Search results for "neuron"

showing 10 items of 2611 documents

Three Patterns of Oscillatory Activity Differentially Synchronize Developing Neocortical Networks In Vivo

2009

Coordinated patterns of electrical activity are important for the early development of sensory systems. The spatiotemporal dynamics of these early activity patterns and the role of the peripheral sensory input for their generation are essentially unknown. We performed extracellular multielectrode recordings in the somatosensory cortex of postnatal day 0 to 7 rats in vivo and observed three distinct patterns of synchronized oscillatory activity. (1) Spontaneous and periphery-driven spindle bursts of 1-2 s in duration and approximately 10 Hz in frequency occurred approximately every 10 s. (2) Spontaneous and sensory-driven gamma oscillations of 150-300 ms duration and 30-40 Hz in frequency oc…

PeriodicityJournal ClubAction PotentialsSensory systemStimulationNeurotransmissionBiologySomatosensory systemSynaptic TransmissionBrain mappingFunctional LateralityStatistics NonparametricBiological ClocksEvoked Potentials SomatosensoryBiological neural networkAnimalsAmino AcidsAnesthetics LocalNeuronsBrain MappingSensory stimulation therapyGeneral NeuroscienceAge FactorsLidocaineArticlesSomatosensory CortexElectric StimulationRatsAnimals NewbornVibrissaeNMDA receptorNerve NetNeuroscienceJournal of Neuroscience
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Early patterns of electrical activity in the developing cerebral cortex of humans and rodents.

2006

International audience; During prenatal and early postnatal development, the cerebral cortex exhibits synchronized oscillatory network activity that is believed to be essential for the generation of neuronal cortical circuits. The nature and functional role of these early activity patterns are of central interest in neuroscience. Much of the research is performed in rodents and in vitro, but how closely do these model systems relate to the human fetal brain? In this review, we compare observations in humans with in vivo and in vitro rodent data, focusing on particular oscillatory activity patterns that share many common features: delta brushes, spindle bursts and spindle-like oscillations. …

PeriodicityMESH: PeriodicityRodentPeriod (gene)Central nervous systemModels NeurologicalMESH: NeuronsNeurological disorder[SDV.BC]Life Sciences [q-bio]/Cellular Biology03 medical and health sciences0302 clinical medicineMESH: Models Neurologicalbiology.animalmedicineAnimalsHumansMESH: Animals[SDV.BC] Life Sciences [q-bio]/Cellular Biology030304 developmental biologyCerebral CortexNeurons0303 health sciencesMESH: HumansbiologyGeneral Neurosciencemedicine.diseaseMESH: Cerebral CortexDevelopmental disorderElectrophysiologymedicine.anatomical_structureMESH: Nerve NetCerebral cortexHuman fetalNerve NetPsychologyNeuroscience030217 neurology & neurosurgery
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Decoding Emotional Valence from Electroencephalographic Rhythmic Activity

2017

We attempt to decode emotional valence from electroencephalographic rhythmic activity in a naturalistic setting. We employ a data-driven method developed in a previous study, Spectral Linear Discriminant Analysis, to discover the relationships between the classification task and independent neuronal sources, optimally utilizing multiple frequency bands. A detailed investigation of the classifier provides insight into the neuronal sources related with emotional valence, and the individual differences of the subjects in processing emotions. Our findings show: (1) sources whose locations are similar across subjects are consistently involved in emotional responses, with the involvement of parie…

PeriodicitybrainvastauksetSpectral Linear Discriminant AnalysisEmotionsneuronsEmotional valenceElectroencephalography050105 experimental psychology03 medical and health sciences0302 clinical medicineRhythmMultiple frequencytunteetmedicine0501 psychology and cognitive sciencesEEGta113Communicationmedicine.diagnostic_testbusiness.industry05 social sciencesDiscriminant AnalysisElectroencephalography16. Peace & justiceLinear discriminant analysis113 Computer and information scienceshermosolutEeg activityresponsesaivotbusinessPsychology030217 neurology & neurosurgeryDecoding methodsCognitive psychology
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Metabolic aspects of the rhythmogenesis inAplysia pacemaker neurons

1973

Completely isolatedAplysia pacemaker neurons were used to investigate mechanisms of endogenous electrical rhythmicity. This preparation allows the study of pure pacemaker activity free from synaptic, ephaptic and/or humoral influences from the surrounding cells. The effect of some substances quite different in their mode of biochemical action were tested: sodium iodoacetate, phloridzin, dinitrophenol, heavy water, and ouabain. Each of these substances suppressed the spontaneous spike activity without any marked depolarizing or hyperpolarizing effect. Spontaneous spike activity of the neurons silenced after addition of one of these substances reappeared after addition of glucose. The restori…

Periodicitymedicine.medical_specialtyPhysiologyEphaptic couplingClinical BiochemistryAction PotentialsIodoacetatesEndogenyBiologyOuabainAdenosine TriphosphateATP hydrolysisPhysiology (medical)Internal medicinemedicineAnimalsGlycolysisOuabainNeuronsHydrolysisSodiumDepolarizationDeuteriumbiology.organism_classificationCell biologyGlucosePhlorhizinEndocrinologyMolluscaAplysiaDinitrophenolGlycolysisDinitrophenolsmedicine.drugPflügers Archiv
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A common thread for pain and memory synapses? Brain-derived neurotrophic factor and trkB receptors.

2003

Recent evidence indicates that trophic factors can exert fast effects on neurones and so alter synaptic plasticity. Here, we focus on brain-derived neurotrophic factor (BDNF), which exerts a modulatory action at hippocampal synapses that are involved in learning and memory, and at the first pain synapse between primary sensory neurones and dorsal horn neurones. Hippocampal and sensory neurones share some properties for the release of endogenous BDNF. In the Schaffer collateral pathway of the hippocampus, binding of BDNF to high-affinity trkB receptors is essential for the induction of long-term potentiation, a specific type of synaptic plasticity. However, the consequences of BDNF binding t…

PharmacologyBrain-derived neurotrophic factorBrain-Derived Neurotrophic FactorPainLong-term potentiationTropomyosin receptor kinase BToxicologyHippocampusSynapsemedicine.anatomical_structurenervous systemSchaffer collateralNeurotrophic factorsMemorySynaptic plasticityMetaplasticitySynapsesmedicineHumansReceptor trkBNeurons AfferentPsychologyNeuroscienceTrends in pharmacological sciences
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Activation of Neurogenesis in Multipotent Stem Cells Cultured In Vitro and in the Spinal Cord Tissue After Severe Injury by Inhibition of Glycogen Sy…

2020

AbstractThe inhibition of glycogen synthase kinase-3 (GSK-3) can induce neurogenesis, and the associated activation of Wnt/β-catenin signaling via GSK-3 inhibition may represent a means to promote motor function recovery following spinal cord injury (SCI) via increased astrocyte migration, reduced astrocyte apoptosis, and enhanced axonal growth. Herein, we assessed the effects of GSK-3 inhibition in vitro on the neurogenesis of ependymal stem/progenitor cells (epSPCs) resident in the mouse spinal cord and of human embryonic stem cell–derived neural progenitors (hESC-NPs) and human-induced pluripotent stem cell–derived neural progenitors (hiPSC-NPs) and in vivo on spinal cord tissue regenera…

PharmacologyNeurogenesisWnt signaling pathwayNeuronesBiologySpinal cordmedicine.diseaseEmbryonic stem cellCell biologyNeurologiamedicine.anatomical_structuremedicinePharmacology (medical)Neurology (clinical)Progenitor cellStem cellCèl·lules mareSpinal cord injuryAstrocyte
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The action of iontophoretically applied acetylcholine and dopamine on single claustrum neurones in the cat.

1981

Abstract The effects of iontophoretically applied acetyl-choline (ACh) and dopamine (DA) on spontaneously active claustral neurones, in chloralose-anaesthetised cats, have been investigated. Acetylcholine had both facilitatory and inhibitory effects in almost the same proportions. The action of DA was prevalently inhibitory. Two types of inhibitory response to ACh and DA are described: short-lasting inhibition and long-lasting inhibition. The excitatory response always outlasted the period of drug application.

PharmacologyNeuronsCATSChemistryDopamineNeural InhibitionDrug applicationIontophoresisInhibitory postsynaptic potentialClaustrumAcetylcholineBasal GangliaCellular and Molecular NeuroscienceDopamineExcitatory postsynaptic potentialmedicineCatsAnimalsNeuroscienceAcetylcholinemedicine.drugNeuropharmacology
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The cholinergic 'pitfall': acetylcholine, a universal cell molecule in biological systems, including humans.

1999

1. Acetylcholine (ACh) represents one of the most exemplary neurotransmitters. In addition to its presence in neuronal tissue, there is increasing experimental evidence that ACh is widely expressed in pro- and eukaryotic non-neuronal cells. Thus, ACh has been detected in bacteria, algae, protozoa, tubellariae and primitive plants, suggesting an extremely early appearance of ACh in the evolutionary process. 2. In humans, ACh and/or the synthesizing enzyme, choline acetyltransferase, has been demonstrated in epithelial cells (airways, alimentary tract, urogenital tract, epidermis), mesothelial (pleura, pericardium) and endothelial and muscle cells. In addition, immune cells express the non-ne…

PharmacologyNeuronsPhysiologyCellular differentiationBiologyCholine acetyltransferaseAcetylcholineCell biologyEvolution MolecularParacrine signallingNicotinic agonistBiochemistryPhysiology (medical)Muscarinic acetylcholine receptormedicineCholinergicAnimalsCholinesterasesHumansAcetylcholinemedicine.drugCalcium signalingClinical and experimental pharmacologyphysiology
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DMPP and the adrenergic nerve terminal: mechanisms of noradrenaline release from vesicular and extravesicular compartments.

1977

DMPP (1,1-dimethyl-4-phenylpiperazine) in various concentrations between 1.6×10−6 M and 6.2×10−5 M was infused into isolated rabbit hearts to study the neuronal release and uptake of noradrenaline.

PharmacologyNeuronsmedicine.medical_specialtySympathetic Nervous SystemChemistryMyocardiumPharmacology toxicologyAdrenergicMyocardium metabolismHeartGeneral MedicinePharmacologyIn Vitro TechniquesPiperazinesNorepinephrineEndocrinologyInternal medicinemedicineAnimalsNorepinephrine metabolismRabbitsDimethylphenylpiperazinium IodideNaunyn-Schmiedeberg's archives of pharmacology
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Acetylcholine beyond neurons: the non-neuronal cholinergic system in humans

2008

Animal life is controlled by neurons and in this setting cholinergic neurons play an important role. Cholinergic neurons release ACh, which via nicotinic and muscarinic receptors (n- and mAChRs) mediate chemical neurotransmission, a highly integrative process. Thus, the organism responds to external and internal stimuli to maintain and optimize survival and mood. Blockade of cholinergic neurotransmission is followed by immediate death. However, cholinergic communication has been established from the beginning of life in primitive organisms such as bacteria, algae, protozoa, sponge and primitive plants and fungi, irrespective of neurons. Tubocurarine- and atropine-sensitive effects are obser…

PharmacologyNicotinic agonistMuscarinic acetylcholine receptormedicineCholinergicBiologySignal transductionCholinergic neuronReceptorNeuroscienceAcetylcholineAcetylcholine receptormedicine.drugBritish Journal of Pharmacology
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