Search results for "Premovement neuronal activity"

showing 10 items of 100 documents

Pregnenolone sulphate enhances spatial orientation and object discrimination in adult male rats: Evidence from a behavioural and electrophysiological…

2013

Abstract Neurosteroids can alter neuronal excitability interacting with specific neurotransmitter receptors, thus affecting several functions such as cognition and emotionality. In this study we investigated, in adult male rats, the effects of the acute administration of pregnenolone-sulfate (PREGS) (10 mg/kg, s.c.) on cognitive processes using the Can test, a non aversive spatial/visual task which allows the assessment of both spatial orientation–acquisition and object discrimination in a simple and in a complex version of the visual task. Electrophysiological recordings were also performed in vivo , after acute PREGS systemic administration in order to investigate on the neuronal activati…

MaleNeuroactive steroidAction PotentialsHippocampusHippocampusSettore BIO/09 - FisiologiaBehavioral NeurosciencePregnenolone-sulphate Spatial orientation Object discrimination Perirhinal cortex HippocampusDiscrimination PsychologicalNeurotransmitter receptorOrientationPerirhinal cortexmedicineAnimalsPremovement neuronal activityRats WistarNootropic AgentsCerebral CortexNeuronsLong-term potentiationCognitionRatsElectrophysiologymedicine.anatomical_structurePregnenoloneSpace PerceptionSettore BIO/14 - FarmacologiaPsychologyNeuroscience
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Sensory-evoked and spontaneous gamma and spindle bursts in neonatal rat motor cortex.

2014

Self-generated neuronal activity originating from subcortical regions drives early spontaneous motor activity, which is a hallmark of the developing sensorimotor system. However, the neural activity patterns and role of primary motor cortex (M1) in these early movements are still unknown. Combining voltage-sensitive dye imaging (VSDI) with simultaneous extracellular multielectrode recordings in postnatal day 3 (P3)-P5 rat primary somatosensory cortex (S1) and M1 in vivo, we observed that tactile forepaw stimulation induced spindle bursts in S1 and gamma and spindle bursts in M1. Approximately 40% of the spontaneous gamma and spindle bursts in M1 were driven by early motor activity, whereas …

MaleNeuronsNeocortexSpontaneous movementsGeneral NeuroscienceMotor CortexAction PotentialsSensory systemStimulationSomatosensory CortexArticlesBiologySomatosensory systemRatsmedicine.anatomical_structureAnimals NewbornEvoked Potentials SomatosensorymedicinePremovement neuronal activityAnimalsFemalePrimary motor cortexRats WistarNeuroscienceMotor cortexThe Journal of neuroscience : the official journal of the Society for Neuroscience
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Nicotine modulation of the lateral habenula/ventral tegmental area circuit dynamics: An electrophysiological study in rats

2022

Abstract Nicotine, the addictive component of tobacco, has bivalent rewarding and aversive properties. Recently, the lateral habenula (LHb), a structure that controls ventral tegmental area (VTA) dopamine (DA) function, has attracted attention as it is potentially involved in the aversive properties of drugs of abuse. Hitherto, the LHb-modulation of nicotine-induced VTA neuronal activity in vivo is unknown. Using standard single-extracellular recording in anesthetized rats, we observed that intravenous administration of nicotine hydrogen tartrate (25–800 μg/kg i.v.) caused a dose-dependent increase in the basal firing rate of the LHb neurons of nicotine-naive rats. This effect underwent com…

MaleNicotinemedicine.medical_specialtyElectrolytic lesionDopamineSettore BIO/09 - FisiologiaRats Sprague-DawleyLesionNicotineCellular and Molecular NeuroscienceRewardLateral habenulaDesensitization (telecommunications)DopamineInternal medicineNeural PathwaysmedicineAnimalsPremovement neuronal activityExtracellular recordingPharmacologyHabenulaDose-Response Relationship DrugChemistryDopaminergic NeuronsElectroencephalographyElectrophysiologyVentral tegmental areaElectrophysiologyEndocrinologymedicine.anatomical_structurenervous systemmedicine.symptomCell activationVentral tegmental areamedicine.drugNeuropharmacology
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Subthreshold oscillation of the membrane potential in magnocellular neurones of the rat supraoptic nucleus

2000

The hypothalamic supraoptic nucleus (SON) contains two major populations of magnocellular neurosecretory neurones, producing and secreting vasopressin and oxytocin, respectively (for review see Poulain & Wakerley 1982). Neurones of a subpopulation of supraoptic neurosecretory cells share the capability of generating phasic bursts of action potentials. In these neurones, action potentials are succeeded by a depolarizing afterpotential (DAP; Andrew, 1987; Armstrong et al. 1994; Li et al. 1995). Depending on the discharge frequency, DAPs summate, eventually resulting in the generation of a plateau potential that gives rise to the discharge of a long-lasting train of action potentials. Thus, DA…

MalePhysiologyTetrodotoxinCholinergic AgonistsIn Vitro TechniquesSupraoptic nucleusMembrane PotentialsRats Sprague-DawleyBurstingSlice preparationBiological ClocksOscillometryPotassium Channel BlockersmedicineAnimalsPremovement neuronal activityMagnesiumAnesthetics LocalNeuronsMembrane potentialNeocortexChemistrymusculoskeletal neural and ocular physiologySodium channelTetraethylammoniumDepolarizationOriginal ArticlesRatsmedicine.anatomical_structurenervous systemCalciumSupraoptic NucleusNeuroscienceHeptanolProcaineCadmiumThe Journal of Physiology
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Modulation of hippocampal theta oscillations and spatial memory by relaxin-3 neurons of the nucleus incertus.

2009

Hippocampal theta rhythm is thought to underlie learning and memory, and it is well established that “pacemaker” neurons in medial septum (MS) modulate theta activity. Recent studies in the rat demonstrated that brainstem-generated theta rhythm occurs through a multisynaptic pathway via the nucleus incertus (NI), which is the primary source of the neuropeptide relaxin-3 (RLN3). Therefore, this study examined the possible contribution of RLN3 to MS activity, and associated hippocampal theta activity and spatial memory. In anesthetized and conscious rats, we identified the ability of intraseptal RLN3 signaling to modulate neuronal activity in the MS and hippocampus and promote hippocampal the…

MaleStilbamidinesCognitive NeuroscienceMutant Chimeric ProteinsPresynaptic TerminalsHippocampusNeuropeptideBiotinNerve Tissue ProteinsHippocampal formationNeuropsychological TestsHippocampusRats Sprague-DawleyCellular and Molecular NeuroscienceMicroscopy Electron TransmissionMemoryPonsNeural PathwaysPremovement neuronal activityAnimalsInsulinTheta RhythmNeuronsAnalysis of VarianceBehavior AnimalRhodaminesSpectrum AnalysisRelaxinProteinsDextransSpontaneous alternationNucleus IncertusRatsNeuropsychology and Physiological Psychologynervous systemSpace PerceptionExploratory BehaviorCholinergicSeptum of BrainRelaxin-3PsychologyPeptidesNeuroscienceProto-Oncogene Proteins c-fosLearningmemory (Cold Spring Harbor, N.Y.)
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Reward Unpredictability inside and outside of a Task Context as a Determinant of the Responses of Tonically Active Neurons in the Monkey Striatum

2001

Tonically active neurons (TANs) in the monkey striatum are involved in detecting motivationally relevant stimuli. We recently provided evidence that the timing of conditioned stimuli strongly influences the responsiveness of TANs, the source of which is likely to be the monkey's previous experience with particular temporal regularities in sequential task events. To extend these findings, we investigated the relationship of TAN responses to a primary liquid reward, the timing of which is more or less predictable to the monkey either outside of a task or during instrumental task performance. Reward predictability was indexed by the timing characteristics of the mouth movements. The responsive…

MaleTime FactorsMovementConditioning ClassicalStriatumStimulus (physiology)Developmental psychologyHabitsRewardReaction TimeAnimalsPremovement neuronal activityARTICLEMouth movementsA determinantNeuronsBehavior AnimalGeneral NeuroscienceAssociation LearningCorpus StriatumElectrodes ImplantedElectrophysiologyMacaca fascicularisArmPsychologyNeuroscienceIntuitionPsychomotor Performancepsychological phenomena and processesThe Journal of Neuroscience
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Nitric oxide-induced inhibition on striatal cells and excitation on globus pallidus neurons: a microiontophoretic study in the rat.

2003

Single units were recorded in the striatum and in the globus pallidus (GP) of urethane-anesthetized rats under microiontophoretic administration of either Nomega-nitro-L-arginine methyl ester (L-NAME, inhibitor of nitric oxide synthase), or 3-morpholino-sydnonimin-hydrocloride (SIN-1, nitric oxide, NO donor). A steady baseline firing of sporadically discharging striatal neurons (basal firing rate <0.1 spikes/s) was evoked by a pulsed microiontophoretic ejection of glutamate. On striatal neurons, microiontophoretic application of SIN-1 induced a current-dependent inhibition (11/13), whereas L-NAME administration produced a clear excitation (9/9). On GP cells, the administration of SIN-1 had …

MaleVasodilator AgentsAction PotentialsGlutamic AcidStriatumBiologyPharmacologyGlobus PallidusNitric OxideNitric oxidechemistry.chemical_compoundBasal gangliaPremovement neuronal activityAnimalsEnzyme InhibitorsRats WistarDose-Response Relationship DrugGeneral NeuroscienceGlutamate receptorIontophoresisCorpus StriatumRatsNitric oxide synthaseGlobus pallidusNG-Nitroarginine Methyl Esternervous systemchemistryMolsidomineExcitatory postsynaptic potentialbiology.proteinNeuroscienceNeuroscience letters
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The endocannabinoid system controls key epileptogenic circuits in the hippocampus.

2006

SummaryBalanced control of neuronal activity is central in maintaining function and viability of neuronal circuits. The endocannabinoid system tightly controls neuronal excitability. Here, we show that endocannabinoids directly target hippocampal glutamatergic neurons to provide protection against acute epileptiform seizures in mice. Functional CB1 cannabinoid receptors are present on glutamatergic terminals of the hippocampal formation, colocalizing with vesicular glutamate transporter 1 (VGluT1). Conditional deletion of the CB1 gene either in cortical glutamatergic neurons or in forebrain GABAergic neurons, as well as virally induced deletion of the CB1 gene in the hippocampus, demonstrat…

MaleVesicular glutamate transporter 1HUMDISEASEHippocampusGene ExpressionHippocampal formationHippocampusMembrane Potentialschemistry.chemical_compoundMice0302 clinical medicineReceptor Cannabinoid CB1Premovement neuronal activitygamma-Aminobutyric Acid0303 health sciencesKainic AcidbiologyBehavior AnimalReverse Transcriptase Polymerase Chain Reactionmusculoskeletal neural and ocular physiologyGeneral NeurosciencePyramidal CellsCalcium Channel BlockersEndocannabinoid systemlipids (amino acids peptides and proteins)psychological phenomena and processesmedicine.drugKainic acidNeuroscience(all)MorpholinesGlutamic AcidMice TransgenicNaphthalenesMOLNEUROgamma-Aminobutyric acid03 medical and health sciencesGlutamatergicCannabinoid Receptor ModulatorsmedicineAnimals030304 developmental biologyAnalysis of VarianceEpilepsyBenzoxazinesMice Inbred C57BLnervous systemchemistryCalcium-Calmodulin-Dependent Protein KinasesVesicular Glutamate Transport Protein 1biology.proteinNerve NetSYSNEUROCalcium-Calmodulin-Dependent Protein Kinase Type 2Neuroscience030217 neurology & neurosurgeryEndocannabinoidsNeuron
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Temporal refinement of sensory-evoked activity across layers in developing mouse barrel cortex.

2019

Rhythmic whisking behavior in rodents fully develops during a critical period about 2 weeks after birth, in parallel with the maturation of other sensory modalities and the onset of exploratory locomotion. How whisker-related sensory processing develops during this period in the primary somatosensory cortex (S1) remains poorly understood. Here, we characterized neuronal activity evoked by single- or dual-whisker stimulation patterns in developing S1, before, during and after the occurrence of active whisking. Employing multi-electrode recordings in all layers of barrel cortex in urethane-anesthetized mice, we find layer-specific changes in multi-unit activity for principal and neighboring b…

Maleanimal structuresStimulationSensory systemStimulus (physiology)Somatosensory system03 medical and health sciencesMice0302 clinical medicineEvoked Potentials SomatosensorymedicinePremovement neuronal activityAnimals030304 developmental biologyNeurons0303 health sciencesNeuronal PlasticityChemistryGeneral NeuroscienceWhisking in animalsSomatosensory CortexBarrel cortexmedicine.anatomical_structureCerebral cortexVibrissaeFemaleNeuroscience030217 neurology & neurosurgeryThe European journal of neuroscienceREFERENCES
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Comparative investigations on the actions of ACTH1-24, somatostatin, neurotensin, substance P and vasopressin on locus coeruleus neuronal activity in…

1987

A considerable number of neuropeptides have been localized immunohistochemically in the area of the locus coeruleus of the rat. The objective of this study was to assess the actions of some of these transmitter candidates on spontaneously active locus coeruleus neurons in vitro. The effects of bath-applied peptides on the discharge rate of individual locus coeruleus neurons were investigated. A midpontine slice preparation of the gerbil brain was used. Excitatory dose-dependent effects were found with four peptides with the following rank order of potency: Substance P, (Arg8)-vasopressin, neurotensin, ACTH1–24. Somatostatin hyperpolarized all neurons tested. Given the pronounced effects see…

Maleendocrine systemmedicine.medical_specialtyVasopressinVasopressinsNeuropeptideSubstance PIn Vitro TechniquesSubstance Pchemistry.chemical_compoundSlice preparationInternal medicinemedicinePremovement neuronal activityAnimalsNeurotensinPharmacologyNeuronsChemistryNeuropeptidesGeneral MedicineArginine VasopressinEndocrinologySomatostatinnervous systemLocus coeruleusCosyntropinLocus CoeruleusGerbillinaeSomatostatinhormones hormone substitutes and hormone antagonistsNeurotensinNaunyn-Schmiedeberg's archives of pharmacology
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