Search results for " Motor Cortex"

showing 10 items of 89 documents

Low-frequency rTMS inhibitory effects in the primary motor cortex: Insights from TMS-evoked potentials

2014

The neuromodulatory effects of repetitive transcranial magnetic stimulation (rTMS) have been mostly investigated by peripheral motor-evoked potentials (MEPs). New TMS-compatible EEG systems allow a direct investigation of the stimulation effects through the analysis of TMS-evoked potentials (TEPs).We investigated the effects of 1-Hz rTMS over the primary motor cortex (M1) of 15 healthy volunteers on TEP evoked by single pulse TMS over the same area. A second experiment in which rTMS was delivered over the primary visual cortex (V1) of 15 healthy volunteers was conducted to examine the spatial specificity of the effects. Single-pulse TMS evoked four main components: P30, N45, P60 and N100. M…

AdultMaleCognitive Neurosciencemedicine.medical_treatmentTMS; EEG; Inhibition; TEPs; N100; GABAbStimulationElectroencephalographyInhibitory postsynaptic potentialbehavioral disciplines and activitiesTMS; EEG; inhibition; GABAb; N100Young AdultmedicineHumansEEGN100Evoked PotentialsInhibitionVisual CortexN100Settore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamedicine.diagnostic_testTEPsmusculoskeletal neural and ocular physiologyMotor CortexElectroencephalographyNeural InhibitionTranscranial Magnetic StimulationTranscranial magnetic stimulationTEPVisual cortexmedicine.anatomical_structurenervous systemNeurologyTMSGABAbFemaleEvoked PotentialPrimary motor cortexPsychologyNeurosciencepsychological phenomena and processesHumanMotor cortexNeuroImage
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Effects of high-frequency repetitive transcranial magnetic stimulation of primary motor cortex on laser-evoked potentials in migraine.

2010

The aim of this study was to examine the effects of high-frequency (HF) repetitive transcranial magnetic stimulation (rTMS) of the left primary motor cortex (M1) on subjective pain and evoked responses induced by laser stimulation (LEPs) of the contralateral hand and supraorbital zone in a cohort of migraine patients without aura during the inter-critical phase, and to compare the effects with those of non-migraine healthy controls. Thirteen migraine patients and 12 sex- and age-matched controls were evaluated. Each rTMS session consisted of 1,800 stimuli at a frequency of 5 Hz and 90% motor threshold intensity. Sham (control) rTMS was performed at the same stimulation position. The vertex …

AdultMaleLaser-Evoked PotentialsOriginalMagnetic Field TherapyMigraine DisordersRepetitive transcranial magnetic stimulationmedicine.medical_treatmentClinical NeurologyPainStimulationbehavioral disciplines and activitiesCohort StudiesYoung AdultElectromagnetic FieldsHumansPain ManagementMedicineTrigeminal NerveEvoked potentialEvoked PotentialsMigraineTrigeminal nerveNeuronal Plasticitybusiness.industryLasersLaser-evoked potentialsGeneral Medicinemedicine.diseaseTranscranial Magnetic StimulationLaser-evoked potentialTranscranial magnetic stimulationAnesthesiology and Pain Medicinemedicine.anatomical_structureMigraineAnesthesiaMotor cortexFemaleMigraine; Laser-evoked potentials; Motor cortex ; Repetitive transcranial magnetic stimulationSettore MED/26 - NeurologiaNeurology (clinical)Primary motor cortexbusinessMotor cortex
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Abnormal facilitatory mechanisms in motor cortex of migraine with aura

2010

Experimental evidence suggests impairment of inhibitory intracortical circuits in migraine, while not much is known about activity of facilitatory intracortical circuits. In the present work we evaluated the effects of high frequency-repetitive transcranial magnetic stimulation (hf-rTMS) on the activity of facilitatory circuits of motor cortex in 18 patients affected by migraine with aura and 18 healthy subjects. Trains of 10 stimuli were applied to the motor cortex at 5-Hz frequency with recording of the EMG traces from the contralateral abductor pollicis brevis muscle (APB). Two intensities of stimulation (110% and 130% of resting motor threshold) were used in order to explore whether mot…

AdultMaleLevetiracetammedicine.medical_treatmentMigraine with AuraStimulationInhibitory postsynaptic potentialHomeostatic plasticitymedicineHumansNeuronsAbductor pollicis brevis muscleElectromyographyMotor CortexEvoked Potentials Motormedicine.diseasePiracetamTranscranial Magnetic StimulationMigraine with auraTranscranial magnetic stimulationAnesthesiology and Pain Medicinemedicine.anatomical_structureMigraineAbnormal facilitatory mechanisms motor cortex migraine with aura.FemaleNerve Netmedicine.symptomPsychologyNeuroscienceMotor cortexEuropean Journal of Pain
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Reduced Threshold for Inhibitory Homeostatic Responses in Migraine Motor Cortex? A tDCS/TMS Study

2014

Background and Objective Neurophysiological studies in migraine have reported conflicting findings of either cortical hyper- or hypoexcitability. In migraine with aura (MwA) patients, we recently documented an inhibitory response to suprathreshold, high-frequency repetitive transcranial magnetic stimulation (hf-rTMS) trains applied to the primary motor cortex, which is in contrast with the facilitatory response observed in the healthy subjects. The aim of the present study was to support the hypothesis that in migraine, because of a condition of basal increased cortical responsivity, inhibitory homeostatic-like mechanisms of cortical excitability could be induced by high magnitude stimulati…

AdultMaleMigraine Disordersmedicine.medical_treatmentTranscranial Direct Current Stimulationhomeostatic plasticityHomeostatic plasticitymedicineHomeostasisHumansmigrainemetaplasticityTranscranial direct-current stimulationMotor Cortexrepetitive transcranial magnetic stimulationEvoked Potentials Motormedicine.diseaseTranscranial Magnetic StimulationMigraine with auraTranscranial magnetic stimulationmedicine.anatomical_structureNeurologyMigraineBrain stimulationFemaleNeurology (clinical)medicine.symptomPrimary motor cortexPsychologyNeuroscienceMotor cortexHeadache: The Journal of Head and Face Pain
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Modulation of cortical motor outputs by the symbolic meaning of visual stimuli.

2010

Abstract The observation of an action modulates motor cortical outputs in specific ways, in part through mediation of the mirror neuron system. Sometimes we infer a meaning to an observed action based on integration of the actual percept with memories. Here, we conducted a series of experiments in healthy adults to investigate whether such inferred meanings can also modulate motor cortical outputs in specific ways. We show that brief observation of a neutral stimulus mimicking a hand does not significantly modulate motor cortical excitability (Study 1) although, after prolonged exposure, it can lead to a relatively nonspecific modulation (Study 2). However, when such a neutral stimulus is p…

AdultMaleMotor CortexMotor ActivityNeuropsychological TestsEvoked Potentials MotorHandTranscranial Magnetic StimulationArticleYoung AdultNeural PathwaysVisual PerceptionHumansFemaleSettore MED/26 - Neurologiahuman mirror neuron system primary motor cortex priming transcranial magnetic stimulationPhotic Stimulation
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Effects of transcranial direct current stimulation of the primary sensory cortex on somatosensory perception.

2011

Background: Transcranial direct current stimulation (tDCS) is able to modify cortical excitability and activity in humans. Objective: The aim of the present study was to analyze the effects of tDCS of the primary sensory cortex (SI) on thermal and mechanical perception, assessed by quantitative sensory testing (QST). Methods: The comprehensive QST protocol encompassing thermal and mechanical detection and pain thresholds as devised by the German Research Network on Neuropathic Pain (DFNS) was applied to skin areas innervated by the radial and median nerve of 12 healthy subjects, who were examined before and after each tDCS stimulation type. Anodal, cathodal, and sham tDCS was applied at a 1…

AdultMalePain Thresholdmedicine.medical_specialtymedicine.medical_treatmentBiophysicsquantitative sensory testingStimulationAudiologySomatosensory system050105 experimental psychologyFunctional Lateralitylcsh:RC321-57103 medical and health sciencesYoung Adult0302 clinical medicineEvoked Potentials SomatosensoryPhysical StimulationSensationThreshold of painmedicineReaction TimeHumans0501 psychology and cognitive sciencesThermosensinglcsh:Neurosciences. Biological psychiatry. NeuropsychiatryAnalysis of VarianceTranscranial direct-current stimulationGeneral Neuroscience05 social sciencesTemperatureElectroencephalographySomatosensory CortexQSTTranscranial Magnetic StimulationTranscranial magnetic stimulationHyperalgesiaNeuropathic painFemaleNeurology (clinical)transcranial direct current stimulationPrimary motor cortexPsychologyNeuroscience030217 neurology & neurosurgeryBrain stimulation
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Dipole Source Analyses of Early Median Nerve SEP Components Obtained From Subdural Grid Recordings

2010

The median nerve N20 and P22 SEP components constitute the initial response of the primary somatosensory cortex to somatosensory stimulation of the upper extremity. Knowledge of the underlying generators is important both for basic understanding of the initial sequence of cortical activation and to identify landmarks for eloquent areas to spare in resection planning of cortex in epilepsy surgery. We now set out to localize the N20 and P22 using subdural grid recording with special emphasis on the question of the origin of P22: Brodmann area 4 versus area 1. Electroencephalographic dipole source analysis of the N20 and P22 responses obtained from subdural grids over the primary somatosensor…

AdultMalePhysiologyModels NeurologicalSubdural SpaceSomatosensory systemYoung AdultSpecies SpecificityEvoked Potentials SomatosensoryCortex (anatomy)Brodmann area 4medicineAnimalsHumansBrain MappingEpilepsyScalpGeneral NeuroscienceMotor CortexElectroencephalographyArticlesHaplorhiniSomatosensory CortexAnatomyMiddle AgedMagnetic Resonance ImagingCentral sulcusMedian Nervemedicine.anatomical_structureSomatosensory evoked potentialFemalePrimary motor cortexTomography X-Ray ComputedPsychologyNeuroscienceBrodmann areaMotor cortexJournal of 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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Dominant vs. nondominant arm advantage in mentally simulated actions in right handers

2013

Although plentiful data are available regarding mental states involving the dominant-right arm, the evidence for the nondominant-left arm is sparse. Here, we investigated whether right-handers can generate accurate predictions with either the right or the left arm. Fifteen adults carried out actual and mental arm movements in two directions with varying inertial resistance (inertial anisotropy phenomenon). We recorded actual and mental movement times and used the degree of their similarity as an indicator for the accuracy of motor imagery/prediction process. We found timing correspondences (isochrony) between actual and mental right arm movements in both rightward (low inertia resistance) …

AdultMaleRight motor cortexmedicine.medical_specialtyPhysiologyIsochronyMovementmedia_common.quotation_subjectInertiaFunctional LateralityDevelopmental psychologyPhysical medicine and rehabilitationMotor imagerymedicineHumansRight handersMuscle Skeletalmedia_commonGeneral NeurosciencePerspective (graphical)Motor CortexMuscle activationEvoked Potentials MotorLateralityArmImaginationFemalePsychologyPsychomotor PerformanceJournal of Neurophysiology
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Evidence for early activation of primary motor cortex and SMA after electrical lower limb stimulation using EEG source reconstruction

2006

Compared to median nerve somatosensory evoked potentials (SEP), less is known about activity evoked by nerve stimulation of the lower limb. To understand the mechanisms and the physiology of sensor- and motor control it is useful to investigate the sensorimotor functions as revealed by a standardized functional status. Therefore, we investigated SEPs of the lower limb in 6 healthy male volunteers. For each side, tibial and peroneal nerves were stimulated transcutaneously at the fossa poplitea. The tibial nerves were also stimulated further distally at the ankle joint. Source localization was applied to 64-EEG-channel data of the SEPs. In contrast to somatosensory areas, which are activated …

AdultMaleSomatosensory systemFunctional LateralityEvoked Potentials SomatosensoryBrodmann area 4Reaction TimemedicineHumansMolecular BiologyAnalysis of VarianceBrain MappingSupplementary motor areaGeneral NeuroscienceMotor CortexPeroneal NerveMotor controlElectroencephalographySomatosensory CortexAnatomySMA*Magnetic Resonance ImagingElectric Stimulationbody regionsmedicine.anatomical_structureLower ExtremitySomatosensory evoked potentialNeurology (clinical)Tibial NervePrimary motor cortexPsychologyDevelopmental BiologyMotor cortexBrain Research
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