Search results for " TMS"

showing 10 items of 37 documents

Combining tDCS with prismatic adaptation for non-invasive neuromodulation of the motor cortex

2017

Abstract Background Prismatic adaptation (PA) shifts visual field laterally and induces lateralized deviations of spatial attention. Recently, it has been suggested that prismatic goggles are also able to modulate brain excitability, with cognitive after-effects documented even in tasks not necessarily spatial in nature. Objective The aim of the present study was to test whether neuromodulatory effects obtained from tDCS and prismatic goggles could interact and induce homeostatic changes in corticospinal excitability. Methods Thirty-four subjects were submitted to single-pulse transcranial magnetic stimulation (TMS) over the right primary motor cortex to measure Input-Output (IO) curve as a…

AdultCognitive Neurosciencemedicine.medical_treatmentExperimental and Cognitive PsychologyElectromyographyTranscranial Direct Current Stimulation050105 experimental psychology03 medical and health sciencesBehavioral Neuroscience0302 clinical medicineNeuromodulationHomeostatic plasticityAdaptation PsychologicalMetaplasticityNeuroplasticitytDCS TMS prismatic adaptation motor cortexmedicineHumans0501 psychology and cognitive sciencesMuscle SkeletalLensesAnalysis of VarianceNeuronal PlasticitySettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaTranscranial direct-current stimulationmedicine.diagnostic_testElectromyography05 social sciencesMotor CortexEvoked Potentials MotorAdaptation PhysiologicalTranscranial magnetic stimulationmedicine.anatomical_structureVisual PerceptionPsychologyNeurosciencePsychomotor Performance030217 neurology & neurosurgeryMotor cortexNeuropsychologia
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Increased facilitation of the primary motor cortex following 1 Hz repetitive transcranial magnetic stimulation of the contralateral cerebellum in nor…

2005

Connections between the cerebellum and the contralateral motor cortex are dense and important, but their physiological significance is difficult to measure in humans. We have studied a group of 10 healthy subjects to test whether a modulation of the excitability of the left cerebellum can affect the excitability of the contralateral motor cortex. We used repetitive transcranial magnetic stimulation (rTMS) at 1 Hz frequency to transiently depress the excitability of the left cerebellar cortex and paired-pulse TMS testing of intracortical inhibition (ICI) and intracortical facilitation (ICF) to probe the excitability of cortico-cortical connections in the right motor cortex. The cortical sile…

AdultMaleCerebellumTMS Cerebellum Motor cortex Motor evoked potentialsmedicine.medical_treatmentbehavioral disciplines and activitiesSynaptic TransmissionMotor evoked potentialsFunctional LateralityNOCerebellar CortexPurkinje CellsCerebellum; Motor cortex; Motor evoked potentials; TMS;Reference ValuesCerebellumNeural PathwaysmedicineReaction TimeHumansEvoked PotentialsSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamusculoskeletal neural and ocular physiologyGeneral NeuroscienceInterstimulus intervalMotor CortexNeural InhibitionEvoked Potentials MotorTranscranial Magnetic StimulationElectric StimulationTranscranial magnetic stimulationElectrophysiologyReference Values; Humans; Cerebellum; Neural Inhibition; Electric Stimulation; Cerebellar Cortex; Purkinje Cells; Motor Cortex; Evoked Potentials Motor; Adult; Neural Pathways; Transcranial Magnetic Stimulation; Synaptic Transmission; Female; Functional Laterality; Male; Reaction Time; Cerebellar Nucleimedicine.anatomical_structurenervous systemMotorCerebellar NucleiTMSCerebellar cortexSilent periodSettore MED/26 - NeurologiaFemalePrimary motor cortexPsychologyNeurosciencepsychological phenomena and processesMotor cortexNeuroscience letters
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The influence of rTMS over prefrontal and motor areas in a morphological task: grammatical vs. semantic effects

2008

We investigated the differential role of two frontal regions in the processing of grammatical and semantic knowledge. Given the documented specificity of the prefrontal cortex for the grammatical class of verbs, and of the primary motor cortex for the semantic class of action words, we sought to investigate whether the prefrontal cortex is also sensitive to semantic effects, and whether the motor cortex is also sensitive to grammatical class effects. We used repetitive transcranial magnetic stimulation (rTMS) to suppress the excitability of a portion of left prefontal cortex (first experiment) and of the motor area (second experiment). In the first experiment we found that rTMS applied to t…

AdultMaleCognitive Neurosciencemedicine.medical_treatmentPosterior parietal cortexPrefrontal CortexExperimental and Cognitive PsychologyVocabularyNOBehavioral NeuroscienceReference ValuesCortex (anatomy)medicineReaction TimeSemantic memoryHumansReference ValueTranscranial Magnetic Stimulation; Language; Motor cortex; Prefrontal cortex; Action; Nouns; Verbs; Semantics; TMSPrefrontal cortexLanguageSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaMotor CortexClassificationTranscranial Magnetic StimulationSemanticsTranscranial magnetic stimulationVerbNeuropsychology and Physiological PsychologyVerbsmedicine.anatomical_structureNounActionTMSFemaleSettore MED/26 - NeurologiaPrimary motor cortexMotor Cortex; Reference Values; Classification; Humans; Adult; Vocabulary; Prefrontal Cortex; Transcranial Magnetic Stimulation; Male; Female; Reaction Time; SemanticsConsumer neurosciencePsychologySemanticNounsHumanCognitive psychologyMotor cortex
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The what and how of observational learning

2007

Abstract Neuroimaging evidence increasingly supports the hypothesis that the same neural structures subserve the execution, imagination, and observation of actions. We used repetitive transcranial magnetic stimulation (rTMS) to investigate the specific roles of cerebellum and dorsolateral prefrontal cortex (DLPFC) in observational learning of a visuomotor task. Subjects observed an actor detecting a hidden sequence in a matrix and then performed the task detecting either the previously observed sequence or a new one. rTMS applied over the cerebellum before the observational training interfered with performance of the new sequence, whereas rTMS applied over the DLPFC interfered with performa…

AdultMaleCognitive Neurosciencemedicine.medical_treatmentrTMS cerebellum DLPFCPrefrontal CortexExperimental and Cognitive PsychologyCognitive neurosciencecerebellum; frontal cortex; observational learning; tmsbehavioral disciplines and activitiesTask (project management)NOBehavioral NeuroscienceMental ProcessesNeuroimagingtmsReference ValuesCerebellummental disordersmedicineBiological neural networkHumansObservational learningReference Values; Analysis of Variance; Humans; Cerebellum; Neural Inhibition; Prefrontal Cortex; Motor Skills; Imitative Behavior; Problem Solving; Social Perception; Imagination; Mental Processes; Adult; Transcranial Magnetic Stimulation; Female; MaleProblem SolvingAnalysis of VarianceSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicafrontal cortexNeural InhibitionCognitionImitative BehaviorTranscranial Magnetic StimulationDorsolateral prefrontal cortexTranscranial magnetic stimulationobservational learningmedicine.anatomical_structureSocial Perceptionnervous systemMotor SkillsImaginationSettore MED/26 - NeurologiaFemalePsychologyNeurosciencepsychological phenomena and processesCognitive psychology
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Role of sensorimotor areas in early detection of motor errors: An EEG and TMS study

2019

Abstract Action execution is prone to errors and, while engaged in interaction, our brain is tuned to detect deviations from what one expects from other’s action. Prior research has shown that Event-Related-Potentials (ERPs) are specifically modulated by the observation of action mistakes interfering with goal achievement. However, in complex and modular actions, embedded motor errors do not necessarily produce an immediate effect on the global goal. Here we dissociate embedded motor goals from global action goals by asking subjects to observe familiar but untrained knotting actions. During knotting an embedded motor error (i.e. the rope is inserted top-down instead of bottom-up during the …

AdultMaleComputer sciencemedicine.medical_treatmentMotor errorSocio-culturaleEarly detectionMotor ActivityElectroencephalographyYoung Adult03 medical and health sciencesBehavioral Neuroscience0302 clinical medicinemedicineHumansGoal achievementEvoked Potentials030304 developmental biologyAction processing; Early negativity; ERPs; Observation of motor errors; TMS0303 health sciencesmedicine.diagnostic_testElectroencephalographyObserver (special relativity)ERPsAnticipation PsychologicalTranscranial Magnetic StimulationObservation of motor errorsSensorimotor AreasTranscranial magnetic stimulationEarly negativityTMSAction planAction processingVisual PerceptionFemaleSensorimotor CortexCuesGoalsPsychomotor Performance030217 neurology & neurosurgeryCognitive psychologyBehavioural Brain Research
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TMS activation of interhemispheric pathways between the posterior parietal cortex and the contralateral motor cortex

2016

Using a twin coil transcranial magnetic stimulation (tc-TMS) approach we have previously demonstrated that facilitation may be detected in the primary motor cortex (M1) following stimulation over the ipsilateral caudal intraparietal sulcus (cIPS). Here we tested the interhemispheric interactions between the IPS and the contralateral motor cortex (M1). We found that conditioning the right cIPS facilitated contralateral M1 when the conditioning stimulus had an intensity of 90% resting motor threshold (RMT) but not at 70% or 110% RMT. Facilitation was maximal when the interstimulus interval (ISI) between cIPS and M1 was 6 or 12 ms. These facilitatory effects were mediated by interactions with …

AdultMalePhysiologyLong-Term Potentiationrhesus monkeyhuman corpus-callosumNONeural Pathwayanterior intraparietal areaParietal LobeNeural PathwaysHumansworld monkeysNeuronal PlasticityMotor Cortexdorsal premotorconnectionsTranscranial Magnetic StimulationinhibitionTranscranial magnetic stimulation; anterior intraparietal area; human corpus-callosum; dorsal premotor; online adjustments; rhesus monkey; world monkeys; humans; connections; inhibition; TMSparietal cortexinterhemisphericTMSonline adjustmentsFemaleSettore MED/26 - NeurologiaMotor Cortex; Humans; Neural Pathways; Adult; Neuronal Plasticity; Transcranial Magnetic Stimulation; Parietal Lobe; Long-Term Potentiation; Nerve Net; Male; FemaleNerve NetNeuroscienceHuman
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Changes in Cerebello-motor Connectivity during Procedural Learning by Actual Execution and Observation

2011

Abstract The cerebellum is involved in motor learning of new procedures both during actual execution of a motor task and during observational training. These processes are thought to depend on the activity of a neural network that involves the lateral cerebellum and primary motor cortex (M1). In this study, we used a twin-coil TMS technique to investigate whether execution and observation of a visuomotor procedural learning task is related to modulation of cerebello-motor connectivity. We observed that, at rest, a magnetic conditioning pulse applied over the lateral cerebellum reduced the motor-evoked potentials obtained by stimulating the contralateral M1, indicating activation of a cerebe…

AdultMaleintracortical inhibitionTime FactorsTime Factormedicine.medical_treatmentCognitive NeuroscienceTranscranial magnetic stimulation; reaction time task; long term depression; intracortical inhibition; cortical interactions; functional interplay; posterior parietal; ventral premotor; cortex; humansreaction time taskObservationCognitive neuroscienceMotor ActivityBrain mappingProcedural memorycortical interactionsNONeural PathwayYoung AdultCerebellumNeural PathwaysmedicineReaction TimeHumansLearninglong term depressionCEREBELLUM TMS LEARNINGventral premotorAnalysis of VarianceBrain MappingSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaElectromyographyposterior parietalMotor Cortexfunctional interplayEvoked Potentials MotorTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structurecortexFacilitationFemalePrimary motor cortexPsychologyMotor learningNeuroscienceCognitive psychologyMotor cortexHuman
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Hypo-excitability of cortical areas in patients affected by Friedreich ataxia: A TMS study

2005

The aim of the study was to explore excitability of a motor and a non-motor (visual) area in patients affected by Friedreich ataxia and to correlate neurophysiological data with clinical parameters. Seven patients (3M/4F) and ten healthy controls (5M/5F) participated in the study. The hot-spot for activation of right abductor pollicis brevis was checked by means of a figure-of-eight coil and the motor threshold (MT) on this point was recorded. The phosphene threshold (PT) was measured by means of a focal coil over the occipital cortex as the lower intensity of magnetic stimulation able to induce the perception of phosphenes. The patients showed a significantly higher mean PT (p<.03) and MT …

AdultMalemedicine.medical_specialtyCerebellumAtaxiaAdolescentPhosphenesCentral nervous system diseaseMagneticsCortical excitability TMS Cerebellum Friedreich ataxia Visual cortex Motor cortex Hypo-excitabilityInternal medicineSensory thresholdCortex (anatomy)medicineHumansVisual CortexBrain MappingMotor Cortexmedicine.diseaseElectric StimulationSurgerymedicine.anatomical_structurePhospheneVisual cortexNeurologyFriedreich AtaxiaSensory ThresholdsCardiologyFemaleNeurology (clinical)medicine.symptomTrinucleotide Repeat ExpansionPsychologyMotor cortexJournal of the Neurological Sciences
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Modulation of pain perception by transcranial magnetic stimulation of left prefrontal cortex.

2010

Evidence by functional imaging studies suggests the role of left dorsolateral prefrontal cortex (DLPFC) in the inhibitory control of nociceptive transmission system. Repetitive transcranial magnetic stimulation (rTMS) is able to modulate pain response to capsaicin. In the present study, we evaluated the effect of DLPFC activation (through rTMS) on nociceptive control in a model of capsaicin-induced pain. The study was performed on healthy subjects that underwent capsaicin application on right or left hand. Subjects judged the pain induced by capsaicin through a 0–100 VAS scale before and after 5 Hz rTMS over left and right DLPFC at 10 or 20 min after capsaicin application in two separate gr…

AdultMalemedicine.medical_specialtyNeurologyOriginalmedicine.medical_treatmentPain medicineClinical NeurologyPainPrefrontal CortexStimulationbehavioral disciplines and activitiesFunctional Lateralitymental disordersmedicineHumansPain ManagementPrefrontal cortexPain Measurementbusiness.industryNeural InhibitionGeneral MedicineMiddle Agedpain perception tms prefrontal cortexTranscranial Magnetic StimulationTranscranial magnetic stimulationFunctional imagingNociceptionAnesthesiology and Pain Medicinenervous systemBrain stimulationAnesthesiaFemaleMagnetic stimulationNeurology (clinical)Capsaicinbusinesspsychological phenomena and processesThe journal of headache and pain
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Excitability regulation in the dorsomedial prefrontal cortex during sustained instructed fear responses: a TMS-EEG study

2018

AbstractThreat detection is essential for protecting individuals from adverse situations, in which a network of amygdala, limbic regions and dorsomedial prefrontal cortex (dmPFC) regions are involved in fear processing. Excitability regulation in the dmPFC might be crucial for fear processing, while abnormal patterns could lead to mental illness. Notwithstanding, non-invasive paradigms to measure excitability regulation during fear processing in humans are missing. To address this challenge we adapted an approach for excitability characterization, combining electroencephalography (EEG) and transcranial magnetic stimulation (TMS) over the dmPFC during an instructed fear paradigm, to dynamica…

AdultMalemedicine.medical_treatmentPrefrontal Cortexlcsh:MedicineElectroencephalographyAmygdalaBrain mappingArticle050105 experimental psychologyYoung Adult03 medical and health sciences0302 clinical medicineDorsomedial Prefrontal Cortex ; Fear Paradigm ; TMS-evoked Potentials (TEPs) ; Fear Network ; Fear ProcessingHeart RateReaction TimemedicineHumans0501 psychology and cognitive scienceslcsh:ScienceEvoked PotentialsBrain MappingElectroshockMultidisciplinarymedicine.diagnostic_test05 social scienceslcsh:RHealthy subjectsStructural integrityElectroencephalographyFearDorsomedial prefrontal cortexTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structureFemalelcsh:QPsychologyNeuroscience030217 neurology & neurosurgery
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