect the level of cerebral activity. We observed that DHA contents were dramatically decreased in the olfactory bulb, the piriform cortex and the…

MaleTime Factors[SDV]Life Sciences [q-bio]OLFACTORY LEARNINGReceptors G-Protein-CoupledDiscrimination LearningBehavioral Neuroscience0302 clinical medicineDiscrimination PsychologicalPiriform cortexBRAINDiet Fat-Restricted0303 health sciencesGlucose Transporter Type 1NeocortexBehavior AnimalGIRReverse Transcriptase Polymerase Chain ReactionSmellmedicine.anatomical_structureBiochemistryDocosahexaenoic acidN−3 DEFICIENCYOlfactory LearningProto-Oncogene Proteins c-fosmedicine.medical_specialtyN-3 PUFAC-FOSCentral nervous systemOlfactionBiologyAPPRENTISSAGE03 medical and health sciencesInternal medicineFatty Acids Omega-3medicineAnimalsRNA MessengerRats WistarUnsaturated fatty acid030304 developmental biologyAnalysis of VarianceBody WeightDOCOSAHEXAENOIC ACIDOlfactory bulbRatsEndocrinologyGene Expression RegulationRAT030217 neurology & neurosurgeryGLUT1
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Characterization of a population of tyrosine hydroxylase-containing interneurons in the external plexiform layer of the rat olfactory bulb

2012

The olfactory bulb (OB) of mammals contains the major endogenous dopamine-producing system in the forebrain. The vast majority of dopaminergic neurons consists of juxtaglomerular cells, which innervate the olfactory glomeruli and modulate the entrance of sensory information to the OB. Although dopaminergic juxtaglomerular cells have been widely investigated, the presence of dopaminergic interneurons other than juxtaglomerular cells has been largely unexplored. In this study, we analyze a population of tyrosine hydroxylase (TH)-containing interneurons located in the external plexiform layer (EPL) of the rat OB. These interneurons are GABAergic and morphologically heterogeneous. They have an …

MaleTyrosine 3-MonooxygenasePopulationOlfactionBiologyInterneuronsPostsynaptic potentialmedicineAnimalsRats WistarAxoneducationgamma-Aminobutyric Acideducation.field_of_studyGeneral NeuroscienceDopaminergicDendritesOlfactory BulbRatsOlfactory bulbParvalbuminsmedicine.anatomical_structurenervous systemSynapsesForebrainGABAergicNeuroscienceNeuroscience
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Sexual dimorphism in the vomeronasal system of the rabbit.

2006

Abstract Studies have shown that the vomeronasal system (VNS), an olfactory neural network that participates in the control of reproductive physiology and behavior, is sexually dimorphic in the rat. These works have also shown two main characteristics of brain sexual dimorphism: (a) dimorphism appears in neural networks related to reproduction and (b) it can present two morphological patterns: one in which males present greater morphological measures than females (male > female) and another in which the opposite is true (female > male). The present work extends the hypothesis to the rabbit, as a representative species of Lagomorpha. In addition, the locus coeruleus (LC), which is known to s…

MaleVomeronasal organCell CountBiologyAmygdalaStatistics NonparametricmedicineAnimalsMolecular BiologyNeuronsSex CharacteristicsLagomorphaGeneral NeuroscienceAnatomyOlfactory Pathwaysbiology.organism_classificationSexual dimorphismStria terminalismedicine.anatomical_structureLocus coeruleusFemaleNeurology (clinical)RabbitsNerve NetVomeronasal OrganNucleusDevelopmental BiologyOlfactory tractBrain research
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