Search results for "Excitatory postsynaptic potential"

showing 10 items of 151 documents

Altered morphological and electrophysiological properties of Cajal-Retzius cells in cerebral cortex of embryonic Presenilin-1 knockout mice

2004

Mutations of Presenilin-1 are the major cause of familial Alzheimer's disease. Presenilin-1 knockout (PS1-/-) mice develop severe cortical dysplasia related to human type 2 lissencephaly. This overmigration syndrome has been attributed to the premature loss of Cajal-Retzius cells (CRcs), pioneer neurons required for the termination of radial neuronal migration. To elucidate the potential cellular mechanisms responsible for this premature neuronal loss, we investigated the morphological and electrophysiological properties of visually identified CRcs of wild-type (WT) and PS1-/- mouse brains at embryonic day 16.5. The density of CRcs was substantially reduced in the cerebral cortex of PS1-/-.…

Cell Adhesion Molecules NeuronalNerve Tissue ProteinsBiologyBicucullineMembrane PotentialsGABA AntagonistsMicemental disordersExcitatory Amino Acid AgonistsPresenilin-1medicineAnimalsneoplasms6-Cyano-7-nitroquinoxaline-23-dioneCerebral CortexMice KnockoutNeuronsMembrane potentialExtracellular Matrix ProteinsGABAA receptorStem CellsGeneral NeuroscienceSerine EndopeptidasesExcitatory Postsynaptic PotentialsMembrane ProteinsCortical dysplasiaBicucullineEmbryo Mammalianmedicine.diseaseImmunohistochemistryElectric Stimulationdigestive system diseasesnervous system diseasesCell biologyReelin ProteinElectrophysiologymedicine.anatomical_structure2-Amino-5-phosphonovaleratenervous systemCerebral cortexKnockout mouseExcitatory postsynaptic potentialExcitatory Amino Acid AntagonistsNeurosciencemedicine.drugEuropean Journal of Neuroscience
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Electrophysiological Investigations of Retinogeniculate and Corticogeniculate Synapse Function

2019

The lateral geniculate nucleus is the first relay station for the visual information. Relay neurons of this thalamic nucleus integrate input from retinal ganglion cells and project it to the visual cortex. In addition, relay neurons receive top-down excitation from the cortex. The two main excitatory inputs to the relay neurons differ in several aspects. Each relay neuron receives input from only a few retinogeniculate synapses, which are large terminals with many release sites. This is reflected by the comparably strong excitation, the relay neurons receive, from retinal ganglion cells. Corticogeniculate synapses, in contrast, are simpler with few release sites and weaker synaptic strength…

Cerebral CortexGeneral Immunology and MicrobiologyOptic tractChemistryGeneral Chemical EngineeringGeneral NeuroscienceLateral geniculate nucleusRetinal ganglionGeneral Biochemistry Genetics and Molecular BiologySynapseMiceElectrophysiologymedicine.anatomical_structureVisual cortexSynapsesmedicineExcitatory postsynaptic potentialAnimalsVisual PathwaysNeuronNeuroscienceJournal of Visualized Experiments
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The role of the claustrum in the bilateral control of frontal oculomotor neurons in the cat.

1991

The effect of claustrum (CL) stimulation on the spontaneous unitary activity of ipsi and contralateral frontal oculomotor neurons, was studied in chloralose-anaesthetized cats. A total of 205 units was bilaterally recorded in the medial oculomotor area, homologous of the primate "frontal eye fields"; 127 neurons were identified as projecting to the superior colliculus; for 33 of these last units stimulation of the ipsilateral CL provoked an excitatory effect lasting 10-25 ms and appearing with a latency of 5-15 ms; on 8 units the excitatory effect was followed by an inhibition lasting 100-250 ms. Ninety-eight of the 127 neurons were also tested through activation of the contralateral CL: 13…

Cerebral CortexNeuronsSuperior ColliculiOculomotor nerveGeneral NeuroscienceSuperior colliculusElectroencephalographyAnatomyFrontal eye fieldsBiologyCorpus callosumClaustrumBasal GangliaElectric StimulationStereotaxic Techniquesmedicine.anatomical_structureOculomotor NerveCerebral cortexStereotaxic techniqueNeural PathwaysmedicineExcitatory postsynaptic potentialCatsAnimalsNeuroscienceExperimental brain research
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Neural inflammation alters synaptic plasticity probed by 10 Hz repetitive magnetic stimulation

2020

ABSTRACTSystemic inflammation is associated with alterations in complex brain functions such as learning and memory. However, diagnostic approaches to functionally assess and quantify inflammation-associated alterations in synaptic plasticity are not well-established. In previous work, we demonstrated that bacterial lipopolysaccharide (LPS)-induced systemic inflammation alters the ability of hippocampal neurons to express synaptic plasticity, i.e., the long-term potentiation (LTP) of excitatory neurotransmission. Here, we tested whether synaptic plasticity induced by repetitive magnetic stimulation (rMS), a non-invasive brain stimulation technique used in clinical practice, is affected by L…

ChemistryBrain stimulationSynaptic plasticityExcitatory postsynaptic potentialStimulationTumor necrosis factor alphaLong-term potentiationNeurotransmissionHippocampal formationNeuroscience
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A current source density analysis of field potentials evoked in slices of visual cortex

1987

The method of one-dimensional current source density (CSD) analysis was applied to field potentials recorded from 350 microns thick slices of the primary visual cortex of rats and cats. Field potentials were elicited by stimulation of the white matter and recorded along trajectories perpendicular to the cortical layers at spatial intervals of 25 to 50 microns. The resulting CSD distributions resembled closely those recorded from the cat visual cortex "in vivo". The responses with the shortest latency were distinct sinks in layers IV and VI probably reflecting monosynaptic EPSP's from specific thalamic afferents. From layer IV activity was relayed along three major routes: 1. to the supragra…

ChemistryGeneral NeuroscienceAge FactorsRats Inbred StrainsStimulationIn Vitro TechniquesStimulus (physiology)Current sourceElectric StimulationRatsWhite matterVisual cortexmedicine.anatomical_structureIn vivoDensity analysisCatsReaction TimeExcitatory postsynaptic potentialmedicineBiophysicsAnimalsEvoked Potentials VisualNeuroscienceVisual CortexExperimental Brain Research
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Long-Term Potentiation in the Recurrent Inhibitory Circuit of the Dentate Gyrus

1988

The question of whether long-term potentiation occurs in the inhibitory circuits of the hippocampus remains controversial. Buszaki and Eidelberg (1982), recording extracellularly from putative interneurones (basket cells) in the dentate gyrus and area CAl of the anaesthetized rat, found a prolonged increase in probability of cell firing to afferent stimulation after high-frequency stimulation of Schaffer-commissural fibres, and concluded that LTP occurs at excitatory feedforward synapses onto interneurones. Similarly, Kairis et al (1987) have presented field potential evidence for LTP in feedforward synapses onto inhibitory neurones in the dentate gyrus of the anaesthetized rat. In the hipp…

Chemistrymusculoskeletal neural and ocular physiologyDentate gyrusHippocampusLong-term potentiationPerforant pathInhibitory postsynaptic potentialGranule cellmedicine.anatomical_structurenervous systemBasket cellmedicineExcitatory postsynaptic potentialNeuroscience
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Sparse Distributed Representation of Odors in a Large-scale Olfactory Bulb Circuit

2013

In the olfactory bulb, lateral inhibition mediated by granule cells has been suggested to modulate the timing of mitral cell firing, thereby shaping the representation of input odorants. Current experimental techniques, however, do not enable a clear study of how the mitral-granule cell network sculpts odor inputs to represent odor information spatially and temporally. To address this critical step in the neural basis of odor recognition, we built a biophysical network model of mitral and granule cells, corresponding to 1/100th of the real system in the rat, and used direct experimental imaging data of glomeruli activated by various odors. The model allows the systematic investigation and g…

Circuit ModelsMaleNerve net0302 clinical medicineLateral inhibitionOdorlcsh:QH301-705.5NeuronsFeedback PhysiologicalCoding Mechanisms0303 health sciencesNeuronal PlasticityEcologyAnatomyOlfactory BulbSynapseSensory Systemsmedicine.anatomical_structureComputational Theory and MathematicsModeling and SimulationExcitatory postsynaptic potentialResearch ArticleModels NeurologicalBiologyInhibitory postsynaptic potential03 medical and health sciencesCellular and Molecular NeuroscienceGeneticNeuroplasticityGeneticsmedicineAnimalsComputer SimulationBiologyMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biologyComputational NeuroscienceOlfactory SystemAnimalComputational BiologyNeuronEcology Evolution Behavior and SystematicRatsOlfactory bulbOdorlcsh:Biology (General)OdorantsSynapsesSynaptic plasticityRatNerve NetNeuroscience030217 neurology & neurosurgeryNeuroscience
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Haploinsufficiency of Tsc2 Leads to Hyperexcitability of Medial Prefrontal Cortex via Weakening of Tonic GABAB Receptor-mediated Inhibition.

2020

Abstract Loss-of-function mutation in one of the tumor suppressor genes TSC1 or TSC2 is associated with several neurological and psychiatric diseases, including autism spectrum disorders (ASDs). As an imbalance between excitatory and inhibitory neurotransmission, E/I ratio is believed to contribute to the development of these disorders, we investigated synaptic transmission during the first postnatal month using the Tsc2+/− mouse model. Electrophysiological recordings were performed in acute brain slices of medial prefrontal cortex. E/I ratio at postnatal day (P) 15–19 is increased in Tsc2+/− mice as compared with wildtype (WT). At P25–30, facilitated GABAergic transmission reduces E/I rati…

Cognitive NeurosciencePrefrontal CortexMice TransgenicHaploinsufficiencyGABAB receptorNeurotransmissionInhibitory postsynaptic potentialSynaptic TransmissionTonic (physiology)03 medical and health sciencesCellular and Molecular Neurosciencechemistry.chemical_compound0302 clinical medicineTuberous Sclerosis Complex 2 ProteinAnimalsPrefrontal cortex030304 developmental biologyNeurons0303 health sciencesChemistryElectrophysiologyBaclofenReceptors GABA-BExcitatory postsynaptic potentialNeuroscience030217 neurology & neurosurgeryCerebral cortex (New York, N.Y. : 1991)
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Modulation of excitatory and inhibitory circuits for visual awareness in the human right parietal cortex.

2005

The balance of specific patterns of excitation and inhibition in critical regions of both hemispheres could be relevant in orienting attention over the extrapersonal space. In the present study a group of normal subjects had to detect small rectangular stimuli presented briefly on a computer screen in three different conditions: unilateral presentation either to left or right visual periphery or bilateral simultaneous presentation. Paired transcranial magnetic stimulation (TMS), was applied over the right parietal cortex 150 ms after the presentation of the visual stimuli with different inter-stimulus intervals (ISIs: 1, 3,5 and 10 ms). When paired TMS was applied 150 ms, but not 100 ms, af…

Cortical excitability; Neglect; Supramodal integration; TMS; Visuospatial attention;AdultMalemedicine.medical_specialtyNeurologyVisual perceptionVisuospatial attentionmedicine.medical_treatmentCentral nervous systemMagnetics; Humans; Awareness; Neural Inhibition; Electric Stimulation; Parietal Lobe; Cognition; Photic Stimulation; Adult; Space Perception; Neuropsychological Tests; Visual Pathways; Attention; Visual Perception; Female; Functional Laterality; Male; Reaction TimePosterior parietal cortexCortical excitability Neglect Supramodal integration TMS Visuospatial attentionNeuropsychological TestsInhibitory postsynaptic potentialFunctional LateralityNOMagneticsCognitionParietal LobemedicineReaction TimeHumansAttentionVisual PathwaysNeglectBalance (ability)Settore M-PSI/02 - Psicobiologia E Psicologia FisiologicaGeneral NeuroscienceCortical excitabilityNeural InhibitionSupramodal integrationAwarenessElectric StimulationTranscranial magnetic stimulationmedicine.anatomical_structureTMSSpace PerceptionExcitatory postsynaptic potentialVisual PerceptionSettore MED/26 - NeurologiaFemalePsychologyNeurosciencePhotic StimulationExperimental brain research
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Nrg1 haploinsufficiency alters inhibitory cortical circuits

2021

Neuregulin 1 (NRG1) and its receptor ERBB4 are schizophrenia (SZ) risk genes that control the development of both excitatory and inhibitory cortical circuits. Most studies focused on the characterization ErbB4 deficient mice. However, ErbB4 deletion concurrently perturbs the signaling of Nrg1 and Neuregulin 3 (Nrg3), another ligand expressed in the cortex. In addition, NRG1 polymorphisms linked to SZ locate mainly in non-coding regions and they may partially reduce Nrg1 expression. Here, to study the relevance of Nrg1 partial loss-of-function in cortical circuits we characterized a recently developed haploinsufficient mouse model of Nrg1 (Nrg1tm1Lex). These mice display SZ-like behavioral d…

Cortical neuronsReceptor ErbB-4Neuregulin-1Gene ExpressionneuronsNeurosciences. Biological psychiatry. NeuropsychiatryHaploinsufficiencyBiologyInhibitory postsynaptic potentialHippocampusMagnetic&nbspMiceInterneuronsNeuregulin 3mental disordersMagnetic resonance spectroscopyAnimalsRNA MessengerneurotransmissionNeuregulin 1GABAergic Neuronsgamma-Aminobutyric AcidInhibitory&nbspCerebral CortexNrg1resonance spectroscopyNeural InhibitionMagnetic Resonance ImagingCortex (botany)Inhibitory neurotransmissionParvalbuminsNeurologyInhibitory Postsynaptic PotentialsCalbindin 2Vesicular Glutamate Transport Protein 1biology.proteinExcitatory postsynaptic potentialSchizophreniaCalretininHaploinsufficiencyCortical&nbspNeuroscienceParvalbuminRC321-571Neurobiology of Disease
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