Search results for "Cerebral Cortex"

showing 10 items of 529 documents

Aß(25-35) and its C-and/or N-blocked derivatives: copper driven structural features and neurotoxicity

2006

The toxic properties of beta-amyloid protein, Abeta(1-42), the major component of senile plaques in Alzheimer's disease, depend on nucleation-dependent oligomerization and aggregation. In addition, Abeta(1-42) toxicity is favored by the presence of trace metals, which affect the secondary structure of the peptide. A peptide comprising 11 residues within Abeta(1-42) [Abeta(25-35)] aggregates and retains the neurotoxic activity of Abeta(1-42). We have used both Abeta(25-35) and its C-amidated or N-acetylated/C-amidated derivatives to investigate the role of copper(II) in modulating the conformation and aggregation state as well as the neurotoxic properties of amyloid peptides. Electrospray io…

Circular dichroismSpectrometry Mass Electrospray IonizationAmyloidProtein Conformationb-amyloidNeurotoxinsPeptideMicroscopy Atomic ForceCellular and Molecular NeuroscienceProtein structuremental disordersmedicineAnimalsSenile plaqueschemistry.chemical_classificationCerebral CortexNeuronsAmyloid beta-PeptidesCircular DichroismCopper toxicityNeurotoxicityP3 peptideElectron Spin Resonance SpectroscopyAlzheimer's diseasemedicine.diseasePeptide Fragmentsnervous system diseasesRatschemistryBiochemistrycopperModels AnimalBiophysicsAlzheimer’s disease
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Cellular Mechanisms of Subplate-Driven and Cholinergic Input-Dependent Network Activity in the Neonatal Rat Somatosensory Cortex

2008

Early coordinated network activity promotes the development of cortical structures. Although these early activity patterns have been recently characterized with respect to their developmental, spatial and dynamic properties, the cellular mechanisms by which specific neuronal populations trigger coordinated activity in the neonatal cerebral cortex are still poorly understood. Here we characterize the cellular and molecular processes leading to generation of network activity during early postnatal development. We show that the somatosensory cortex of newborn rats expresses cholinergic-driven calcium transients which are synchronized within the deeply located subplate. Correspondingly, endogen…

Cognitive NeuroscienceBiologyNeurotransmissionSomatosensory systemSynaptic Transmissiongamma-Aminobutyric acidCellular and Molecular NeuroscienceGlutamatergicBiological ClocksSubplatemedicineAnimalsCalcium SignalingRats WistarCells Culturedgamma-Aminobutyric AcidNeuronsDepolarizationSomatosensory CortexAcetylcholineRatsmedicine.anatomical_structureAnimals NewbornCerebral cortexGABAergicNerve NetNeurosciencemedicine.drugCerebral Cortex
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A Mutually Stimulating Loop Involving Emx2 and Canonical Wnt Signalling Specifically Promotes Expansion of Occipital Cortex and Hippocampus

2005

The correct size of the different areas composing the mature cerebral cortex depends on the proper early allocation of cortical progenitors to their distinctive areal fates, as well as on appropriate subsequent tuning of their area-specific proliferation--differentiation profiles. Whereas much is known about the genetics of the former process, the molecular mechanisms regulating proliferation and differentiation rates within distinctive cortical proto-areas are still largely obscure. Here we show that a mutual stimulating loop, involving Emx2 and canonical Wnt signalling, specifically promotes expansion of the occipito-hippocampal anlage. Collapse of this loop occurring in Emx2 2/2 mutants …

Cognitive NeuroscienceEMX2HippocampusSettore BIO/11 - Biologia MolecolareProneural genescell cycle genesBiologyHippocampusMiceCellular and Molecular NeuroscienceCortex (anatomy)medicineAnimalsWnt signallingHomeodomain ProteinsNeuronsproneural genesStem CellsGene Expression Regulation DevelopmentalCell DifferentiationCell cycleareal sizingCell Cycle GeneMice Mutant StrainsWnt Proteinsmedicine.anatomical_structureCerebral cortexEmx2Occipital LobeOccipital lobeareal sizing; Emx2; Wnt signalling; cell cycle genes; proneural genesNeuroscienceCell DivisionSignal TransductionTranscription FactorsCerebral Cortex
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Distinct Patterns of Functional Connectivity During the Comprehension of Natural, Narrative Speech.

2020

Recent continuous task studies, such as narrative speech comprehension, show that fluctuations in brain functional connectivity (FC) are altered and enhanced compared to the resting state. Here, we characterized the fluctuations in FC during comprehension of speech and time-reversed speech conditions. The correlations of Hilbert envelope of source-level EEG data were used to quantify FC between spatially separate brain regions. A symmetric multivariate leakage correction was applied to address the signal leakage issue before calculating FC. The dynamic FC was estimated based on a sliding time window. Then, principal component analysis (PCA) was performed on individually concatenated and te…

Computer Networks and CommunicationsSpeech comprehension050105 experimental psychologyTask (project management)03 medical and health sciences0302 clinical medicineConnectomeNatural (music)Humans0501 psychology and cognitive sciencesNarrativeCerebral CortexPrincipal Component AnalysisNeuronal PlasticityResting state fMRIFunctional connectivity05 social sciencesElectroencephalographySignal Processing Computer-AssistedGeneral MedicineComprehensionSpeech PerceptionNerve NetPsychologyComprehension030217 neurology & neurosurgeryCognitive psychologyInternational journal of neural systems
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On-line Coordination in Complex Goal-directed Movements: a Matter of Interactions between Several Loops.

2012

International audience; Motor flexibility is the ability to rapidly modify behavior when unexpected perturbations occur. In goal directed movements, this process may be involved during the motor execution itself, by using on-line motor corrections, or off-line, on a trial-by-trial basis. A consensus has emerged to describe and unify these two dependant processes within the framework of the internal models theory in which the cerebellum is involved in error processing. However, this general framework may be incomplete to describe on-line motor corrections when complex motor coordination is involved in the task. In particular, interaction torques existing between different effectors limit the…

Computer scienceProcess (engineering)Movement050105 experimental psychology[SPI.AUTO]Engineering Sciences [physics]/Automatic03 medical and health sciences0302 clinical medicineControl theory[ SPI.AUTO ] Engineering Sciences [physics]/AutomaticNeural PathwaysReaction TimeAnimalsHumans0501 psychology and cognitive sciencesCerebral CortexFlexibility (engineering)Communicationbusiness.industryGeneral Neuroscience[SCCO.NEUR]Cognitive science/Neuroscience05 social sciences[SCCO.NEUR] Cognitive science/NeuroscienceMotor controlEfference copy16. Peace & justiceMotor coordinationDegrees of freedom problem[SPI.AUTO] Engineering Sciences [physics]/Automatic[ SCCO.NEUR ] Cognitive science/NeuroscienceNerve NetMotor learningbusinessGoalsMotor goalPsychomotor Performance030217 neurology & neurosurgery
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Auditory discrimination profiles of speech sound changes in 6-year-old children as determined with the multi-feature MMN paradigm.

2009

Objective: A linguistic multi-feature mismatch negativity (MMN) paradigm with five types of changes (vowel, vowel-duration, consonant, frequency (F0), and intensity) in Finnish syllables was used to determine speech-sound discrimination in 17 normally-developing 6-year-old children. The MMNs for vowel and vowel-duration were also recorded in an oddball condition in order to compare the two paradigms. Similar MMNs in the two paradigms would suggest that they tap the same processes. This would promote the usefulness of the more time-efficient multi-feature paradigm for future studies in children. Methods: MMNs to five deviant types were recorded in the multi-feature paradigm in which these de…

ConsonantMalemedicine.medical_specialtyAgingSpeech perceptionMismatch negativityAudiology050105 experimental psychologyPitch Discrimination03 medical and health sciences0302 clinical medicineSpeech discriminationCommunication disorderPhysiology (medical)VowelmedicineHumansLearning0501 psychology and cognitive sciencesLanguage disorderChildOddball paradigmFinlandLanguageCerebral CortexBrain MappingLanguage Tests05 social sciencesElectroencephalographymedicine.diseaseSensory SystemsMemory Short-TermNeurologyAcoustic StimulationSpeech PerceptionFemaleNeurology (clinical)Psychology030217 neurology & neurosurgeryClinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology
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Cajal–Retzius and subplate cells: transient cortical neurons and circuits with long-term impact

2020

Abstract The laminar and columnar organization of the mature cerebral cortex is determined by a variety of early developmental processes. Two distinct populations of early generated neurons play important roles in corticogenesis. Cajal–Retzius neurons, located in the marginal zone (later layer 1), control the formation of neocortical layers by releasing the extracellular matrix protein reelin, which serves as a guiding signal for migrating neurons. Subplate neurons in the lower neocortical layer play an active role in axonal pathfinding of thalamocortical connections and in transient synaptic circuits, influence early cortical plasticity and the maturation of the columnar architecture. Both…

Cortical neuronsBiologyMarginal zoneExtracellular matrixCorticogenesismedicine.anatomical_structurenervous systemCerebral cortexSubplateNeuroplasticitymedicinebiology.proteinReelinNeuroscience
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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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Electrical activity patterns and the functional maturation of the neocortex

2011

At the earliest developmental stages, sensory neocortical areas in various species reveal distinct patterns of spontaneous neuronal network activity. These activity patterns either propagate over large neocortical areas or synchronize local neuronal ensembles. In vitro and in vivo experiments indicate that these spontaneous activity patterns are generated from neuronal networks in the cerebral cortex, in subcortical structures or in the sensory periphery (retina, cochlea, whiskers). At early stages spontaneous periphery-driven and also sensory evoked activity is relayed to the developing cerebral cortex via the thalamus and the neocortical subplate, which amplifies the afferent sensory inpu…

Corticogenesismedicine.anatomical_structureNeocortexCerebral cortexGeneral NeuroscienceSubplateThalamusmedicinePremovement neuronal activitySensory systemBiologySomatosensory systemNeuroscienceEuropean Journal of Neuroscience
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'Up-regulation of histone acetylation induced by social defeat mediates the conditioned rewarding effects of cocaine

2016

Social defeat (SD) induces a long-lasting increase in the rewarding effects of psychostimulants measured using the self-administration and conditioned place procedures (CPP). However, little is known about the epigenetic changes induced by social stress and about their role in the increased response to the rewarding effects of psychostimulants. Considering that histone acetylation regulates transcriptional activity and contributes to drug-induced behavioral changes, we addressed the hypothesis that SD induces transcriptional changes by histone modifications associated with the acquisition of place conditioning. After a fourth defeat, H3(K9) acetylation was decreased in the hippocampus, whil…

Dominance-SubordinationMaleCurcuminHippocampusSpatial BehaviorPharmacologyHippocampusChromatin remodelingEpigenesis GeneticSocial defeatHistone H4Histones03 medical and health sciencesMice0302 clinical medicineRewardCocaineConditioning PsychologicalValproic acidAnimalsEpigeneticsBiological PsychiatryHistone AcetyltransferasesPharmacologySocial stressCerebral CortexbiologyValproic AcidAcetylation030227 psychiatryUp-RegulationHistone Deacetylase InhibitorsDisease Models AnimalHistoneHistone acetylationAcetylationbiology.proteinCentral Nervous System StimulantsPsychologySocial defeat stress030217 neurology & neurosurgeryStress Psychological
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