0000000000276382

AUTHOR

Masahito Kobayashi

showing 3 related works from this author

Modulation of right motor cortex excitability without awareness following presentation of masked self-images.

2004

The neural substrates of self-awareness have been studied with a variety of neurophysiological and behavioral tools. In the present study, unconscious modulation of corticospinal excitability following presentation of self-images was probed with transcranial magnetic stimulation (TMS). TMS-induced motor evoked potentials (MEP) were collected from the contralateral first dorsal interosseus (FDI) muscle while subjects viewed masked pictures of their own face. MEP amplitudes were compared to those obtained when pictures of strangers were masked. Masked self-images induced a relative increase in corticospinal excitability when TMS was applied to the right primary motor cortex. These results dem…

AdultMalePhotic StimulationCognitive Neurosciencemedicine.medical_treatmentExperimental and Cognitive PsychologyFunctional LateralityBehavioral NeuroscienceElectromagnetic FieldsFace perceptionmedicineHumansMotor CortexCognitionNeurophysiologySelf Conceptbody regionsTranscranial magnetic stimulationElectrophysiologymedicine.anatomical_structureFaceLateralityPsychologyNeurosciencePhotic StimulationPsychomotor PerformanceMotor cortexBrain research. Cognitive brain research
researchProduct

Intracranial measurement of current densities induced by transcranial magnetic stimulation in the human brain

2003

Transcranial magnetic stimulation (TMS) is a non-invasive technique that uses the principle of electromagnetic induction to generate currents in the brain via pulsed magnetic fields. The magnitude of such induced currents is unknown. In this study we measured the TMS induced current densities in a patient with implanted depth electrodes for epilepsy monitoring. A maximum current density of 12 microA/cm2 was recorded at a depth of 1 cm from scalp surface with the optimum stimulation orientation used in the experiment and an intensity of 7% of the maximal stimulator output. During TMS we recorded relative current variations under different stimulating coil orientations and at different points…

Electromagnetic fieldAdultMaterials sciencemedicine.medical_treatmentModels NeurologicalNuclear magnetic resonanceElectromagnetic FieldsEpilepsy Complex PartialmedicineHumansGeneral NeuroscienceSkullBrainTranscranial Magnetic StimulationElectric StimulationIntensity (physics)Magnetic fieldElectromagnetic inductionElectrodes ImplantedTranscranial magnetic stimulationElectromagnetic coiltranscranial magnetic stimulatione depth electrodes epilepsyBrain InjuriesFemaleCurrent (fluid)ArtifactsCurrent densityNeuroscience
researchProduct

Intracortical inhibition and facilitation in human facial motor area: difference between upper and lower facial area.

2001

Objective: To investigate the intracortical inhibitory and excitatory systems in the motor cortical representation of upper and lower facial muscles. Methods: Paired-pulse transcranial magnetic stimulation (TMS) was applied to 7 healthy volunteers, with the interstimulus interval (ISI) between the conditioning stimulus (CS) and test stimulus, varied from 1 to 20 ms. CS was set at 90% of motor threshold. Muscle evoked potentials (MEPs) were recorded from first dorsal interosseus (FDI), orbicularis oculi (o. oculi) and mentalis muscles. Result: TMS evoked MEPs in o. oculi on both ipsi- and contralateral sides in all subjects. In the paired-pulse study, MEP amplitude in the mentalis decreased …

AdultMaleIntracortical circuitmedicine.medical_treatmentFacial MusclesStimulus (physiology)MagneticsReference ValuesPhysiology (medical)medicineReaction TimeHumansInhibitionOrbicularis oculi muscleInterstimulus intervalMotor CortexMotor controlNeural InhibitionEvoked Potentials MotorSensory SystemsElectric StimulationTranscranial magnetic stimulationFacial muscleFacial musclesmedicine.anatomical_structureNeurologyMentalisFacilitationsense organsNeurology (clinical)PsychologyNeuroscienceTranscranial magnetic stimulationMotor cortexClinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology
researchProduct