Search results for "Olfactory Pathways"

showing 10 items of 33 documents

Efferent connections of the "olfactostriatum": a specialized vomeronasal structure within the basal ganglia of snakes.

2005

Abstract The olfactostriatum is a portion of the basal ganglia of snakes that receives substantial vomeronasal afferents through projections from the nucleus sphericus. In a preceding article, the olfactostriatum of garter snakes (Thamnophis sirtalis) was characterized on the basis of chemoarchitecture (distribution of serotonin, neuropeptide Y and tyrosine hydroxylase) and pattern of afferent connections [Martinez-Marcos, A., Ubeda-Banon, I., Lanuza, E., Halpern, M., 2005. Chemoarchitecture and afferent connections of the “olfactostriatum”: a specialized vomeronasal structure within the basal ganglia of snakes. J. Chem. Neuroanat. 29, 49–69]. In the present study, its efferent connections …

MaleHypoglossal nucleusHypothalamus PosteriorBiotinBiologyNucleus accumbensAmygdalaEfferent PathwaysBasal GangliaNucleus AccumbensVentral pallidumCellular and Molecular NeuroscienceBasal gangliamedicineAnimalsRhodaminesColubridaeDextransAnatomyOlfactory PathwaysAmygdalaVentral tegmental areaSmellStria terminalismedicine.anatomical_structureFemaleFluoresceinVomeronasal OrganRaphe nucleiNeuroscienceJournal of chemical neuroanatomy
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Cue valence representation studied by Fos immunocytochemistry after acquisition of a discrimination learning task.

2003

The piriform cortex (PCx) and related structures such as hippocampus and frontal cortex could play an important role in olfactory memory. We investigated their involvement in learning the biological value of an odor cue, i.e. predicting reward or non-reward in a two-odor discrimination task. Rats were sacrificed after stimulation by either rewarded or non-rewarded odor and Fos immunocytochemistry was performed. The different experimental groups of rats did not show strongly differentiated Fos expression pattern in either the PCx or the hippocampus. A few differences were noted in frontal areas. In the ventro-lateral orbital cortex, rats, ramdomly rewarded during the conditionning had a high…

MaleInfralimbic cortexStimulationCell CountHippocampusDiscrimination LearningPiriform cortexmedicineAnimalsDiscrimination learningValence (psychology)Olfactory memoryRats WistarMaze LearningCerebral CortexNeuronsBehavior AnimalGeneral NeuroscienceOlfactory PathwaysImmunohistochemistryRatsSmellmedicine.anatomical_structureOdorGene Expression RegulationConditioning OperantOlfactory LearningCuesPsychologyNeuroscienceProto-Oncogene Proteins c-fospsychological phenomena and processesBrain research bulletin
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Olfactory bulbectomy, but not odor conditioned aversion, induces the differentiation of immature neurons in the adult rat piriform cortex.

2011

International audience; The piriform cortex layer II of young-adult rats presents a population of prenatally generated cells, which express immature neuronal markers, such as the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) or doublecortin (DCX), and display structural characteristics of immature neurons. The number of PSA-NCAM/DCX expressing cells in this region decreases markedly as age progresses, suggesting that these cells differentiate or die. Since the piriform cortex receives a major input from the olfactory bulb and participates in olfactory information processing, it is possible that the immature neurons in layer II are affected by manipulations of the olfac…

MaleMESH: Cell DifferentiationMESH: Neural Stem CellsMESH: Olfactory BulbDoublecortin ProteinMESH: RatsNeurogenesisMESH : MaleMESH : Neurogenesis[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH : Rats WistarNeural Stem CellsPiriform cortexAnimalsMESH: AnimalsRats WistarOlfactory memoryMESH : Olfactory BulbbiologyMESH : Olfactory PathwaysMESH : RatsGeneral NeuroscienceNeurogenesisCell DifferentiationOlfactory PathwaysMESH: Rats WistarOlfactory BulbMESH: MaleRatsOlfactory bulbDoublecortinMESH: Neurogenesisnervous systemMESH : Neural Stem Cellsbiology.proteinNeural cell adhesion moleculeOlfactory ensheathing gliaMESH : AnimalsNeuNNeuroscienceMESH : Cell Differentiation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH: Olfactory Pathways
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Expression of Fos in the piriform cortex after acquisition of olfactory learning: An immunohistochemical study in the rat

2001

The piriform cortex (PCx), the main area of the primary olfactory cortex, is assumed to play a role in olfactory memory. Involvement of this paleocortex in mnesic processes was investigated by using Fos immunocytochemistry after acquisition of a two-odor discrimination task. Trained rats had to associate one odor of a pair with water reward while pseudo-trained rats were randomly rewarded. We further used non-trained rats and home cage control animals to determine the effect of manipulation and basal Fos level respectively. Except in control rats, Fos immunoreactivity was mainly distributed in brain areas involved in olfactory processing, learning and arousal. The trained, pseudo-trained, a…

MaleNeuronsOlfactory systemBehavior AnimalGeneral NeuroscienceCentral nervous systemImmunocytochemistryOlfactory PathwaysOlfactionImmunohistochemistryRatsDiscrimination LearningSmellPrimary olfactory cortexmedicine.anatomical_structurePiriform cortexmedicineAnimalsConditioning OperantRats WistarOlfactory LearningOlfactory memoryPsychologyProto-Oncogene Proteins c-fosNeuroscienceBrain Research Bulletin
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The endocannabinoid system controls food intake via olfactory processes

2014

Comment in Sensory systems: the hungry sense. [Nat Rev Neurosci. 2014] Inhaling: endocannabinoids and food intake. [Nat Neurosci. 2014]; International audience; Hunger arouses sensory perception, eventually leading to an increase in food intake, but the underlying mechanisms remain poorly understood. We found that cannabinoid type-1 (CB1) receptors promote food intake in fasted mice by increasing odor detection. CB1 receptors were abundantly expressed on axon terminals of centrifugal cortical glutamatergic neurons that project to inhibitory granule cells of the main olfactory bulb (MOB). Local pharmacological and genetic manipulations revealed that endocannabinoids and exogenous cannabinoid…

MaleOlfactory systemMESH: Olfactory PerceptionCannabinoid receptorMESH: Feedback Physiological[SDV]Life Sciences [q-bio]medicine.medical_treatmentMESH: Cannabinoid Receptor AgonistsMESH: EndocannabinoidsMESH: Receptor Cannabinoid CB1Synaptic TransmissionMESH: Mice KnockoutMESH: EatingEatingMiceOlfactory bulbReceptor Cannabinoid CB1MESH: AnimalsFeedback PhysiologicalMice Knockoutmusculoskeletal neural and ocular physiologyGeneral Neurosciencedigestive oral and skin physiologyOlfactory PathwaysEndocannabinoid systemMESH: Feeding Behaviorlipids (amino acids peptides and proteins)psychological phenomena and processesMESH: Olfactory BulbBiologyInhibitory postsynaptic potentialGlutamatergicMESH: Mice Inbred C57BLMESH: Synaptic TransmissionmedicineAnimalsMESH: MiceCannabinoid Receptor AgonistsFeeding BehaviorOlfactory PerceptionMESH: MaleOlfactory bulbMice Inbred C57BLnervous systemOdorFeeding behaviourCannabinoid[SDV.AEN]Life Sciences [q-bio]/Food and NutritionNeuroscienceMESH: Olfactory PathwaysEndocannabinoidsNature Neuroscience
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Peripheral, central and behavioral responses to the cuticular pheromone bouquet in Drosophila melanogaster males.

2011

International audience; Pheromonal communication is crucial with regard to mate choice in many animals including insects. Drosophila melanogaster flies produce a pheromonal bouquet with many cuticular hydrocarbons some of which diverge between the sexes and differently affect male courtship behavior. Cuticular pheromones have a relatively high weight and are thought to be -- mostly but not only -- detected by gustatory contact. However, the response of the peripheral and central gustatory systems to these substances remains poorly explored. We measured the effect induced by pheromonal cuticular mixtures on (i) the electrophysiological response of peripheral gustatory receptor neurons, (ii) …

MaleOlfactory systemTasteAnatomy and PhysiologyINSECTSPERIPHERAL GUSTATORY RECEPTOR NEURONSlcsh:MedicinePheromonesAnimals Genetically ModifiedBehavioral Neuroscience0302 clinical medicineTaste receptorCUTICULAR PHEROMONE BOUQUETANOSMIC MALESlcsh:Science0303 health sciencesMultidisciplinaryBehavior AnimalbiologyBrainAnimal ModelsNeuroethologyOlfactory PathwaysAnatomyMUTANT DESAT1 MALESElectrophysiologyMate choiceMALESTasteSex pheromonePheromoneSensory PerceptionFemaleDROSOPHILA MELANOGASTER[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Drosophila melanogasterResearch Articlemedicine.medical_specialtyEndocrine SystemPHEROMONAL COMMUNICATION03 medical and health sciencesModel OrganismsInternal medicinemedicineAnimalsBiologyCUTICULAR HYDROCARBONS030304 developmental biologyEndocrine PhysiologyCourtship displaylcsh:Rbiology.organism_classificationPHEROMONAL PERCEPTIONEndocrinologyGUSTATORY CONTACT[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]CALCIUM VARIATIONDROSOPHILA MELANOGASTER;MALES;CUTICULAR PHEROMONE BOUQUET;PHEROMONAL COMMUNICATION;INSECTS;CUTICULAR HYDROCARBONS;GUSTATORY CONTACT;PERIPHERAL GUSTATORY RECEPTOR NEURONS;CALCIUM VARIATION;MUTANT DESAT1 MALES;ANOSMIC MALES;PHEROMONAL PERCEPTIONCalciumlcsh:Q030217 neurology & neurosurgeryNeuroscience
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Brain processing of the mammary pheromone in newborn rabbits.

2011

International audience; Chemosignals strongly contribute to social interactions in mammals, including mother-young relationships. In the European rabbit, a volatile compound emitted by lactating females in milk, the 2-methylbut-2-enal, has been isolated. Carrying the properties of a pheromone, in particular the spontaneous ability to release critical sucking-related movements in newborns, it has been called the mammary pheromone (MP). Lesion of the vomeronasal organ and preliminary 2-deoxyglucose data suggested that the MP could be processed by the main olfactory system. However, the neuronal substrate that sustains the MP-induced response of neonates remained unknown. Here, we evaluated Fo…

MaleOlfactory systemVomeronasal organ[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH: NeuronsMESH: RabbitsPheromonesMESH : PheromonesMESH: Animals NewbornThirstMESH: Vomeronasal OrganBehavioral Neuroscience0302 clinical medicinePiriform cortexMESH : HabenulaMESH : FemaleMESH: AnimalsMESH : Olfactory BulbNeurons0303 health sciencesMESH: PheromonesLamina terminalisMESH: Proto-Oncogene Proteins c-fosMESH : Animals NewbornOlfactory PathwaysOlfactory BulbHabenulamedicine.anatomical_structureMESH: HabenulaPheromoneFemaleRabbitsVomeronasal Organmedicine.symptomProto-Oncogene Proteins c-fosMESH: Olfactory Bulbmedicine.medical_specialtyMESH : HypothalamusMESH : Vomeronasal OrganMESH : MaleHypothalamusBiologyMESH : Neurons03 medical and health sciencesInternal medicinemedicineAnimalsMESH : Rabbits030304 developmental biologyHabenulaMESH : Olfactory PathwaysNewbornMESH: HypothalamusMESH: MaleOlfactory bulbEndocrinologyMESH : Proto-Oncogene Proteins c-fosAnimals NewbornMESH : AnimalsMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryMESH: Olfactory Pathways
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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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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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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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