Search results for "electrical synapses"

showing 5 items of 5 documents

Neuronal Activity Patterns in the Developing Barrel Cortex

2017

International audience; The developing barrel cortex reveals a rich repertoire of neuronal activity patterns, which have been also found in other sensory neocortical areas and in other species including the somatosensory cortex of preterm human infants. The earliest stage is characterized by asyn-chronous, sparse single-cell firing at low frequencies. During the second stage neurons show correlated firing, which is initially mediated by electrical synapses and subsequently transforms into network bursts depending on chemical synapses. Activity patterns during this second stage are synchronous plateau assemblies, delta waves, spindle bursts and early gamma oscillations (EGOs). In newborn rod…

0301 basic medicineRodentiaSensory systemReviewDevelopmentBiologySomatosensory systemRodentsGABA03 medical and health sciences0302 clinical medicineAnimalsPremovement neuronal activity[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Cortical SynchronizationNeuronsSensory-evoked activitySensory stimulation therapyGeneral NeuroscienceSomatosensory CortexBarrel cortexBrain WavesSpontaneous activityDelta wave030104 developmental biologyElectrical Synapses[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Neuroscience030217 neurology & neurosurgeryCortical SynchronizationNeuroscience
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Modulation of Neocortical Development by Early Neuronal Activity: Physiology and Pathophysiology.

2017

Animal and human studies revealed that patterned neuronal activity is an inherent feature of developing nervous systems. This review summarizes our current knowledge about the mechanisms generating early electrical activity patterns and their impact on structural and functional development of the cerebral cortex. All neocortical areas display distinct spontaneous and sensory-driven neuronal activity patterns already at early phases of development. At embryonic stages, intermittent spontaneous activity is synchronized within small neuronal networks, becoming more complex with further development. This transition is accompanied by a gradual shift from electrical to chemical synaptic transmiss…

0301 basic medicinesomatosensory cortexReviewBiologylcsh:RC321-57103 medical and health sciencesCellular and Molecular Neurosciencechemistry.chemical_compound0302 clinical medicineSubplatemedicinePremovement neuronal activityhumanddc:610Neurotransmitterlcsh:Neurosciences. Biological psychiatry. Neuropsychiatrydevelopmentspontaneous activityNeocortexGlutamate receptorrodentChemical synaptic transmission030104 developmental biologymedicine.anatomical_structureElectrical SynapseschemistryCerebral cortexsubplatecerebral cortexNeuroscience030217 neurology & neurosurgeryNeuroscience
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Cell Systems Bioelectricity: How Different Intercellular Gap Junctions Could Regionalize a Multicellular Aggregate

2021

Simple Summary Electric potential patterns across tissues are instructive for development, regeneration, and tumorigenesis because they can influence transcription, migration, and differentiation through biochemical and biomechanical downstream processes. Determining the origins of the spatial domains of distinct potential, which in turn decide anatomical features such as limbs, eyes, brain, and heart, is critical to a mature understanding of how bioelectric signaling drives morphogenesis. We studied theoretically how connexin proteins with different voltage-gated gap junction conductances can maintain multicellular regions at distinct membrane potentials. We analyzed a minimal model that i…

Membrane potentialCancer ResearchChemistryelectric potential patternsCellGap junctioncell bioelectricityConnexinNeoplasms. Tumors. Oncology. Including cancer and carcinogension channelsArticleMulticellular organismtumorigenesismedicine.anatomical_structureElectrical SynapsesOncologyEvolutionary developmental biologymedicineintercellular gap junctionsNeuroscienceIon channelRC254-282Cancers
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Downregulation of the Astroglial Connexin Expression and Neurodegeneration after Pilocarpine-Induced Status Epilepticus

2022

Astrocytic networks and gap junctional communication mediated by connexins (Cxs) have been repeatedly implicated in seizures, epileptogenesis, and epilepsy. However, the effect of seizures on Cx expression is controversial. The present study focused on the response of Cxs to status epilepticus (SE), which is in turn an epileptogenic insult. The expression of neuronal Cx36 and astrocytic Cx30 and Cx43 mRNAs was investigated in the brain of rats in the first day after pilocarpine-induced SE. In situ hybridization revealed a progressive decrease in Cx43 and Cx30 mRNA levels, significantly marked 24 h after SE onset in neocortical areas and the hippocampus, and in most thalamic domains, whereas…

electrical synapsesOrganic ChemistryastrocytesneurodegenerationGeneral MedicineSettore BIO/09 - FisiologiaCatalysisComputer Science ApplicationsneuroinflammationInorganic Chemistrygap junctions; electrical synapses; neurodegeneration; neuroinflammation; astrocytes; epilepsyepilepsyPhysical and Theoretical ChemistryMolecular BiologySpectroscopygap junctions
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Distribution and Function of Gap Junction Coupling in Cortical GABAergic Neurons.

2013

Although gap junctions have been observed in GABAergic interneurons of several brain regions, this chapter focuses on the distribution and functions of gap junctions and connexins in inhibitory interneurons of the cerebral cortex and hippocampus. Evidence for interconnections mediated by electrical synapses is reported for at least eight cerebral cortex interneuron types, classified on the basis of morphology, electrophysiology and molecular markers. The main differences in the organization of these interneuronal networks are summarized in terms of homologous and heterologous electrical coupling and mutual chemical inhibition. The role of connexin36 (Cx36) in forming neuronal electrical syn…

genetic structuresInterneuronGAP Junction GABAergic neuronsmusculoskeletal neural and ocular physiologyImmunoelectron microscopyGap junctionHippocampusSettore BIO/11 - Biologia MolecolareBiologySettore BIO/09 - Fisiologiamedicine.anatomical_structureElectrical Synapsesnervous systemCerebral cortexSettore BIO/10 - BiochimicaSynaptic plasticitymedicineGABAergicNeuroscience
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