Search results for "olfaction"

showing 10 items of 251 documents

Modifications de l’olfaction au cours du vieillissement et de certaines pathologies neurodégénératives : mise au point

2015

Olfaction is a complex sensory system, and increasing interest is being shown in the link between olfaction and cognition, notably in the elderly. In this literature review, we revisit the specific neurophysiological features of the olfactory system and odorants that lead to a durable olfactory memory and an emotional memory, for which the implicit component produces subconscious olfactory conditioning. Olfaction is known to affect cognitive abilities and mood. We also consider the impairment of olfactory function due to ageing and to neurodegenerative diseases, in particular Alzheimer's disease and Parkinson's disease, through anatomopathological changes in the peripheral and central olfac…

Olfactory systemSensory stimulation therapybusiness.industryGastroenterologyCognitionSensory systemOlfactionmedicine.disease3. Good health03 medical and health sciences0302 clinical medicineInternal MedicinemedicineDementia030212 general & internal medicineOlfactory memoryAlzheimer's diseasebusinessNeuroscience030217 neurology & neurosurgeryLa Revue de Médecine Interne
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A putative social chemosignal elicits faster cortical responses than perceptually similar odorants.

2006

Social chemosignals, so-called pheromones, have recently attracted much attention in that effects on women's psychophysiology and cortical processing have been reported. We here tested the hypothesis that the human brain would process a putative social chemosignal, the endogenous steroid endrostadienone, faster than other odorants with perceptually matched intensity and hedonic characteristics. Chemosensory event-related potentials (ERP) were recorded in healthy women. ERP analyses indicate that androstadienone was processed significantly faster than the control odorants. Androstadienone elicited shorter latencies for all recorded ERP components but most so for the late positivity. This fin…

Olfactory systemVisual perceptionMotion PerceptionCortical processingPheromoneschemistry.chemical_compound0302 clinical medicineAttentionHydrogen SulfideEvoked PotentialsCerebral Cortex0303 health sciencesBrain MappingAndrostadienoneElectroencephalographyHuman brainOlfactory PathwaysMiddle AgedChemoreceptor CellsSmellmedicine.anatomical_structureNeurologyPattern Recognition VisualSex pheromoneSensory Thresholds[ SCCO.NEUR ] Cognitive science/NeuroscienceAndrogensFemalePsychologyERPpsychological phenomena and processesAdultCognitive NeuroscienceOlfactionAndrosterone03 medical and health sciencesmedicinePsychophysicsReaction TimeHumansSocial Behavior030304 developmental biologyCommunicationDose-Response Relationship Drugbusiness.industry[SCCO.NEUR]Cognitive science/NeuroscienceOlfactionAndrostadienesPsychophysiologychemistrybusinessNeuroscience030217 neurology & neurosurgeryPsychomotor PerformanceNeuroImage
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Association of olfatory dysfunction with plasma lipids and blood pressure in a high cardiovascular risk population: sex-specific analysis

2021

Abstract Background Impaired sense of smell is a predictor of morbidity and mortality, including cardiovascular diseases. Likewise, several studies have reported sex-specific associations between olfactory function and cardiometabolic measures including plasma lipids and blood pressure. Thus, in a representative sample of US adults from the National Health and Nutrition Examination Survey (NHANES) study, olfactory dysfunction was associated with significantly higher total cholesterol (TC) and LDL-C among older men, but significantly lower TC among older women. However, considering that more studies in diverse population are needed, our aim was to analyze the association between the olfactor…

Olfactory systemeducation.field_of_studyNational Health and Nutrition Examination Surveybusiness.industryPopulationPhysiologyOlfactionmedicine.diseaseBlood pressureHyposmiaMedicineMetabolic syndromemedicine.symptomCardiology and Cardiovascular MedicinebusinessAssociation (psychology)educationAmerican Heart Journal
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Hypothalamus-olfactory system crosstalk: orexin a immunostaining in mice

2012

It is well known that olfaction influences food intake, and conversely, that an individual’s nutritional status modulates olfactory sensitivity. However, what is still poorly understood is the neuronal correlate of this relationship, as well as the connections between the olfactory bulb and the hypothalamus. The goal of this report is to analyze the relationship between the olfactory bulb and hypothalamus, focusing on orexin A immunostaining, a hypothalamic neuropeptide that is thought to play a role in states of sleep/wakefulness. Interestingly, orexin A has also been described as a food intake stimulator. Such an effect may be due in part to the stimulation of the olfactory bulbar pathway…

Olfactory systemmedicine.medical_specialtyLateral hypothalamus[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionNeuroscience (miscellaneous)Olfactionolfactory systemBiology03 medical and health sciencesCellular and Molecular NeuroscienceOrexin-A0302 clinical medicineInternal medicinemental disordersmedicineFood and Nutritionhypothalamus030304 developmental biologyOriginal Research0303 health sciencesimmunocytologyOlfactory tubercledigestive oral and skin physiologyimmunohistologyaobfood intake behaviourOrexinOlfactory bulbaob;food intake behaviour;hypothalamus;immunohistology;mob;olfactory system;orexin aEndocrinologymobnervous systemAlimentation et NutritionWakefulnessorexin aAnatomyfood intake behaviorNeuroscience[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgerypsychological phenomena and processeshormones hormone substitutes and hormone antagonistsNeuroscience
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Nitric oxide synthase containing periglomerular cells are GABAergic in the rat olfactory bulb.

2003

In the olfactory glomeruli of the rat olfactory bulb, there is a population of periglomerular cells (PG) that contains the neuronal isoform of the nitric oxide synthase (nNOS). To date, these PG have not been characterized neurochemically and it has not been determined whether they are type 1 (GABAergic PG that receive synaptic contacts from the olfactory axons) or type 2 PG (non-GABAergic PG that do not receive synapses from the olfactory axons). Combining pre-embedding NADPH-diaphorase histochemistry and post-embedding immunoperoxidase detection of GABA, we demonstrate that nNOS-containing PG are GABAergic and therefore, belong to the type 1 PG. The possible actions of nitric oxide in the…

Olfactory systemmedicine.medical_specialtyOlfactory NervePopulationCentral nervous systemPresynaptic TerminalsOlfactionNitric OxideSynaptic TransmissionOlfactory nerveInternal medicinemedicineAnimalsRats Wistareducationgamma-Aminobutyric AcidNeuronseducation.field_of_studybiologyChemistryGeneral NeuroscienceNeural InhibitionImmunohistochemistryOlfactory BulbCell biologyOlfactory bulbRatsNitric oxide synthaseEndocrinologymedicine.anatomical_structurenervous systemSynapsesbiology.proteinGABAergicNitric Oxide SynthaseNeuroscience letters
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Olfactory training is helpful in postinfectious olfactory loss: A randomized, controlled, multicenter study

2013

Objectives/Hypothesis: The aim of this study was to evaluate the effects of olfactory training (OT) on olfactory function in patients with persistent postinfectious olfactory dysfunction (PIOD). Study Design: Randomized, single-blind, controlled, multicenter crossover study. Methods: Twelve tertiary university medical centers participated. Investigations were performed at three visits (base- line, after 18 weeks, and after 36 weeks), including only subjects with PIOD of <24-months duration. At each visit, partici- pants received detailed assessment of olfactory function. Seventy subjects trained with high concentrations of four odors for 18 weeks; the other half (n 5 74) trained with low co…

Olfactory systemmedicine.medical_specialtybusiness.industryAnosmiaOlfactionCrossover studySurgeryRegimenOtorhinolaryngologyMulticenter studyHyposmiaInternal medicinemedicineIn patientmedicine.symptombusinessThe Laryngoscope
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Habituation and adaptation to odors in humans

2017

indexation en cours; Habituation, or decreased behavioral response, to odors is created by repeated exposure and several detailed characteristics, whereas adaptation relates to the neural processes that constitute this decrease in a behavioral response. As with all senses, the olfactory system continually encounters an enormous variety of odorants which is why mechanisms must exist to segment them and respond to changes. Although most olfactory habitation studies have focused on animal models, this non-systematic review provides an overview of olfactory habituation and adaptation in humans, and techniques that have been used to measure them. Thus far, psychophysics in combination with moder…

Olfactory systemmedicine.medical_treatment[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionDesensitizationadaptationneuroscienceBehavioral Neuroscience0302 clinical medicinePsychophysicssmellDishabituationHabituationêtre humain05 social sciencesdésensibilisationBrainAdaptation PhysiologicalSmellDesensitization (psychology)Health & Consumer Research[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]PsychologyHumanolfactiondesensitizationExperimental and Cognitive PsychologyOlfaction050105 experimental psychology03 medical and health sciencesmedicineAnimalsHumans0501 psychology and cognitive scienceshumanAdaptationHabituation PsychophysiologicFood Health & Consumer ResearchVLAGCommunicationbusiness.industryodeur alimentaireOlfactory PerceptionOlfactionBehavioral responseFood[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]AdaptationbusinessNeuroscience[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryNeuroscience
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Subcellular localization of m2 muscarinic receptors in GABAergic interneurons of the olfactory bulb

2000

We analysed the ultrastructural distribution of the m2 muscarinic receptor (m2R) in the rat olfactory bulb (OB) using immunohistochemical techniques and light and electron microscopy. m2R was differentially distributed within the cellular compartments of gamma-aminobutyric acid (GABA)ergic bulbar interneurons. It is located in the gemmules of granule cells and in the synaptic loci of the interneurons of the external plexiform layer, suggesting that m2R activation could modulate the release of GABA from these interneurons onto principal cells by a presynaptic mechanism. By contrast, the receptor appears in the somata and dendritic trunks of second-order short-axon interneurons located in the…

Olfactory systemnervous systemOlfactory nervePostsynaptic potentialGeneral NeuroscienceOlfactory tubercleGABAergicOlfactory ensheathing gliaOlfactionBiologyNeuroscienceOlfactory bulbEuropean Journal of Neuroscience
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Distribution of D2 dopamine receptor in the olfactory glomeruli of the rat olfactory bulb

2005

Dopamine plays key roles in the processing of the olfactory information that takes place in the olfactory glomeruli. Previous studies using autoradiography demonstrate that, at the glomerular level, these actions are mainly mediated via activation of D2 dopamine receptors. Moreover, it has been suggested that D2 receptors could be present in the olfactory nerve, where they might modulate the entrance of olfactory input into the brain. Nevertheless, the precise subcellular localization of D2 receptors in the glomerular neuropil has not been investigated. In this report, we show the subcellular distribution of D2 receptors in the glomerular circuits of Wistar rats, using pre-embedding immunog…

Olfactory systemurogenital systemGeneral NeuroscienceOlfactory tubercleDopaminergicOlfactionBiologyurologic and male genital diseasesOlfactory bulbmedicine.anatomical_structureOlfactory nerveNeuropilmedicineOlfactory ensheathing gliaNeuroscienceEuropean Journal of Neuroscience
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An acute exposure to ozone impairs human olfactory functioning

2018

Ozone is a ubiquitous and irritant gas. We questioned whether an acute exposure to 0.2 ppm ozone impaired olfactory functioning.Healthy, normosmic subjects were exposed according to a parallel group design either to 0.2 ppm ozone (n = 15) or to sham (n = 13) in an exposure chamber for two hours. Possible irritating effects were assessed by questionnaire (range 0-5). The detection threshold of n-butanol was measured with the Sniffin' Sticks test before and after exposure. Olfactory thresholds were logarithmized and a two-way analysis of variance (ANOVA) with repeated measurements was carried out to test the effects of exposure (ozone vs. sham) and time (before vs. after exposure). Additional…

OzoneMucous membrane of nose010501 environmental sciences01 natural sciencesBiochemistrySham groupOlfaction Disorders03 medical and health scienceschemistry.chemical_compound1-ButanolOzone0302 clinical medicineOlfactory thresholdHumansMedicine0105 earth and related environmental sciencesGeneral Environmental Sciencebusiness.industryDetection thresholdInterleukinsSmellchemistrySensory ThresholdsAnesthesiaAcute exposureExposure chamberAnalysis of variancebusiness030217 neurology & neurosurgeryEnvironmental Research
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