Search results for "olfactory"

showing 10 items of 319 documents

Dendritic pattern development of the honeybee antennal lobe neurons: a laser scanning confocal microscopic study

1999

The processing of odorant signals is performed, in the olfactory bulb of vertebrates or in the antennal lobe of insects, by different types of neurons which display specific morphological and functional features. The present work characterizes the morphogenesis of the main neuronal types which participate in olfactory discrimination in the adult honeybee (Apis mellifera). Neurons were stained intracellularly with Lucifer yellow at different stages of pupal development and in the adult, and imaged by laser scanning confocal microscopy. Attending to branching patterns, all pupal neurons could be attributed to morphological types previously established in the adult. Given the functional import…

Glomerulus (olfaction)Lucifer yellowanimal structuresGeneral Neurosciencemedia_common.quotation_subjectConfocalfungiMorphogenesisInsectOlfactionBiologyOlfactory bulbCellular and Molecular Neurosciencechemistry.chemical_compoundmedicine.anatomical_structurenervous systemchemistrymedicineAntennal lobeNeurosciencemedia_commonJournal of Neurobiology
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Ligand binding study revealing a human olfactory receptor involved in waxy-floral odor perception

2006

International audience

HUMAN OLFACTORY PERCEPTION[CHIM.OTHE] Chemical Sciences/OtherOLFACTORY CODINGODORANT RECEPTION[CHIM.OTHE]Chemical Sciences/OtherCALCIUM IMAGINGComputingMilieux_MISCELLANEOUS3D-QSAR
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3D-QSAR study of ligands for a human olfactory receptor

2005

Abstract Only about 350 olfactory receptors (OR) provide a basis for the remarkable ability of humans to recognise and discriminate a large number of odorants. A recent study reports the odorant repertoire of a human class II OR called OR1G1, including both agonists and antagonists. We used these affinity data to perform a 3D molecular modelling study of these ligands using Catalyst/HypoGen software (Catalyst v4.9.1, Accelrys Inc., San Diego, 2004) to propose alignment models for OR1G1 ligands. We obtained a triple-alignment model, which satisfactorily explained the experimental activities and was able both to predict the antagonist effects of some compounds and to identify new potent agoni…

HUMAN OLFACTORY RECEPTOR0303 health sciencesQuantitative structure–activity relationshipOlfactory receptorStereochemistry[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV]Life Sciences [q-bio]AntagonistBiology[SDV.IDA] Life Sciences [q-bio]/Food engineering[INFO] Computer Science [cs][SDV] Life Sciences [q-bio]03 medical and health sciences0302 clinical medicinemedicine.anatomical_structure[SDV.IDA]Life Sciences [q-bio]/Food engineeringmedicine[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering[INFO]Computer Science [cs]LIGANDReceptor030217 neurology & neurosurgeryComputingMilieux_MISCELLANEOUS030304 developmental biology
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A human olfactory receptor for waxy, fatty and rose odors

2008

International audience

HUMAN OLFACTORY RECEPTOR[CHIM.OTHE] Chemical Sciences/OtherROSE ODORSWAXY ODORSFATTY ODORS[CHIM.OTHE]Chemical Sciences/OtherComputingMilieux_MISCELLANEOUS
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3D-QSAR study of ligands for two human olfactory receptors

2007

National audience

HUMAN OLFACTORY RECEPTOR[SDV] Life Sciences [q-bio]AGONISTODORANT[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV]Life Sciences [q-bio][SDV.IDA]Life Sciences [q-bio]/Food engineeringMOLECULAR MODELLING[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering[INFO]Computer Science [cs][SDV.IDA] Life Sciences [q-bio]/Food engineering[INFO] Computer Science [cs]ComputingMilieux_MISCELLANEOUS
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Functional characterization of two human olfactory receptors expressed in the baculovirus Sf9 insect cell system

2005

Olfactory receptors (ORs) are the largest member of the G-protein-coupled receptors which mediate early olfactory perception in discriminating among thousands of odorant molecules. Assigning odorous ligands to ORs is a prerequisite to gaining an understanding of the mechanisms of odorant recognition. The functional expression of ORs represents a critical step in addressing this issue. Due to limitations in heterologous expression, very few mammal ORs have been characterized, and so far only one is from human origin. Consequently, OR function still remains poorly understood, especially in humans, whose genome encodes a restricted chemosensory repertoire compared with most mammal species. In …

InsectaPhysiologyG protein[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringSf9BiologyOlfactory Receptor NeuronsCell LineReceptors G-Protein-Coupled03 medical and health sciencesBehavioral Neuroscience0302 clinical medicineCalcium imagingPhysiology (medical)[SDV.IDA]Life Sciences [q-bio]/Food engineeringmedicineAnimalsHumans[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringReceptorComputingMilieux_MISCELLANEOUS030304 developmental biologyG protein-coupled receptorOrphan receptor0303 health sciencesMicroscopy ConfocalOlfactory receptorGenomics[SDV.IDA] Life Sciences [q-bio]/Food engineeringGTP-Binding Protein alpha SubunitsSensory SystemsCell biologyINSECTEmedicine.anatomical_structureOdorantsImmunologyCalcium[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Heterologous expressionBaculoviridae030217 neurology & neurosurgery
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PSA-NCAM is expressed in immature, but not recently generated, neurons in the adult cat cerebral cortex layer II

2011

Neuronal production persists during adulthood in the dentate gyrus and the olfactory bulb, where substantial numbers of immature neurons can be found. These cells can also be found in the paleocortex layer II of adult rodents, but in this case most of them have been generated during embryogenesis. Recent reports have described the presence of similar cells, with a wider distribution, in the cerebral cortex of adult cats and primates and have suggested that they may develop into interneurons. The objective of this study is to verify this hypothesis and to explore the origin of these immature neurons in adult cats. We have analyzed their distribution using immunohistochemical analysis of the …

InterneuroninterneuronAdult neurogenesislcsh:RC321-571Interneuronmedicineprincipal neuronlcsh:Neurosciences. Biological psychiatry. Neuropsychiatryneuronal differentiationOriginal ResearchStructural plasticitybiologyGeneral NeuroscienceDentate gyrusNeurogenesisColocalizationstructural plasticityOlfactory bulbadult neurogenesismedicine.anatomical_structurenervous systemNeuronal differentiationCerebral cortexbiology.proteinPrincipal neuronNeural cell adhesion moleculeNeuNNeuroscienceNeuroscience
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Organization of Zinc-Containing Terminal Fields in the Brain of the LizardPodarcis hispanica: A Histochemical Study

1988

The Timm method for the histochemical detection of metals defines accurately many terminal fields in the brain of mammals. This pattern is based on the presence of zinc within the synaptic vesicles of some boutons. The aim of this study was to use the Timm method for the anatomical description of the brain in a reptile. In the telencephalon, zinc staining was observed in the inner layer of the medial cortex, the inner and outer layers of both dorsomedial and dorsal cortices, the inner layer of the lateral cortex pars anterior ventralis, the lateral cortex pars profunda, the intermediate and caudal aspects of the anterior dorsal ventricular ridge, the marginal layer and hilus of the nucleus …

Interpeduncular nucleusbiologyCerebrumMedial cortexGeneral NeuroscienceAnatomybiology.organism_classificationReticular formationPodarcis hispanicaStria terminalismedicine.anatomical_structureCortex (anatomy)medicineOlfactory tractJournal of Comparative Neurology
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Human neonates prefer colostrum to mature milk: Evidence for an olfactory bias toward the "initial milk"?

2021

International audience; OBJECTIVES: Colostrum is the initial milk secretion which ingestion by neonates warrants their adaptive start in life. Colostrum is accordingly expected to be attractive to newborns. The present study aims to assess whether colostrum is olfactorily attractive for 2-day-old newborns when presented against mature milk or a control. METHODS: The head-orientation of waking newborns was videotaped in three experiments pairing the odors of: (a) colostrum (sampled on postpartum day 2, not from own mother) and mature milk (sampled on average on postpartum day 32, not from own mother) (n tested newborns = 15); (b) Colostrum and control (water; n = 9); and (c) Mature milk and …

LactealOffspringPhysiology030209 endocrinology & metabolismContext (language use)Biology03 medical and health sciences0302 clinical medicinefluids and secretionsLactationGeneticsmedicineIngestionHumans0601 history and archaeologyEcology Evolution Behavior and SystematicsMature milkreproductive and urinary physiology060101 anthropology[SDV.NEU.PC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Psychology and behaviorMilk HumanColostrumInfant Newbornfood and beverages06 humanities and the artsOlfactory Perceptionmedicine.anatomical_structureBreast FeedingOdorAnthropologyColostrumAnatomyAmerican journal of human biology : the official journal of the Human Biology CouncilREFERENCES
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Mammary odor cues and pheromones: mammalian infant-directed communication about maternal state, mammae, and milk

2010

International audience; Neonatal mammals are exposed to an outstandingly powerful selective pressure at birth, and any mean to alleviate their localization effort and accelerate acceptance to orally grasp a nipple and ingest milk should have had advantageous consequences over evolutionary time. Thus, it is essential for females to display a biological interface structure that is sensorily conspicuous and executively easy for their newborns. Females' strategy to increase the conspicuousness of nipples could only exploit the newborns' most advanced and conserved sensory systems, touch and olfaction, and selection has accordingly shaped tactilely and olfactorily conspicuous mammary structures.…

MESH: Olfactory PerceptionMESH: Animals Suckling[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutrition[ SCCO.PSYC ] Cognitive science/PsychologyMESH: Mammary Glands HumanMESH : PheromonesPheromonesmother milkWALLABY MACROPUS-EUGENIIMESH: SmellMESH : FemaleMESH: AnimalsMESH: PheromonesMESH: Milk Humannewborn rabbittransnatal olfactory continuityMESH: Mammary Glands AnimalMESH : InfantMESH : Feeding BehaviorMESH: Pheromones HumanMESH : AdultMESH : Milk HumanMESH : OdorsMESH: InfantMother-Child RelationsAnimals Sucklingnipple-attachment behaviorSmellMESH : Mother-Child RelationsBreast FeedingMilkMESH: Breast Feeding[SCCO.PSYC] Cognitive science/Psychology[SCCO.PSYC]Cognitive science/PsychologyMESH: Feeding BehaviorFemaleCuesMESH: Animal CommunicationAdultMESH: LactationMESH: Mother-Child RelationswallabyPheromones HumanRAT PUPSamniotic-fluidMESH : Mammary Glands AnimalMESH : Mammary Glands HumanNEWBORN RABBITSMESH : Animals SucklingMammary Glands AnimalMESH : Olfactory PerceptionAnimalsHumansLactationMammary Glands Humanprenatal flavor exposureMESH: OdorsMESH: HumansMESH : CuesMilk HumanMESH : LactationMESH : Humansbreast-milkInfantMESH: AdultFeeding Behaviormajor urinary proteinOlfactory PerceptionAnimal CommunicationMESH: Milk[SDV.AEN] Life Sciences [q-bio]/Food and NutritionMOTHERS MILKMESH : MilkMESH : Breast FeedingOdorantsrat pupMESH : SmellMESH : AnimalsMESH : Pheromones Humanmacropus-eugeniiMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Animal CommunicationMESH: Cues
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