Search results for "Neural"

showing 10 items of 2783 documents

Variations in genes regulating neuronal migration predict reduced prefrontal cognition in schizophrenia and bipolar subjects from mediterranean Spain…

2005

Both neural development and prefrontal cortex function are known to be abnormal in schizophrenia and bipolar disorder. In order to test the hypothesis that these features may be related with genes that regulate neuronal migration, we analyzed two genomic regions: the lissencephaly critical region (chromosome 17p) encompassing the LIS1 gene and which is involved in human lissencephaly; and the genes related to the platelet-activating-factor, functionally related to LIS1, in 52 schizophrenic patients, 36 bipolar I patients and 65 normal control subjects. In addition, all patients and the 25 control subjects completed a neuropsychological battery. Thirteen (14.8%) patients showed genetic varia…

AdultMalePsychosisBipolar DisorderAdolescentLissencephalyNeuropsychological TestsCognitionCell MovementPredictive Value of TestsmedicineHumansBipolar disorderPlatelet Activating FactorPrefrontal cortexMolecular BiologyNeuronsAnalysis of VarianceReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceMiddle Agedmedicine.diseaseLogistic ModelsSpainSchizophreniaEndophenotype1-Alkyl-2-acetylglycerophosphocholine EsteraseSchizophreniaFemaleAnalysis of variancePsychologyMicrotubule-Associated ProteinsNeuroscienceNeural developmentChromosomes Human Pair 17Neuroscience
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Increased amygdala and parahippocampal gyrus activation in schizophrenic patients with auditory hallucinations: An fMRI study using independent compo…

2010

Objective: Hallucinations in patients with schizophrenia have strong emotional connotations. Functional neuroimaging techniques have been widely used to study brain activity in patients with schizophrenia with hallucinations or emotional impairments. However, few of these Studies have investigated the association between hallucinations and emotional dysfunctions using an emotional auditory paradigm. Independent component analysis (ICA) is an analysis method that is especially useful for decomposing activation during complex cognitive tasks in which multiple operations occur simultaneously. Our aim in this Study is to analyze brain activation after the presentation of emotional auditory stim…

AdultMalePsychosisFACIAL EXPRESSIONSHallucinationsBrain activity and meditationDIFFERENTIAL NEURAL RESPONSENEUROBIOLOGYFEARFUL FACESIndependent component analysisAuditory hallucinationsAmygdalaSeverity of Illness IndexPSYCHOSISFunctional neuroimagingBrief Psychiatric Rating ScalemedicineEMOTIONHumansBRAINBiological PsychiatryAuditory hallucinationSALIENCEmedicine.diagnostic_testABNORMALITIESfMRIRECOGNITIONmedicine.diseaseAmygdalaMagnetic Resonance ImagingAuditory emotional paradigmPsychiatry and Mental healthmedicine.anatomical_structureSchizophreniaParahippocampal Gyrusmedicine.symptomPsychologyFunctional magnetic resonance imagingBrain activityNeuroscienceParahippocampal gyrus
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ErbB4 genotype predicts left frontotemporal structural connectivity in human brain.

2008

Diminished left frontotemporal connectivity is among the most frequently reported findings in schizophrenia and there is evidence that altered neuronal myelination may in part account for this deficit. Several investigations have suggested that variations of the genes that encode the Neuregulin 1 (NRG1)-ErbB4 receptor complex are associated with schizophrenia illness. As NRG1--ErbB4 has been implicated in neuronal myelination, we investigated with diffusion tensor imaging (DTI) whether fractional anisotropy (FA)--a putative measure of neuronal myelination--is predicted by a risk haplotype of the ErbB4 gene. The effects of the ErbB4 genotype were investigated in healthy subjects (N=59; mean …

AdultMalePsychosisReceptor complexGenotypeNerve Fibers MyelinatedLateralization of brain functionTemporal lobeWhite matterMemoryRisk FactorsFractional anisotropyNeural PathwaysmedicineReaction TimeHumansAttentionPharmacologyEcho-Planar ImagingGenes erbBHuman brainmedicine.diseaseTemporal LobeFrontal LobePsychiatry and Mental healthmedicine.anatomical_structureDiffusion Magnetic Resonance ImagingHaplotypesSchizophreniaSchizophreniaAnisotropyFemalePsychologyNeuroscienceNeuropsychopharmacology : official publication of the American College of Neuropsychopharmacology
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Enhancement of human cortico-motoneuronal excitability by the selective norepinephrine reuptake inhibitor reboxetine

2002

It has been proposed that norepinephrine plays a critical role in the modulation of cortical excitability, which in turn is thought to influence functional recovery from brain lesions. The purpose of the present experiments was to determine if it is possible to modulate cortical excitability with the selective norepinephrine reuptake inhibitor reboxetine in intact humans. Recruitment curve and intracortical facilitation, assessed by transcranial magnetic stimulation, were increased after oral intake of 8 and 4 mg reboxetine, in the absence of changes in motor threshold, intracortical inhibition, M-response, F-wave or H-reflex. These results demonstrate that reboxetine enhances cortical exci…

AdultMaleRecruitment NeurophysiologicalMorpholinesmedicine.medical_treatmentCentral nervous systemNorepinephrine (medication)MagneticsReboxetinemedicineHumansNeurorehabilitationAdrenergic Uptake InhibitorsElectromyographyGeneral NeuroscienceReboxetineMotor CortexNeural InhibitionEvoked Potentials MotorTranscranial magnetic stimulationmedicine.anatomical_structureCatecholamineReuptake inhibitorPsychologyNeuroscienceMotor cortexmedicine.drugNeuroscience Letters
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Does the Recruitment of Excitation and Inhibition in the Motor Cortex Differ?

2007

The level of excitability within the motor cortex can be described as a balance between excitation and inhibition, but it is unknown how well both processes correlate. To address this question, the authors measured motor cortical excitability and inhibition in healthy human subjects, comparing the recruitment of motor evoked potentials (MEPs) and the duration of the cortical silent period (CSP) after transcranial magnetic stimulation (TMS). Single-pulse "focal" TMS was applied at intensities varying between 90% and 200% of motor thresholds to the right motor cortex of 15 healthy volunteers. The peak-to peak size of MEP responses and the duration of the CSP were measured in small hand muscle…

AdultMaleRecruitment NeurophysiologicalPhysiologymedicine.medical_treatmentStimulationStimulus (physiology)Inhibitory postsynaptic potentialPhysiology (medical)parasitic diseasesmedicineHumansSensorimotor cortexChemistryMotor CortexNeural InhibitionMiddle AgedEvoked Potentials MotorTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structureNeurologyFemaleSilent periodNeurology (clinical)NeuroscienceExcitationMotor cortexJournal of Clinical Neurophysiology
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Subthreshold low frequency repetitive transcranial magnetic stimulation selectively decreases facilitation in the motor cortex

2002

Objective: To investigate the modulatory effect of a subthreshold low frequency repetitive transcranial magnetic stimulation (rTMS) train on motor cortex excitability. Methods: The study consisted of two separate experiments. Subjects received a 10 min long subthreshold 1Hz rTMS train. In the first experiment, (single pulse paradigm), cortical excitability was assessed by measuring the amplitude of motor evoked potentials (MEPs) before and after the rTMS train. In the second experiment, a paired pulse paradigm was employed. Results: Corticospinal excitability, as measured by the MEP amplitude, was reduced by the rTMS train (experiment 1), with a significant effect lasting for about 10 min a…

AdultMaleRepetitive transcranial magnetic stimulationmedicine.medical_treatmentHuman motor cortexElectromyographyElectromagnetic FieldsPhysiology (medical)medicineHumansModulationmedicine.diagnostic_testElectromyographyPulse (signal processing)Subthreshold conductionmusculoskeletal neural and ocular physiologyMotor CortexMotor controlCortical excitabilityMiddle AgedEvoked Potentials MotorSensory SystemsIntra-cortical circuitsTranscranial magnetic stimulationElectrophysiologymedicine.anatomical_structurenervous systemNeurologyFacilitationFemaleNeurology (clinical)Nerve NetPsychologyNeuroscienceMotor cortexClinical Neurophysiology
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F-Wave study in patients with chronic renal failure on regular haemodialysis

1986

Motor nerve conduction along the entire length of ulnar and tibialis posterior nerves was studied in 30 uraemic patients and in 20 control subjects. The M and F latencies, MNCV (between the stimulus sites), FWCV (between the spinal cord and the stimulus sites) and F-ratio (conduction time ratio of proximal to distal segment) were assessed to evaluate the conduction in the proximal versus the distal nerve segment. In the uraemic patients, the slowing of nerve conduction involved both segments of the tested nerves to the same extent. In fact, the F-ratio did not show any significant difference between the two groups; in only one patient was its value lower than the normal limit in the tibiali…

AdultMaleResuscitationAdolescentNeural ConductionMotor nerveStimulus (physiology)Nerve conduction velocityF waveRenal DialysisReaction TimeHumansMedicineAgedMotor NeuronsNeural Conductionbusiness.industryAnatomyMiddle AgedSpinal cordmedicine.diseasemedicine.anatomical_structureNeurologyKidney Failure ChronicFemaleNeurology (clinical)businessPolyneuropathyJournal of the Neurological Sciences
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Diagnosing fatigue in gait patterns by support vector machines and self-organizing maps

2009

The aim of the study was to train and test support vector machines (SVM) and self-organizing maps (SOM) to correctly classify gait patterns before, during and after complete leg exhaustion by isokinetic leg exercises. Ground reaction forces were derived for 18 gait cycles on 9 adult participants. Immediately before the trials 7-12, participants were required to completely exhaust their calves with the aid of additional weights (44.4±8.8kg). Data were analyzed using: (a) the time courses directly and (b) only the deviations from each individual's calculated average gait pattern. On an inter-individual level the person recognition of the gait patterns was 100% realizable. Fatigue recognition …

AdultMaleSelf-organizing mapmedicine.medical_specialtySupport Vector MachineWeight LiftingComputer scienceIndividualityBiophysicsExperimental and Cognitive PsychologyPattern Recognition AutomatedYoung AdultPhysical medicine and rehabilitationmedicineHumansOrthopedics and Sports MedicineGround reaction forceGaitArtificial neural networkMuscle fatiguebusiness.industryBiomechanicsGeneral MedicineGaitBiomechanical PhenomenaSupport vector machineNonlinear DynamicsMuscle FatiguePattern recognition (psychology)Artificial intelligencebusinesshuman activitiesHuman Movement Science
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Voxel-based morphometry depicts central compensation after vestibular neuritis.

2010

Objective Patients who have had vestibular neuritis (VN) show a remarkable clinical improvement especially in gait and posture >6 months after disease onset. Methods Voxel-based morphometry was used to detect the VN-induced changes in gray and white matter by means of structural magnetic resonance imaging. Twenty-two patients were compared an average 2.5 years after onset of VN to a healthy sex-and age-matched control group. Results Our analysis revealed that all patients had signal intensity increases for gray matter in the medial vestibular nuclei and the right gracile nucleus and for white matter in the area of the pontine commissural vestibular fibers. A relative atrophy was observed in…

AdultMaleSensory systemVestibular NerveSomatosensory systemHippocampusSeverity of Illness IndexWhite matterVestibular nucleiAdaptation PsychologicalNeural PathwaysmedicineImage Processing Computer-AssistedHumansVestibular NeuronitisAgedVestibular systemNeuronal PlasticityProprioceptionGracile nucleusBrainAnatomyVoxel-based morphometryMiddle AgedMagnetic Resonance Imagingmedicine.anatomical_structureNeurologyFemaleNeurology (clinical)AtrophyPsychologyAnnals of neurology
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Two Distinct Auditory-Motor Circuits for Monitoring Speech Production as Revealed by Content-Specific Suppression of Auditory Cortex

2015

Speech production, both overt and covert, down-regulates the activation of auditory cortex. This is thought to be due to forward prediction of the sensory consequences of speech, contributing to a feedback control mechanism for speech production. Critically, however, these regulatory effects should be specific to speech content to enable accurate speech monitoring. To determine the extent to which such forward prediction is content-specific, we recorded the brain's neuromagnetic responses to heard multisyllabic pseudowords during covert rehearsal in working memory, contrasted with a control task. The cortical auditory processing of target syllables was significantly suppressed during rehear…

AdultMaleSpeech productionSpeech perceptionInhibition (Psychology)Cognitive NeuroscienceSpeech recognitionShort-term memoryAuditory cortexFunctional Laterality050105 experimental psychologySpeech shadowingYoung Adult03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineSpeech Production MeasurementNeural PathwaysSpeech Production Measurementotorhinolaryngologic diseasesHumansSpeech0501 psychology and cognitive sciencesAuditory CortexAnalysis of VarianceBrain MappingWorking memory05 social sciencesMagnetoencephalographyInhibition PsychologicalAcoustic StimulationSpeech PerceptionFemaleNeurocomputational speech processingPsychologyPhotic Stimulation030217 neurology & neurosurgeryCognitive psychologyCerebral Cortex
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