Search results for " motor area"

showing 10 items of 30 documents

Cutaneous Painful Laser Stimuli Evoke Responses Recorded Directly From Primary Somatosensory Cortex in Awake Humans

2004

Negative and positive laser evoked potential (LEP) peaks (N2*, P2**) were simultaneously recorded from the primary somatosensory (SI), parasylvian, and medial frontal (MF: anterior cingulate and supplementary motor area) cortical surfaces through subdural electrodes implanted for the surgical treatment of intractable epilepsy. Distribution of the LEP N2*and P2**peaks was estimated to be in cortical areas (SI, parasylvian, and MF) identified by anatomic criteria, by their response to innocuous vibratory stimulation of a finger (v-SEP), and to electrical stimulation of the median nerve (e-SEP). The maximum of the LEP N2*peak was located on the CS, medial (dorsal) to the finger motor area, as …

AdultMalePhysiologyStimulationSomatosensory systemHomunculusEvoked Potentials SomatosensoryPhysical StimulationCortex (anatomy)Reaction TimemedicineHumansWakefulnessEvoked potentialPain MeasurementPhysicsSupplementary motor areaPostcentral gyrusLasersGeneral NeuroscienceSomatosensory CortexAnatomyMiddle AgedElectric Stimulationmedicine.anatomical_structureTouchNociceptorFemaleNeuroscienceJournal 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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Increased gait variability during robot-assisted walking is accompanied by increased sensorimotor brain activity in healthy people

2019

Abstract Background Gait disorders are major symptoms of neurological diseases affecting the quality of life. Interventions that restore walking and allow patients to maintain safe and independent mobility are essential. Robot-assisted gait training (RAGT) proved to be a promising treatment for restoring and improving the ability to walk. Due to heterogenuous study designs and fragmentary knowlegde about the neural correlates associated with RAGT and the relation to motor recovery, guidelines for an individually optimized therapy can hardly be derived. To optimize robotic rehabilitation, it is crucial to understand how robotic assistance affect locomotor control and its underlying brain act…

AdultMalemedicine.medical_specialtyBrain activity and meditationHealth InformaticsSensory systemNeuroimagingfNIRSWalking050105 experimental psychologylcsh:RC321-571Premotor cortex03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationGait trainingmedicineHumans0501 psychology and cognitive sciencesTreadmilllcsh:Neurosciences. Biological psychiatry. NeuropsychiatryRAGTGaitGait Disorders NeurologicBrain MappingSupplementary motor areabusiness.industryRobotic rehabilitationResearch05 social sciencesRehabilitationGait variabilityBrainRoboticsSelf-Help DevicesGaitExercise Therapymedicine.anatomical_structureGRFNeurorehabilitationFunctional near-infrared spectroscopyFemalebusinessBrain activityhuman activities030217 neurology & neurosurgeryFunctional near-infrared spectroscopyJournal of NeuroEngineering and Rehabilitation
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Neural Basis of Speech-Gesture Mismatch Detection in Schizophrenia Spectrum Disorders

2021

AbstractPatients with schizophrenia spectrum disorders (SSD) exhibit an aberrant perception and comprehension of abstract speech-gesture combinations associated with dysfunctional activation of the left inferior frontal gyrus (IFG). Recently, a significant deficit of speech-gesture mismatch detection was identified in SSD, but the underlying neural mechanisms have not yet been examined. A novel mismatch-detection fMRI paradigm was implemented manipulating speech-gesture abstractness (abstract/concrete) and relatedness (related/unrelated). During fMRI data acquisition, 42 SSD patients (schizophrenia, schizoaffective disorder, or other non-organic psychotic disorder [ICD-10: F20, F25, F28; DS…

AdultMalemedicine.medical_specialtyPrefrontal CortexInferior frontal gyrusSchizoaffective disorderAudiologyGyrus Cingulibehavioral disciplines and activitiesYoung AdultmedicineHumansAnterior cingulate cortexGesturesSupplementary motor areaMotor CortexSMA*medicine.diseaseMagnetic Resonance ImagingPsychiatry and Mental healthmedicine.anatomical_structurePsychotic DisordersSocial PerceptionSchizophreniaBrain stimulationMetaphorSchizophreniaSpeech PerceptionFemalePsychologyRegular ArticlesGestureSchizophrenia Bulletin
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"…The times they aren't a-changin'…" rTMS does not affect basic mechanisms of temporal discrimination: a pilot study with ERPs.

2014

In time processing, the role of different cortical areas is still under investigation. Event-related potentials (ERPs) represent valuable indices of neural timing mechanisms in the millisecond-to-second domain. We used an interference approach by repetitive TMS (rTMS) on ERPs and behavioral performance to investigate the role of different cortical areas in processing basic temporal information. Ten healthy volunteers were requested to decide whether time intervals between two tones (S1-S2, probe interval) were shorter (800 ms), equal to, or longer (1200 ms) than a previously listened 1000-ms interval (target interval) and press different buttons accordingly. This task was performed at the b…

AdultMalemedicine.medical_specialtymedicine.medical_treatmentPosterior parietal cortexPilot ProjectsElectroencephalographyAudiologyTranscranial Direct Current Stimulationbehavioral disciplines and activitiesDevelopmental psychologyTask (project management)Young AdultDiscrimination PsychologicalmedicineReaction TimeHumansPilot ProjectTimingContingent negative variationDiscrimination (Psychology)Cerebral CortexNeuroscience (all)Supplementary motor areamedicine.diagnostic_testSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamusculoskeletal neural and ocular physiologyGeneral NeuroscienceMiddle AgedContingent negative variationTranscranial magnetic stimulationInterval (music)medicine.anatomical_structureDuration (music)Time PerceptionAuditory PerceptionEvoked Potentials AuditoryFemalePsychologypsychological phenomena and processesERPTranscranial magnetic stimulationHumanNeuroscience
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Disrupting SMA activity modulates explicit and implicit emotional responses: an rTMS study.

2014

Supplementary Motor Area (SMA) has been considered as an interface between the emotional/motivational system and motor effector system. Here, we investigated whether it is possible to modulate emotional responses using non-invasive brain stimulation of the SMA. 1Hz repetitive transcranial magnetic stimulation (rTMS) trains were applied over the SMA of healthy subjects performing a task requiring to judge the valence and arousal of emotional stimuli. rTMS trains over the SMA increased the perceived valence of emotionally negative visual stimuli, while decreasing the perceived valence of emotionally positive ones. The modulatory effect on emotional valence was specific for stimuli with emotio…

AdultSelf-AssessmentSympathetic Nervous Systemmedicine.medical_treatmentStimulationArousalYoung AdultReaction TimemedicineHumansSMAValence (psychology)Supplementary motor areaSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaGeneral NeuroscienceMotor CortexGalvanic Skin ResponseSMA*Transcranial Magnetic StimulationTranscranial magnetic stimulationExpressed EmotionVisual cortexmedicine.anatomical_structureEMOTIONSBrain stimulationTMSFemaleOccipital LobeArousalPsychologyNeurosciencePhotic StimulationCognitive psychology
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Automatic Temporal Expectancy: A High-Density Event-Related Potential Study

2013

How we compute time is not fully understood. Questions include whether an automatic brain mechanism is engaged in temporally regular environmental structure in order to anticipate events, and whether this can be dissociated from task-related processes, including response preparation, selection and execution. To investigate these issues, a passive temporal oddball task requiring neither time-based motor response nor explicit decision was specifically designed and delivered to participants during high-density, event-related potentials recording. Participants were presented with pairs of audiovisual stimuli (S1 and S2) interspersed with an Inter-Stimulus Interval (ISI) that was manipulated acc…

Central Nervous SystemMaleTime Factorslcsh:MedicineAudiologyElectroencephalographySocial and Behavioral SciencesTime MeasurementCognitionPsychologylcsh:ScienceOddball paradigmmedia_commonMultidisciplinarySupplementary motor areamedicine.diagnostic_testCognitive NeurologyPhysicsMedicine (all)Motor CortexClassical MechanicsSMA*Contingent negative variationmedicine.anatomical_structureNeurologyMedicineSensory PerceptionFemaleOccipital LobeResearch ArticleHumanAdultmedicine.medical_specialtyTime FactorCognitive Neurosciencemedia_common.quotation_subjectNeurophysiologyNeuroimagingContingent Negative VariationBiologyYoung AdultEvent-related potentialPerceptionmedicineHumansBiologyAnalysis of VarianceBiochemistry Genetics and Molecular Biology (all)Settore M-PSI/02 - Psicobiologia E Psicologia FisiologicaWorking memorylcsh:RAgricultural and Biological Sciences (all)Evoked Potentials Visuallcsh:QNeuroscience
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Beta Rebound as an Index of Temporal Integration of Somatosensory and Motor Signals

2020

Modulation of cortical beta rhythm (15-30 Hz) is present during preparation for and execution of voluntary movements as well as during somatosensory stimulation. A rebound in beta synchronization is observed after the end of voluntary movements as well as after somatosensory stimulation and is believed to describe the return to baseline of sensorimotor networks. However, the contribution of efferent and afferent signals to the beta rebound remains poorly understood. Here, we applied electrical median nerve stimulation (MNS) to the right side followed by transcranial magnetic stimulation (TMS) on the left primary motor cortex after either 15 or 25 ms. Because the afferent volley reaches the …

Efferentmedicine.medical_treatmentCognitive NeuroscienceNeuroscience (miscellaneous)Socio-culturaleStimulationSomatosensory systemLateralization of brain functionlcsh:RC321-57103 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineDevelopmental NeurosciencemedicineBeta RhythmBeta (finance)transcranial magnetic stimulation (TMS)median nerve stimulation (MNS)lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry030304 developmental biologybeta rebound median nerve stimulation (MNS) motor area somatosensory area temporal integration transcranial magnetic stimulation (TMS)Original Research0303 health sciencestemporal integrationsomatosensory areamotor areabusiness.industrybeta reboundTranscranial magnetic stimulationmedicine.anatomical_structurebusinessNeuroscience030217 neurology & neurosurgeryMotor cortexNeuroscienceFrontiers in Systems Neuroscience
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Cross-frequency coupling between gamma oscillations and deep brain stimulation frequency in Parkinson's disease.

2020

Abstract The disruption of pathologically enhanced beta oscillations is considered one of the key mechanisms mediating the clinical effects of deep brain stimulation on motor symptoms in Parkinson’s disease. However, a specific modulation of other distinct physiological or pathological oscillatory activities could also play an important role in symptom control and motor function recovery during deep brain stimulation. Finely tuned gamma oscillations have been suggested to be prokinetic in nature, facilitating the preferential processing of physiological neural activity. In this study, we postulate that clinically effective high-frequency stimulation of the subthalamic nucleus imposes cross-…

MaleDeep brain stimulationmedicine.medical_treatmentDeep Brain StimulationStimulationcross-frequency couplingsource analysis610 Medicine & healthArticlePremotor cortexvolume of tissue activatedSubthalamic NucleusCerebellumGamma RhythmNeural PathwaysmedicineGamma RhythmHumans610 Medicine & healthAgedMovement DisordersSupplementary motor areaResting state fMRIChemistryMotor CortexElectroencephalographyParkinson DiseaseMiddle AgedSubthalamic nucleusmedicine.anatomical_structureFemaleNeurology (clinical)gamma oscillationsBeta RhythmNeuroscienceAlgorithmsMotor cortex
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rTMS of supplementary motor area modulates therapy-induced dyskinesias in Parkinson disease

2005

The neural mechanisms and circuitry involved in levodopa-induced dyskinesia are unclear. Using repetitive transcranial magnetic stimulation (rTMS) over the supplementary motor area (SMA) in a group of patients with advanced Parkinson disease, the authors investigated whether modulation of SMA excitability may result in a modification of a dyskinetic state induced by continuous apomorphine infusion. rTMS at 1 Hz was observed to markedly reduce drug-induced dyskinesias, whereas 5-Hz rTMS induced a slight but not significant increase.

MaleDyskinesia Drug-InducedApomorphinemedicine.medical_treatmentDopamineNeurological disorderNOCentral nervous system diseaseDegenerative diseasemental disordersNeural PathwaysmedicineHumansAgedSupplementary motor areaDyskinesiabusiness.industryDyskinesia Drug-Induced; Treatment Outcome; Male; Middle Aged; Female; Humans; Parkinson Disease; Motor Cortex; Recovery of Function; Apomorphine; Dopamine Agonists; Neural Pathways; Aged; Transcranial Magnetic Stimulation; DopamineMotor CortexParkinson DiseaseRecovery of FunctionMiddle Agedmedicine.diseaseSMA*Transcranial Magnetic Stimulationnervous system diseasesTranscranial magnetic stimulationApomorphinemedicine.anatomical_structureTreatment OutcomeDyskinesiaDrug-InducedDopamine AgonistsFemaleSettore MED/26 - NeurologiaNeurology (clinical)medicine.symptombusinessNeurosciencemedicine.drug
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