Search results for "CIRCADIAN-RHYTHM"

showing 4 items of 4 documents

Spontaneous brain processing of the mammary pheromone in rabbit neonates prior to milk intake.

2016

International audience; Chemical signals play a critical role in interindividual communication, including mother-young relationships. Detecting odor cues released by the mammary area is vital to the newborn's survival. European rabbit females secret a mammary pheromone (MP) in their milk, which releases sucking related orocephalic movements in newborns. Pups spontaneously display these typical movements at birth, independently of any perinatal learning. Our previous Fos mapping study (Charra et al., 2012) performed in 4-day-old rabbits showed that the MP activated a network of brain regions involved in osmoregulation, odor processing and arousal in comparison with a control odor. However, a…

0301 basic medicineLateral hypothalamuspupMammary pheromoneLateral hypothalamusc-FosPheromonesBehavioral Neurosciencepiriform cortexEating0302 clinical medicinePiriform cortexPosterior piriform cortexhypothalamusNeuronsnewborn rabbitbiologyBrainOlfactory PathwaysMilkHypothalamuscircadian-rhythmsRabbitsPsychologyc-fosmedicine.medical_specialtyodor03 medical and health sciencesInternal medicinemedicine[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimalsLearning[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyMedian preoptic nucleusOrexinsgene-expressionmedian preoptic nucleusOlfactory bulbOrexin030104 developmental biologyEndocrinologyOdorAnimals Newbornolfactory-bulbOdorantsbiology.proteinOrexin030217 neurology & neurosurgeryBehavioural brain research
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Unexpected diversity in socially synchronized rhythms of shorebirds.

2016

The behavioural rhythms of organisms are thought to be under strong selection, influenced by the rhythmicity of the environment1,2,3,4. Such behavioural rhythms are well studied in isolated individuals under laboratory conditions1,5, but free-living individuals have to temporally synchronize their activities with those of others, including potential mates, competitors, prey and predators6,7,8,9,10. Individuals can temporally segregate their daily activities (for example, prey avoiding predators, subordinates avoiding dominants) or synchronize their activities (for example, group foraging, communal defence, pairs reproducing or caring for offspring)6,7,8,9,11. The behavioural rhythms that em…

0301 basic medicineMale0106 biological sciencesPeriodicityTime FactorsZygoteBehavioural ecologyCaptivityBiológiai tudományokEvolutionary ecology01 natural sciencesSEXUAL SELECTIONNesting BehaviorPredationCharadriiformesTermészettudományokNestPHYLOGENIESIncubationSocial evolution0303 health sciencesMultidisciplinaryROLESEcologyReproductionAnimal behaviourBiological EvolutionCircadian RhythmINCUBATION PATTERNSSexual selectionGEOLOCATOR DATACrypsisFemaleCIRCADIAN-RHYTHMSCuesPhotoperiodForagingNEST PREDATIONZoologyshorebirdsContext (language use)[SDV.BID]Life Sciences [q-bio]/BiodiversityEnvironmentBiology010603 evolutionary biologyCLOCKS03 medical and health sciencesRhythmSpecies SpecificityAnimals14. Life underwaterSensory cue030304 developmental biology[ SDV.BID ] Life Sciences [q-bio]/Biodiversity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyBIRDSFeeding BehaviorEVOLUTION030104 developmental biologyStarvationPredatory Behaviorsocially synchronized rhythmsta1181Evolutionary ecology[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Frontoparietal cortex and cerebellum contribution to the update of actual and mental motor performance during the day

2016

AbstractActual and imagined movement speed increases from early morning until mid-afternoon. Here, we investigated the neural correlates of these daily changes. Fifteen subjects performed actual and imagined right finger opposition movement sequences at 8 am and 2 pm. Both actual and imagined movements were significantly faster at 2 pm than 8 am. In the morning, actual movements significantly activated the left primary somatosensory and motor areas, and bilaterally the cerebellum; in the afternoon activations were similar but reduced. Contrast analysis revealed greater activity in the cerebellum, the left primary sensorimotor cortex and parietal lobe in the morning than in the afternoon. Im…

AdultMalemedicine.medical_specialtyMovementMuscle memoryAudiology050105 experimental psychologyFunctional LateralityArticlepositron-emission-tomographyFingers03 medical and health sciencesYoung Adult0302 clinical medicineCortex (anatomy)CerebellumParietal LobemedicineHumans0501 psychology and cognitive sciencesfunctional mritimeMorningBrain MappingMultidisciplinarybusiness.industryhand movements05 social sciencesParietal lobeMotor Cortexrepresentationscircadian-rhythm periodMotor coordinationFrontal Lobemedicine.anatomical_structureFrontal lobeparietal cortexbody ownership[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Imaginationfinger movementsOrbitofrontal cortexFemaleArtificial intelligenceMotor learningbusiness030217 neurology & neurosurgeryPsychomotor Performanceimagery
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Physiological and autonomic stress responses after prolonged sleep restriction and subsequent recovery sleep in healthy young men

2018

Purpose Sleep restriction is increasingly common and associated with the development of health problems. We investigated how the neuroendocrine stress systems respond to prolonged sleep restriction and subsequent recovery sleep in healthy young men. Methods After two baseline (BL) nights of 8 h time in bed (TIB), TIB was restricted to 4 h per night for five nights (sleep restriction, SR, n = 15), followed by three recovery nights (REC) of 8 h TIB, representing a busy workweek and a recovery weekend. The control group (n = 8) had 8 h TIB throughout the experiment. A variety of autonomic cardiovascular parameters, together with salivary neuropeptide Y (NPY) and cortisol levels, were assessed.…

sykemedicine.medical_specialtyNeurologyPhysiologyBLOOD-PRESSURE030204 cardiovascular system & hematologySYMPATHOVAGAL BALANCE3124 Neurology and psychiatryuni (lepotila)Cortisolstress03 medical and health sciences0302 clinical medicinePhysiology (medical)Internal medicineautonominen hermostomedicineAutonomic nervous systemHeart rate variabilityCircadian rhythmApplied PsychologyHeart rate variabilitySleep restrictionHEART-RATE-VARIABILITYSleep restrictionbusiness.industryCIRCADIAN-RHYTHM3112 NeurosciencesTillämpad psykologiSleep in non-human animals3. Good healthAutonomic nervous systemINSUFFICIENT SLEEPNeuropsychology and Physiological PsychologyBlood pressureEndocrinologyNeurologyNEUROPEPTIDE-YCARDIOVASCULAR-DISEASEHPA-axisONE NIGHTIMMUNE-SYSTEMOriginal ArticleDEPRESSED-PATIENTSheartsProlonged sleepbusiness030217 neurology & neurosurgerySleep and Biological Rhythms
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