Search results for "Sensory deprivation"

showing 10 items of 12 documents

Electrical activity controls area-specific expression of neuronal apoptosis in the mouse developing cerebral cortex

2017

Programmed cell death widely but heterogeneously affects the developing brain, causing the loss of up to 50% of neurons in rodents. However, whether this heterogeneity originates from neuronal identity and/or network-dependent processes is unknown. Here, we report that the primary motor cortex (M1) and primary somatosensory cortex (S1), two adjacent but functionally distinct areas, display striking differences in density of apoptotic neurons during the early postnatal period. These differences in rate of apoptosis negatively correlate with region-dependent levels of activity. Disrupting this activity either pharmacologically or by electrical stimulation alters the spatial pattern of apoptos…

0301 basic medicineAgingMouseStimulationCell CountSomatosensory systemMice0302 clinical medicineAnesthesiaBiology (General)whisker deafferentationCerebral CortexNeuronsNeocortexCaspase 3General NeuroscienceQRapoptosisMotor CortexGeneral MedicineAnatomyactivity patternsmedicine.anatomical_structurecell deathCerebral cortexMedicinePrimary motor cortexMotor cortexResearch ArticleProgrammed cell deathQH301-705.5ScienceBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesmedicineAnimalsSensory deprivationdevelopmentGeneral Immunology and MicrobiologySomatosensory CortexElectrophysiological Phenomena030104 developmental biologyDevelopmental Biology and Stem Cellsnervous systemAnimals NewbornNeuroscience030217 neurology & neurosurgeryNeuroscienceeLife
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Brain circuit-gene expression relationships and neuroplasticity of multisensory cortices in blind children.

2017

Sensory deprivation reorganizes neurocircuits in the human brain. The biological basis of such neuroplastic adaptations remains elusive. In this study, we applied two complementary graph theory-based functional connectivity analyses, one to evaluate whole-brain functional connectivity relationships and the second to specifically delineate distributed network connectivity profiles downstream of primary sensory cortices, to investigate neural reorganization in blind children compared with sighted controls. We also examined the relationship between connectivity changes and neuroplasticity-related gene expression profiles in the cerebral cortex. We observed that multisensory integration areas e…

0301 basic medicineMaleneuroplasticitySensory systemNerve Tissue ProteinsCREBBlindness03 medical and health sciences0302 clinical medicinechildrenNeuroplasticitymedicineGene familyHumansSensory deprivationChildMultidisciplinaryNeuronal Plasticitybiologyfunctional connectivityMultisensory integrationHuman brainSomatosensory CortexBiological Sciences030104 developmental biologymedicine.anatomical_structureGene Expression RegulationCerebral cortexbiology.proteinCREB familyFemaleNerve NetPsychologyNeuroscience030217 neurology & neurosurgery
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Layer-Specific Refinement of Sensory Coding in Developing Mouse Barrel Cortex

2017

Rodent rhythmic whisking behavior matures during a critical period around 2 weeks after birth. The functional adaptations of neocortical circuitry during this developmental period remain poorly understood. Here, we characterized stimulus-evoked neuronal activity across all layers of mouse barrel cortex before, during, and after the onset of whisking behavior. Employing multi-electrode recordings and 2-photon calcium imaging in anesthetized mice, we tested responses to rostro-caudal whisker deflections, axial "tapping" stimuli, and their combination from postnatal day 10 (P10) to P28. Within this period, whisker-evoked activity of neurons displayed a general decrease in layer 2/3 (L2/3) and …

2805 Cognitive NeuroscienceMale0301 basic medicineNeurogenesisCognitive NeurosciencePeriod (gene)2804 Cellular and Molecular Neuroscience610 Medicine & healthSensory systemStimulationBiologySomatosensory system03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineCalcium imagingPhysical StimulationAnimalsPremovement neuronal activityNeuronsAfferent PathwaysNeuronal Plasticity10242 Brain Research InstituteWhisking in animalsSomatosensory CortexBarrel cortexMice Inbred C57BL030104 developmental biologyAnimals NewbornVibrissae570 Life sciences; biologyFemaleSensory DeprivationNeuroscience030217 neurology & neurosurgery
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Prismatic lenses shift time perception

2009

Previous studies have demonstrated the involvement of spatial codes in the representation of time and numbers. We took advantage of a well-known spatial modulation (prismatic adaptation) to test the hypothesis that the representation of time is spatially oriented from left to right, with smaller time intervals being represented to the left of larger time intervals. Healthy subjects performed a time-reproduction task and a time-bisection task, before and after leftward and rightward prismatic adaptation. Results showed that prismatic adaptation inducing a rightward orientation of spatial attention produced an overestimation of time intervals, whereas prismatic adaptation inducing a leftward…

AdultMaleAdolescentColor visionmedia_common.quotation_subjectPoison controlAdaptation (eye)Young AdultDiscrimination PsychologicalPerceptionOrientationSPACEHumansAttentionTime processingGeneral Psychologymedia_commonPerceptual DistortionSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaOrientation (computer vision)business.industryAdaptation OcularPattern recognitionTime perceptionShift timeTIMEMemory Short-TermPattern Recognition VisualTime PerceptionFemaleArtificial intelligenceSensory DeprivationPsychologybusinessColor PerceptionPsychomotor Performance
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Eyes open and eyes closed as rest conditions: impact on brain activation patterns

2003

The patterns of associated brain activations during eyes-open and eyes-closed states in complete darkness considerably differ in fMRI. An "interoceptive" state with the eyes closed is characterized by visual cortex activation, while an "exteroceptive" state with the eyes open is characterized by ocular motor system activity. The impact of the chosen rest condition (eyes open or eyes closed in complete darkness) on the pattern of brain activations during visual stimulation was evaluated in 14 healthy volunteers. During fixation or dim light room illumination, the activation of the visual cortex was larger with the eyes-open rest condition than with the eyes-closed rest condition; however, ac…

AdultMaleAdolescentEye Movementsgenetic structuresRestCognitive NeuroscienceThalamusSensory systemFixation OcularLateral geniculate nucleusSomatosensory systemReference ValuesImage Interpretation Computer-AssistedmedicineHumansVisual PathwaysDominance CerebralPrefrontal cortexVision OcularVisual CortexBrain MappingBrainGeniculate BodiesAnatomyFrontal eye fieldsImage EnhancementMagnetic Resonance Imagingeye diseasesOxygenVisual cortexmedicine.anatomical_structureNeurologyOculomotor MusclesFixation (visual)Femalesense organsSensory DeprivationArousalPsychologyNeuroscienceNeuroImage
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Modulatory effects of low- and high-frequency repetitive transcranial magnetic stimulation on visual cortex of healthy subjects undergoing light depr…

2005

The aim of the present study was to explore further the effects of light deprivation (LD) on visual cortex excitability. Healthy subjects reporting reliable induction of phosphenes by occipital transcranial magnetic stimulation (TMS) underwent 60 min of complete LD. Phosphene threshold (PT) was measured before (T0), after 45 min (T1) and 60 min (T2) of LD, and then every 10 min after light re-exposure until recovery to T0 values. Repetitive TMS (rTMS) (at 1 or 10 Hz) was applied in separate sessions during the last 15 min of LD. PTs significantly decreased after 45 min of LD. rTMS differentially modified the effects of 60 min LD on PTs depending on stimulation frequency. One hertz rTMS did …

AdultMalePhosphenesNeural Inhibition/physiology Phosphenes/physiology Photic Stimulation Sensory Deprivation/physiology Transcranial Magnetic Stimulation Visual Cortex/physiologyNeural InhibitionMiddle AgedTranscranial Magnetic StimulationElectric StimulationIntegrative PhysiologyHumansFemaleSensory DeprivationPhotic StimulationVisual CortexThe Journal of physiology
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Coping with continual danger: assessing alertness to visual disturbances in crucian carp following long-term exposure to chemical alarm signals.

2013

Chemical alarm signals in fish are passively released into the water from ruptured epidermal cells, and induce instant fright responses in conspecifics. Fish also display alarm responses to injured heterospecific skin, as well as to scent of piscivorous predators that have ingested prey. A conspicuous alertness to visual disturbances has also been observed in fish following long-term exposure to extracts of filtered, homogenized skin, but the chemical inducers of such vigilance are actually unknown. We tested if a continual exposure to water-soluble alarm signals, from either conspecifics or heterospecifics, affects alertness of fish. Based on previous experience, it was assumed that alertn…

CarpsTime Factorsmedia_common.quotation_subjectMovementZoologyExperimental and Cognitive PsychologyPheromonesPredationBehavioral NeuroscienceALARMEscape ReactionAnimalsVision Ocularmedia_commonSkinPerchbiologyEcologybiology.organism_classificationStimulation ChemicalTroutAlertnessVisual DisturbancePredatory BehaviorOdorantsCrucian carpSensory DeprivationVigilance (psychology)Physiologybehavior
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What can synaesthesia tell us about our minds?

2014

Synaesthesia is considered here as a cognitive phenomenon in the context of developmental, neuropathological and linguistic perspectives. Developmental synaesthesia seems to arise as an effect of interplay between genotype and phenotype, during the implicit learning process in childhood, in those individuals who possess an inborn susceptibility to it. Some connections between synaesthesia and extraordinary experiences, brain restructuration and pain, are examined. Acquired types of synaesthesia may be related to sensory deprivation. The somatosensory cortex may be significant for cognitive synaesthesia, with especial importance placed on a mirror system. It is suggested here that synaesthes…

Linguistics and LanguageCognitive NeuroscienceCommunicationCognitionContext (language use)Language and LinguisticsImplicit learningPerceptual systemSensory deprivationAssociation (psychology)PsychologyPiaget's theory of cognitive developmentMirror neuronCognitive psychologyTheoria et Historia Scientiarum
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Dark exposure affects plasticity-related molecules and interneurons throughout the visual system during adulthood

2020

Several experimental manipulations, including visual deprivation, are able to induce critical period-like plasticity in the visual cortex of adult animals. In this regard, many studies have analyzed the effects of dark exposure in adult animals, but still little is known about the role of interneurons and plasticity-related molecules on such mechanisms. In this study, we analyzed the effects of 10 days of dark exposure on the connectivity and structure of interneurons, both in the primary visual cortex and in the rest of cerebral regions implicated in the transmission of visual stimulus. We found that this environmental manipulation induces changes in the expression of synaptic molecules th…

Male0301 basic medicinegenetic structuresinterneurons ()Mice TransgenicNeural Cell Adhesion Molecule L1Stimulus (physiology)PlasticityInhibitory postsynaptic potentialsensory deprivation ()Mice03 medical and health sciences0302 clinical medicineInterneuronsextracellular matrix ()medicineAnimalsVisual Cortexvisual pathways ()Neuronal PlasticitybiologyGeneral NeurosciencePerineuronal netAge FactorsDarknessPSA-NCAM ()030104 developmental biologyVisual cortexmedicine.anatomical_structureSialic Acidsbiology.proteinNeural cell adhesion moleculeneuronal plasticity ()Nerve NetSensory DeprivationNeuroscience030217 neurology & neurosurgeryParvalbumin
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Use of ultrasonic vocalizations to assess olfactory detection in mouse pups treated with 3-methylindole.

2005

International audience; Altricial mammals use olfaction long before the olfactory bulb has reached its anatomically mature state. Indeed, while audition and vision are still not functional, the olfactory system of newborn animals can clearly process distinct odorant molecules. Although several previous studies have emphasized the important role that olfaction plays in early critical functions, it has been difficult to develop a sensitive and reliable test to precisely quantify olfactory ability in pups. One difficulty in determining early sensory capabilities is the rather limited behavioral repertory of neonates. The present study examines the use of ultrasonic vocalizations emitted by iso…

Olfactory systemMale[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyMESH: UltrasonicsMESH : Behavior AnimalMESH: Animals NewbornBehavioral NeuroscienceMice0302 clinical medicineDiscrimination PsychologicalUltrasound emissionMESH: SmellMESH: Behavior AnimalUltrasonicsMESH: AnimalsMESH: Discrimination (Psychology)OlfactotoxinBehavior AnimalMESH : Animals Newborn05 social sciencesGeneral MedicineMESH : OdorsSkatoleSmellAltricialmedicine.anatomical_structure[ SDV.NEU.NB ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Neurobiology[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]MESH : UltrasonicsMESH : Sensory DeprivationMESH : MaleMESH: Vocalization AnimalMESH: SkatoleSensory systemMESH : Mice Inbred C57BLOlfactionBiologyDevelopment03 medical and health sciencesMESH: Mice Inbred C57BLMESH : MicemedicineAnimals0501 psychology and cognitive sciencesSensory deprivation050102 behavioral science & comparative psychologyMESH: MiceBehaviorMESH: Sensory DeprivationMESH: OdorsMESH : Vocalization AnimalMESH : SkatoleMESH : Discrimination (Psychology)OlfactionMESH: MaleOlfactory bulbMice Inbred C57BLOdorAnimals NewbornOdorantsMESH : SmellAnimal Science and ZoologyMESH : AnimalsSensory DeprivationVocalization AnimalOlfactory epitheliumNeuroscience030217 neurology & neurosurgery
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