Search results for " TMS"

showing 10 items of 37 documents

The role of Posterior Parietal Cortex in spatial representation of time: a TMS study.

2011

1. Introduction. The existence of a spatial representation of time, where temporal intervals are represented on a mental temporal line (MTL), oriented in ascending order from left to right, was demonstrated manipulating spatial attention by means of Prismatic Adaptation (PA). In young healthy subjects, prisms adaptation inducing a rightward shift of spatialattention produced an overestimation of time intervals, whereas prisms adaptation inducing a leftward shift of spatialattention produced an underestimation of time intervals [4]. The aimof the present study was to investigate the neural basis mediating the effects of PA on spatial time representation. PosteriorParietalCortex (PPC) is the …

AdultMaleposterior parietal cortexNeurosciences. Biological psychiatry. NeuropsychiatrySpaceTimeYoung AdultParietal LobeTRANSCRANIAL MAGNETIC STIMULATION (TMS)HumansAttentionTime space TMS prismatic adaptationAnalysis of VarianceSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaElectroencephalographyGeneral MedicineAdaptation PhysiologicalTranscranial Magnetic StimulationNeuropsychology and Physiological PsychologyNeurologySpace PerceptionTMSFemaleNeurology (clinical)Photic StimulationPsychomotor PerformanceResearch ArticleRC321-571
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Effects of Neuromodulation on Gait

2018

In the last decades, non-invasive brain stimulation (NIBS) has evolved to become a valuable tool in both basic and clinical neuroscience. Various methods of transcranial magnetic stimulation (TMS) and transcranial electrical stimulation (TES) have been widely used for diagnostic, prognostic and even therapeutic applications in a broad range of neurological and psychiatric disorders. The rationale for using NIBS techniques lies in the possibility to modulate, in a targeted manner, the activity of different cerebral and cerebellar cortical regions, as well as the functional connections between these areas and distant brain regions also including subcortical structures. The neural circuitry in…

CerebellumCerebellar ataxiaClinical neurosciencebusiness.industrymedicine.medical_treatmentmedicine.diseaseNeuromodulation (medicine)Transcranial magnetic stimulationGait (human)medicine.anatomical_structureNIBS TMS rTMS tES balance gaitBrain stimulationmedicineSettore MED/26 - Neurologiamedicine.symptombusinessSpinal cord injuryNeuroscience
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The role of transcranial magnetic stimulation in the study of cerebellar cognitive function.

2007

Transcranial magnetic stimulation (TMS) allows non-invasive stimulation of brain structures. This technique can be used either for stimulating the motor cortex, recording motor evoked potentials from peripheral muscles, or for modulating the excitability of other non-motor areas in order to establish their necessity for a given task. TMS of the cerebellum can give interesting insights on the cerebellar functions. Paired-TMS techniques, delivering stimuli over the cerebellum followed at various interstimulus intervals by stimuli over the motor cortex, allow studying the pattern of connectivity between the cerebellum and the contralateral motor cortex in physiological as well as in pathologic…

CerebellumElementary cognitive taskAnimals; Humans; Cerebellum; Transcranial Magnetic Stimulation; Cognitionmedicine.medical_treatmentCerebellum; Cognitive functions; TMS;Muscle memorybehavioral disciplines and activitiesProcedural memoryNOCognitionCerebellummedicineAnimalsHumanscerebellum; cognitive functions; tmsWorking memoryCognitionTranscranial Magnetic StimulationCognitive functionsTranscranial magnetic stimulationmedicine.anatomical_structurenervous systemNeurologyTMSSettore MED/26 - NeurologiaNeurology (clinical)PsychologyNeuroscienceMotor cortexCerebellum (London, England)
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A questionnaire to collect unintended effects of transcranial magnetic stimulation: A consensus based approach

2022

Transcranial magnetic stimulation (TMS) has been widely used in both clinical and research practice. However, TMS might induce unintended sensations and undesired effects as well as serious adverse effects. To date, no shared forms are available to report such unintended effects. This study aimed at developing a questionnaire enabling reporting of TMS unintended effects. A Delphi procedure was applied which allowed consensus among TMS experts. A steering committee nominated a number of experts to be involved in the Delphi procedure. Three rounds were conducted before reaching a consen-sus. Afterwards, the questionnaire was publicized on the International Federation of Clinical Neurophysiolo…

ConsensusSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaTMS adverse eventsDelphi procedure; Neuromodulation; Non-invasive brain stimulation; Safety; TMS adverse events; TMS secondary effects; Transcranial magnetic stimulationNeuromodulationDelphi procedureTranscranial Magnetic StimulationSensory SystemsNeurologyPhysiology (medical)Surveys and QuestionnairesDelphi procedure; Neuromodulation; Non-invasive brain stimulation; Safety; TMS adverse events; TMS secondary effects; Transcranial magnetic stimulation; Consensus; Humans; Surveys and Questionnaires; Transcranial Magnetic StimulationHumansNeurology (clinical)Non-invasive brain stimulationSafetyTranscranial magnetic stimulationTMS secondary effects
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Modulation of excitatory and inhibitory circuits for visual awareness in the human right parietal cortex.

2005

The balance of specific patterns of excitation and inhibition in critical regions of both hemispheres could be relevant in orienting attention over the extrapersonal space. In the present study a group of normal subjects had to detect small rectangular stimuli presented briefly on a computer screen in three different conditions: unilateral presentation either to left or right visual periphery or bilateral simultaneous presentation. Paired transcranial magnetic stimulation (TMS), was applied over the right parietal cortex 150 ms after the presentation of the visual stimuli with different inter-stimulus intervals (ISIs: 1, 3,5 and 10 ms). When paired TMS was applied 150 ms, but not 100 ms, af…

Cortical excitability; Neglect; Supramodal integration; TMS; Visuospatial attention;AdultMalemedicine.medical_specialtyNeurologyVisual perceptionVisuospatial attentionmedicine.medical_treatmentCentral nervous systemMagnetics; Humans; Awareness; Neural Inhibition; Electric Stimulation; Parietal Lobe; Cognition; Photic Stimulation; Adult; Space Perception; Neuropsychological Tests; Visual Pathways; Attention; Visual Perception; Female; Functional Laterality; Male; Reaction TimePosterior parietal cortexCortical excitability Neglect Supramodal integration TMS Visuospatial attentionNeuropsychological TestsInhibitory postsynaptic potentialFunctional LateralityNOMagneticsCognitionParietal LobemedicineReaction TimeHumansAttentionVisual PathwaysNeglectBalance (ability)Settore M-PSI/02 - Psicobiologia E Psicologia FisiologicaGeneral NeuroscienceCortical excitabilityNeural InhibitionSupramodal integrationAwarenessElectric StimulationTranscranial magnetic stimulationmedicine.anatomical_structureTMSSpace PerceptionExcitatory postsynaptic potentialVisual PerceptionSettore MED/26 - NeurologiaFemalePsychologyNeurosciencePhotic StimulationExperimental brain research
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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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Long-term effects on motor cortical excitability induced by repeated muscle vibration during contraction in healthy subjects

2008

article i nfo Objective: The effects of a novel repeated muscle vibration intervention (rMV; 100 Hz, 90 min over 3 consecutive days) on corticomotor excitability were studied in healthy subjects. Methods: rMV was applied over the flexor carpi radialis (FCR) during voluntary contraction (experiment 1), during relaxation and during contraction without vibration (experiment 2). Focal transcranial magnetic stimulation (TMS) was applied before rMV and one hour, and one, two and three weeks after the last muscle vibration intervention. At each of these time points, we assessed the motor map area and volume in the FCR, extensor digitorum communis (EDC) and abductor digiti minimi (ADM). Short-inter…

MaleMotor disorderpaired-pulse tmsTime FactorsContraction (grammar)H-Reflex; Analysis of Variance; Humans; Electromyography; Neural Inhibition; Electric Stimulation; Muscle Skeletal; Motor Cortex; Brain Mapping; Vibration; Evoked Potentials Motor; Adult; Middle Aged; Muscle Contraction; Transcranial Magnetic Stimulation; Time Factors; Female; Malemedicine.medical_treatmentH-ReflextmsEvoked PotentialsBrain Mappingcortical plasticitySkeletalMiddle AgedTranscranial Magnetic Stimulationmedicine.anatomical_structureMotorNeurologyAnesthesiaMuscleFemaleSettore MED/26 - NeurologiaPrimary motor cortexmedicine.symptomPsychologyMuscle ContractionMotor cortexMuscle contractionAdultintracortical inhibitionVibrationNOmuscle vibrationmotor cortexNeuroplasticitymedicineHumansMuscle SkeletalAnalysis of VarianceneurorehabilitationElectromyographytms; muscle vibration; paired-pulse tms; neurorehabilitation; motor cortex; cortical plasticity; intracortical inhibitionNeural InhibitionEvoked Potentials Motormedicine.diseaseElectric Stimulationbody regionsTranscranial magnetic stimulationNeurology (clinical)NeuroscienceExtensor Digitorum Communis
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The role of the prefrontal cortex in familiarity and recollection processes during verbal and non verbal recognition memory: a rTMS study.

2010

Neuroimaging and lesion studies have documented the involvement of the frontal lobes in recognition memory. However, the precise nature of prefrontal contributions to verbal and non-verbal memory and to familiarity and recollection processes remains unclear. The aim of the current rTMS study was to investigate for the first time the role of the DLPFC in encoding and retrieval of non-verbal and verbal memoranda and its contribution to recollection and familiarity processes. Recollection and familiarity processes were studied using the ROC and unequal variance signal detection methodologies. We found that rTMS delivered over left and right DLPFC at encoding resulted in material specific later…

MaleSpeech perceptionCognitive Neurosciencemedicine.medical_treatmentPrefrontal CortexNeuropsychological Testsbehavioral disciplines and activitiesFunctional LateralityYoung AdultNonverbal communicationNeuroimagingmental disordersmedicineHumansSpeechPrefrontal cortexLanguageRecognition memoryRecallSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaRecognition Psychologyrecognition memory prefrontal cortex familiarity and recollection encoding and retrieval TMSTranscranial Magnetic StimulationTranscranial magnetic stimulationROC Curvenervous systemNeurologyMental RecallLateralitySpeech PerceptionFemalePsychologypsychological phenomena and processesCognitive psychology
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TMS-evoked long-lasting artefacts: A new adaptive algorithm for EEG signal correction

2017

Abstract Objective During EEG the discharge of TMS generates a long-lasting decay artefact (DA) that makes the analysis of TMS-evoked potentials (TEPs) difficult. Our aim was twofold: (1) to describe how the DA affects the recorded EEG and (2) to develop a new adaptive detrend algorithm (ADA) able to correct the DA. Methods We performed two experiments testing 50 healthy volunteers. In experiment 1, we tested the efficacy of ADA by comparing it with two commonly-used independent component analysis (ICA) algorithms. In experiment 2, we further investigated the efficiency of ADA and the impact of the DA evoked from TMS over frontal, motor and parietal areas. Results Our results demonstrated t…

MaleTime Factorsmedicine.medical_treatmentElectroencephalographySignal0302 clinical medicineSignal correctionDetrendEEGAdaptive algorithmmedicine.diagnostic_test05 social sciencesElectroencephalographyTranscranial Magnetic StimulationSensory SystemsAlgorithmNeurologyArtefact; Detrend; EEG; ICA; TMS; Sensory Systems; Neurology; Neurology (clinical); Physiology (medical)ArtifactFemalePrimary motor cortexArtifactsPsychologyAlgorithmsHumanAdultTime Factor050105 experimental psychologyNOYoung Adult03 medical and health sciencesPhysiology (medical)medicineHumansMiddle frontal gyrus0501 psychology and cognitive sciencesICAArtefactSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicabusiness.industryPattern recognitionIndependent component analysisTranscranial magnetic stimulationTMSNeurology (clinical)Artificial intelligenceSensory SystembusinessNeuroscience030217 neurology & neurosurgeryClinical Neurophysiology
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In vivo definition of parieto-motor connections involved in planning of grasping movements

2010

We combined bifocal transcranial magnetic stimulation (TMS) and diffusion tensor imaging (DTI) tractography to investigate in humans the contribution of connections originating from different parietal areas in planning of different reaching to grasp movements. TMS experiments revealed that in the left hemisphere functional connectivity between the primary motor cortex (M1) and a portion of the angular gyrus (AG) close to the caudal intraparietal sulcus was activated during early preparation of reaching and grasping movements only when the movement was made with a whole hand grasp (WHG) towards objects in contralateral space. In contrast, a different pathway, linking M1 with a part of the su…

Malegenetic structuresCognitive Neurosciencemedicine.medical_treatmentIntraparietal sulcusMotor Activitybehavioral disciplines and activitiesFunctional LateralityLateralization of brain functionNOSuperior longitudinal fasciculusAngular gyrusYoung AdultSupramarginal gyrusParietal LobeNeural PathwaysmedicineHumansYoung Adult; Diffusion Tensor Imaging; Humans; Hand; Motor Skills; Parietal Lobe; Frontal Lobe; Motor Cortex; Evoked Potentials Motor; Motor Activity; Neural Pathways; Psychomotor Performance; Transcranial Magnetic Stimulation; Female; Functional Laterality; MaleEvoked PotentialsConnectivitySettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamusculoskeletal neural and ocular physiologySuperior longitudinal fasciculusMotor CortexEvoked Potentials MotorHandTranscranial Magnetic StimulationFrontal LobeTranscranial magnetic stimulationTMS Connectivity Movement planning Superior longitudinal fasciculusTractography Transcranial magnetic stimulationDiffusion Tensor Imagingmedicine.anatomical_structureConnectivity; Movement planning; Superior longitudinal fasciculus; TMS; Tractography; Transcranial magnetic stimulation;Motornervous systemNeurologyMotor SkillsMovement planningTMSFemaleSettore MED/26 - NeurologiaPrimary motor cortexPsychologyTractographyNeurosciencePsychomotor Performancepsychological phenomena and processesTractographyNeuroImage
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