Search results for "Neural"

showing 10 items of 2783 documents

A population of prenatally generated cells in the rat paleocortex maintains an immature neuronal phenotype into adulthood.

2008

New neurons in the adult brain transiently express molecules related to neuronal development, such as the polysialylated form of neural cell adhesion molecule, or doublecortin (DCX). These molecules are also expressed by a cell population in the rat paleocortex layer II, whose origin, phenotype, and function are not clearly understood. We have classified most of these cells as a new cell type termed tangled cell. Some cells with the morphology of semilunar-pyramidal transitional neurons were also found among this population, as well as some scarce cells resembling semilunar, pyramidal. and fusiform neurons. We have found that none of these cells in layer II express markers of glial cells, m…

MaleCell typeDoublecortin ProteinAntimetabolitesCognitive NeuroscienceNeurogenesisPopulationMice Inbred StrainsNeural Cell Adhesion Molecule L1Receptors N-Methyl-D-AspartateImmunophenotypingRats Sprague-DawleyCellular and Molecular Neurosciencechemistry.chemical_compoundMiceReceptors GlucocorticoidPregnancyAnimalsEntorhinal CortexCyclic adenosine monophosphateeducationeducation.field_of_studyArc (protein)biologyPyramidal CellsStem CellsNeurogenesisAge FactorsPhenotypeDoublecortinCell biologyRatsMicroscopy ElectronchemistryBromodeoxyuridinebiology.proteinSialic AcidsNeural cell adhesion moleculeFemaleNeuroscienceNeurogliaBiomarkersCerebral cortex (New York, N.Y. : 1991)
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The LIM Homeodomain Factor Lhx2 Is Required for Hypothalamic Tanycyte Specification and Differentiation

2014

Hypothalamic tanycytes, a radial glial-like ependymal cell population that expresses numerous genes selectively enriched in embryonic hypothalamic progenitors and adult neural stem cells, have recently been observed to serve as a source of adult-born neurons in the mammalian brain. The genetic mechanisms that regulate the specification and maintenance of tanycyte identity are unknown, but are critical for understanding how these cells can act as adult neural progenitor cells. We observe that LIM (Lin-11, Isl-1, Mec-3)-homeodomain geneLhx2is selectively expressed in hypothalamic progenitor cells and tanycytes. To test the function ofLhx2in tanycyte development, we used an intersectional gene…

MaleCell typeEpendymal CellCellular differentiationNeurogenesisEpendymoglial CellsLIM-Homeodomain Proteinsradial gliaHypothalamusMice TransgenicBiologytanycytesMicemedicineAnimalshypothalamustranscription factorGeneticsTanycyteGeneral NeuroscienceNeurogenesisependymal cellsCell DifferentiationArticlesNeural stem cellCell biologyNeuroepithelial cellmedicine.anatomical_structureembryonic structuresEctopic expressionFemalemetabolismTranscription Factors
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Cell type-specific circuits of cortical layer IV spiny neurons

2003

Sensory signal processing in cortical layer IV involves two major morphological classes of excitatory neurons: spiny stellate and pyramidal cells. It is essentially unknown how these two cell types are integrated into intracortical networks and whether they play different roles in cortical signal processing. We mapped their cell-specific intracortical afferents in rat somatosensory cortex through a combination of whole-cell patch-clamp recordings and caged glutamate photolysis. Spiny stellate cells received monosynaptic excitation and inhibition originating almost exclusively from neurons located within the same barrel. Pyramidal cells, by contrast, displayed additional excitatory inputs fr…

MaleCell typePatch-Clamp TechniquesModels NeurologicalGlutamic AcidNeural InhibitionSensory systemBiologybiocytinSomatosensory systemInhibitory postsynaptic potentiallayer IVsomatosensoryinhibitory inputsddc:590morphologyAnimalsPatch clampRats WistarARTICLEslicesCells CulturedNeuronspyramidal cellAfferent Pathwayscaged glutamatePyramidal CellsGeneral Neurosciencespiny stellate cellfunctional connectivityExcitatory Postsynaptic PotentialsNeural InhibitionSomatosensory CortexelectrophysiologyJRatsexcitatory inputsExcitatory postsynaptic potentialHepatic stellate cellbarrel cortexNeuroscience
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Characterization of oscillatory changes in hippocampus and amygdala after deep brain stimulation of the infralimbic prefrontal cortex

2016

Deep brain stimulation (DBS) is a new investigational therapy that has generated positive results in refractory depression. Although the neurochemical and behavioral effects of DBS have been examined, less attention has been paid to the influence of DBS on the network dynamics between different brain areas, which could contribute to its therapeutic effects. Herein, we set out to identify the effects of 1 h DBS in the infralimbic cortex (IL) on the oscillatory network dynamics between hippocampus and basolateral amygdala (BLA), two regions implicated in depression and its treatment. Urethane-anesthetized rats with bilaterally implanted electrodes in the IL were exposed to 1 h constant stimul…

MaleCentral Nervous System0301 basic medicineTime FactorsPhysiologyDeep Brain Stimulationmedicine.medical_treatmentHippocampusAntidepressantLocal field potentialElectroencephalographyHippocampus0302 clinical medicineNeural PathwaysNeural Circuits and SystemsBrain oscillationsmutual informationPrefrontal cortexOriginal Researchlocal field potentialBehavior Animalmedicine.diagnostic_testChemistryElectroencephalographySignal Processing Computer-AssistedAmygdalamodulatory indexmedicine.anatomical_structureAnesthesiaDeep brain stimulationbrain oscillationsInfralimbic cortexPrefrontal CortexAmygdalaNeurological Conditions Disorders and Treatments03 medical and health sciencesPhysiology (medical)medicineAnimalsRats WistarCognitive and Behavioural NeuroscienceModulatory indexLocal field potentialBrain WavesMutual information030104 developmental biologynervous systemNeuroscience030217 neurology & neurosurgeryBasolateral amygdala
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Aspartoacylase-lacZ knockin mice: an engineered model of Canavan disease.

2011

Canavan Disease (CD) is a recessive leukodystrophy caused by loss of function mutations in the gene encoding aspartoacylase (ASPA), an oligodendrocyte-enriched enzyme that hydrolyses N-acetylaspartate (NAA) to acetate and aspartate. The neurological phenotypes of different rodent models of CD vary considerably. Here we report on a novel targeted aspa mouse mutant expressing the bacterial β-Galactosidase (lacZ) gene under the control of the aspa regulatory elements. X-Gal staining in known ASPA expression domains confirms the integrity of the modified locus in heterozygous aspa lacZ-knockin (aspa(lacZ/+)) mice. In addition, abundant ASPA expression was detected in Schwann cells. Homozygous (…

MaleCentral Nervous SystemCerebellumPathologyAnatomy and PhysiologyCanavan DiseaseMouseMutantlcsh:MedicineNeural HomeostasisBiochemistryMiceNeurobiology of Disease and Regenerationlcsh:ScienceSex CharacteristicsMultidisciplinaryNeuromodulationNeurochemistryGenomicsAnimal ModelsFunctional Genomicsmedicine.anatomical_structureLac OperonNeurologyHomeostatic MechanismsMedicineFemaleNeurochemicalsGenetic EngineeringResearch ArticleNervous System PhysiologyBiotechnologymedicine.medical_specialtyTransgeneCentral nervous systemNeurophysiologyMice TransgenicNeuroimagingBiologyNeurological SystemAmidohydrolasesWhite matterModel OrganismsGeneticsmedicineAnimalsBiologyNeuropeptidesLeukodystrophylcsh:RComputational Biologymedicine.diseaseMolecular biologyCanavan diseaseAspartoacylaseDisease Models AnimalMetabolismnervous systemSmall MoleculesCellular NeuroscienceMetabolic DisordersMutationGenetics of DiseaseNervous System Componentslcsh:QGene FunctionMolecular NeuroscienceAnimal GeneticsNeurosciencePLoS ONE
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Abnormal synchrony and effective connectivity in patients with schizophrenia and auditory hallucinations

2014

Auditory hallucinations (AH) are the most frequent positive symptoms in patients with schizophrenia. Hallucinations have been related to emotional processing disturbances, altered functional connectivity and effective connectivity deficits. Previously, we observed that, compared to healthy controls, the limbic network responses of patients with auditory hallucinations differed when the subjects were listening to emotionally charged words. We aimed to compare the synchrony patterns and effective connectivity of task-related networks between schizophrenia patients with and without AH and healthy controls. Schizophrenia patients with AH (n = 27) and without AH (n = 14) were compared with healt…

MaleCerebellumMVAR multivariate autoregressionHallucinationsAH auditory hallucinationsAuditory hallucinationsBPRS Brief Psychiatric Rating ScaleAudiologylcsh:RC346-429BOLD blood oxygenation level dependentDevelopmental psychologyFunctional connectivityCerebellumNeural PathwaysEffective connectivityICA-TC ICA-time courseFunctional connectivityEmotional stimuliMiddle AgedTemporal LobeICA independent component analysisSynchronymedicine.anatomical_structureNeurologySchizophreniaMRI functional magnetic resonance imaginglcsh:R858-859.7PsychologyAdultmedicine.medical_specialtyCognitive NeuroscienceEmotional processinglcsh:Computer applications to medicine. Medical informaticsArticleYoung AdultmedicineHumansRadiology Nuclear Medicine and imagingIn patientPANSS Positive and Negative Syndrome ScaleCoI component of interestCCTC cortico-cerebellar–thalamic–corticallcsh:Neurology. Diseases of the nervous systemAuditory CortexSPM statistical parametric mapsmedicine.diseaseGCCA Granger causal connectivity analysisAcoustic StimulationFISICA APLICADASchizophreniaAuditory stimuliPSYRATS Psychotic Symptom Rating ScaleNeurology (clinical)NeuroImage: Clinical
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Hippocampo-cerebellar theta band phase synchrony in rabbits.

2009

Hippocampal functioning, in the form of theta band oscillation, has been shown to modulate and predict cerebellar learning of which rabbit eyeblink conditioning is perhaps the most well-known example. The contribution of hippocampal neural activity to cerebellar learning is only possible if there is a functional connection between the two structures. Here, in the context of trace eyeblink conditioning, we show (1) that, in addition to the hippocampus, prominent theta oscillation also occurs in the cerebellum, and (2) that cerebellar theta oscillation is synchronized with that in the hippocampus. Further, the degree of phase synchrony (PS) increased both as a response to the conditioning sti…

MaleCerebellumPeriodicityHippocampusContext (language use)Hippocampal formationHippocampus03 medical and health sciencesRandom Allocation0302 clinical medicineNeural ensembleCerebellummedicineOscillation (cell signaling)AnimalsLearningCortical SynchronizationTheta Rhythm030304 developmental biology0303 health sciencesAnalysis of VarianceGeneral NeuroscienceConditioning EyelidElectrodes Implantedmedicine.anatomical_structurenervous systemEyeblink conditioningPractice PsychologicalRabbitsPsychologyNeuroscience030217 neurology & neurosurgeryCortical SynchronizationNeuroscience
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Changes in intracortical circuits of the human motor cortex following theta burst stimulation of the lateral cerebellum

2008

Objective: The cerebellum takes part in several motor functions through its influence on the motor cortex (M1). Here, we applied the theta burst stimulation (TBS) protocol, a novel form of repetitive Transcranial Magnetic Stimulation (rTMS) over the lateral cerebellum. The aim of this study was to test whether TBS of the lateral cerebellum could be able to modulate the excitability of the contralateral M1 in healthy subjects. Methods: Motor-evoked potentials (MEPs) amplitude, short intracortical inhibition (SICI), long intracortical inhibition (LICI) and short intracortical facilitation (SICF) were tested in the M1 before and after cerebellar continuous TBS (cTBS) or intermittent TBS (iTBS)…

MaleCerebellumTime FactorsTranscranial magnetic stimulation; Cerebellum; Intracortical inhibition; Connectivity; Theta burst stimulation; TMSmedicine.medical_treatmentCTBSFunctional LateralityIntracortical inhibitionCONNECTIVITYNeck MusclesTheta burst stimulationCerebellumTheta RhythmEvoked PotentialsYoung Adult; Theta Rhythm; Analysis of Variance; Neck Muscles; Differential Threshold; Humans; Cerebellum; Electromyography; Hand; Neural Inhibition; Electric Stimulation; Motor Cortex; Evoked Potentials Motor; Adult; Psychomotor Performance; Transcranial Magnetic Stimulation; Time Factors; Female; Functional Laterality; MaleMotor CortexTranscranial Magnetic StimulationSensory SystemsNeck Musclemedicine.anatomical_structureNeurologyMotorCerebellar cortexFemaleSettore MED/26 - NeurologiaPrimary motor cortexPsychologyHumanMotor cortexAdultTime FactorFRONTAL CORTEXDifferential ThresholdSensory systemNOYoung AdultPARIETAL CORTEXPhysiology (medical)medicineHumansAnalysis of VarianceSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaElectromyographyNeural InhibitionEvoked Potentials MotorHandElectric StimulationTranscranial magnetic stimulationElectrophysiologyCerebellum; Connectivity; Intracortical inhibition; Theta burst stimulation; TMS; Transcranial magnetic stimulation;TMSNeurology (clinical)NeurosciencePsychomotor Performance
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The default mode network and the working memory network are not anti-correlated during all phases of a working memory task

2015

INTRODUCTION:\ud \ud The default mode network and the working memory network are known to be anti-correlated during sustained cognitive processing, in a load-dependent manner. We hypothesized that functional connectivity among nodes of the two networks could be dynamically modulated by task phases across time.\ud METHODS:\ud \ud To address the dynamic links between default mode network and the working memory network, we used a delayed visuo-spatial working memory paradigm, which allowed us to separate three different phases of working memory (encoding, maintenance, and retrieval), and analyzed the functional connectivity during each phase within and between the default mode network and the …

MaleCingulate cortexComputer scienceFunctional magnetic resonance imagingCINGULATE CORTEX0302 clinical medicinePrefrontal cortexALZHEIMERSDefault mode networkCerebral CortexDefault mode network; female; Functional magnetic resonance imaging; Working memoryMultidisciplinarymedicine.diagnostic_testArtificial neural networkQ05 social sciencesRCognitionHuman brainFUNCTIONAL CONNECTIVITYFLUCTUATIONSMagnetic Resonance ImagingMemory Short-Termmedicine.anatomical_structurefemaleCerebral cortexConnectomeMedicineSettore MED/26 - NeurologiaAlzheimer's diseasedefault mode network; working memory; functional magnetic resonance imaging; functional connectivity; Brain networksResearch ArticleHumanCognitive psychologyAdultBrain networksScienceRETRIEVALPosterior parietal cortex050105 experimental psychologyYoung Adult03 medical and health sciencesPARIETAL CORTEXTask-positive networkEncoding (memory)ConnectomemedicineHumans0501 psychology and cognitive sciencesMODULATIONBRAIN-FUNCTIONResting state fMRIWorking memoryWorking memorymedicine.diseaseR1COMPONENTDefault mode networkRESTING-STATEFunctional magnetic resonance imaging030217 neurology & neurosurgery
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Mildronate enhances learning/memory and changes hippocampal protein expression in trained rats.

2013

Previously we demonstrated that mildronate [3-(2,2,2-trimethylhydrazinium) propionate dihydrate], a representative of the aza-butyrobetaine class of compounds, protects mitochondrial metabolism under conditions such as ischemia. Mildronate also acted as a neuroprotective agent in an azidothymidine-induced mouse model of neurotoxicity, as well as in a rat model of Parkinson's disease. These observations suggest that mildronate may stimulate processes involved in cell survival and change expression of proteins involved in neurogenic processes. The present study investigated the influence of mildronate on learning and memory in the passive avoidance response (PAR) test and the active condition…

MaleClinical BiochemistryGlutamate decarboxylaseBlotting WesternNerve Tissue ProteinsPharmacologyHippocampal formationToxicologyBiochemistryNeuroprotectionHippocampusBehavioral Neurosciencechemistry.chemical_compoundMemorymedicineAnimalsLearningRats WistarBiological PsychiatryPharmacologyChemistryGlutamate DecarboxylaseNeurotoxicitymedicine.diseaseAcetylcholinesteraseNeural stem cellRatsBromodeoxyuridineAcetylcholinesteraseCholinergicNeuroscienceBromodeoxyuridineMethylhydrazinesPharmacology, biochemistry, and behavior
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