Search results for " stimulation"

showing 10 items of 1644 documents

Modulatory effects of low- and high-frequency repetitive transcranial magnetic stimulation on visual cortex of healthy subjects undergoing light depr…

2005

The aim of the present study was to explore further the effects of light deprivation (LD) on visual cortex excitability. Healthy subjects reporting reliable induction of phosphenes by occipital transcranial magnetic stimulation (TMS) underwent 60 min of complete LD. Phosphene threshold (PT) was measured before (T0), after 45 min (T1) and 60 min (T2) of LD, and then every 10 min after light re-exposure until recovery to T0 values. Repetitive TMS (rTMS) (at 1 or 10 Hz) was applied in separate sessions during the last 15 min of LD. PTs significantly decreased after 45 min of LD. rTMS differentially modified the effects of 60 min LD on PTs depending on stimulation frequency. One hertz rTMS did …

AdultMalePhosphenesNeural Inhibition/physiology Phosphenes/physiology Photic Stimulation Sensory Deprivation/physiology Transcranial Magnetic Stimulation Visual Cortex/physiologyNeural InhibitionMiddle AgedTranscranial Magnetic StimulationElectric StimulationIntegrative PhysiologyHumansFemaleSensory DeprivationPhotic StimulationVisual CortexThe Journal of physiology
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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
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Quantifying changes in EEG complexity induced by photic stimulation.

2009

Summary Objectives: This study aims to characterize EEG complexity, measured as the prediction error resulting from nonlinear prediction, in healthy humans during photic stimulation. Methods: EEGs were recorded from 15 subjects with eyes closed (EC) and eyes open (EO), during the baseline condition and during stroboscopic photic stimulation (PS) at 5, 10, and 15 Hz. The mean squared prediction error (MSPE) resulting from nearest neighbor local linear prediction was taken as complexity index. Complexity maps were generated interpolating the MSPE index over a schematic scalp representation. Results: Statistical analysis revealed that: i) EEG shows good predictability in all conditions and see…

AdultMalePhotic StimulationComputer scienceHealth InformaticsElectroencephalographyMachine learningcomputer.software_genreBrain mappingComplexity indexHealth Information ManagementReference ValuesmedicineHumansEEGPredictabilityPredictability mapVisual stimulationHealth InformaticAdvanced and Specialized NursingBrain Mappingmedicine.diagnostic_testbusiness.industryStochastic processLocal linear predictionPattern recognitionElectroencephalographySignal Processing Computer-AssistedNeurophysiologymedicine.anatomical_structureNonlinear DynamicsScalpSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaFemaleArtificial intelligencebusinesscomputerAlgorithmsPhotic StimulationMethods of information in medicine
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Perceptual Correlate of Nociceptive Long-Term Potentiation (LTP) in Humans Shares the Time Course of Early-LTP

2006

As in neocortex and hippocampus, neurons in the dorsal horn of the spinal cord develop long-term potentiation of synaptic efficacy (LTP) on high-frequency stimulation (HFS) of their afferent input, although how long LTP lasts in this nociceptive relay nucleus has not yet been addressed. Here we studied neurogenic hyperalgesia, a perceptual correlate of nociceptive LTP, in 13 healthy subjects, after HFS (5 × 1 s at 100 Hz) of superficial cutaneous afferents. HFS led to a mean upward shift of the stimulus–response function for pinprick-evoked pain (punctate mechanical hyperalgesia) in all subjects by a factor of 2.5 ( P < 0.001) that lasted undiminished for the initial 1-h observation per…

AdultMalePhysiologyLong-Term PotentiationPainHippocampusStimulationPhysical StimulationConditioning PsychologicalmedicineHumansNeurons AfferentPain MeasurementNeocortexGeneral NeuroscienceNociceptorsLong-term potentiationSpinal cordElectric StimulationNociceptionmedicine.anatomical_structureHyperalgesiaData Interpretation StatisticalTime courseHyperalgesiaVisual PerceptionFemalemedicine.symptomPsychologyNeuroscienceJournal of Neurophysiology
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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 the probability of firing of motor units following electrical stimulation in human limb muscles

1986

Changes in the probability of motor unit firing was studied in ten different muscles (six muscles in the upper extremity and four muscles in the lower extremity) of eleven healthy human subjects. The responses were elicited by the electrical stimulation of cutaneous or mixed nerves during weak voluntary contraction of the muscle studied, and were recorded by averaging the rectified surface electromyogram. In eight of the ten muscles, well-detectable, short and long latency excitatory phases were observed. The most constant and well-identified excitatory responses were observed in the first interosseus dorsalis muscle in the hand, and in the extensor digitorum brevis muscle in the foot. Thes…

AdultMalePhysiologyNeural ConductionStimulationElectromyographyReflexmedicineHumansProbabilityMotor NeuronsLegmedicine.diagnostic_testElectromyographybusiness.industryMusclesAnatomyNeurophysiologyElectric StimulationMotor unitElectrophysiologyArmReflexExcitatory postsynaptic potentialFemalebusinessExtensor digitorum brevis muscleMuscle ContractionActa Physiologica Scandinavica
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Bipedal distribution of human vestibular‐evoked postural responses during asymmetrical standing

2002

Galvanic vestibular stimulation (GVS) evokes responses in muscles of both legs when bilateral stimuli are applied during normal stance. We have used this technique to assess whether asymmetrical standing alters the distribution of responses in the two legs. Subjects stood either asymmetrically with 75% of their body weight on one leg or symmetrically with each leg taking 50% of their body weight. The net response in each leg was taken from changes in ground reaction force measured from separate force plates under each foot. The net force profile consisted of a small initial force change that peaked at approximately 200 ms followed by an oppositely directed larger component that peaked at ap…

AdultMalePhysiologyPostureElectromyographyFunctional LateralityIsometric ContractionmedicineHumansForce platformGround reaction forceGalvanic vestibular stimulationBalance (ability)PhysicsVestibular systemLegmedicine.diagnostic_testElectromyographyFootOriginal ArticlesAnatomyHorizontal planeHead MovementsLinear ModelsVestibule LabyrinthTilt (camera)GravitationThe Journal of Physiology
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Activation of human quadriceps femoris during isometric, concentric, and eccentric contractions.

2001

Maximal and submaximal activation level of the right knee-extensor muscle group were studied during isometric and slow isokinetic muscular contractions in eight male subjects. The activation level was quantified by means of the twitch interpolation technique. A single electrical impulse was delivered, whatever the contraction mode, on the femoral nerve at a constant 50° knee flexion (0° = full extension). Concentric, eccentric (both at 20°/s velocity), and isometric voluntary activation levels were then calculated. The mean activation levels during maximal eccentric and maximal concentric contractions were 88.3 and 89.7%, respectively, and were significantly lower ( P < 0.05) with respe…

AdultMalePhysiologyRestEccentric contractionsIsometric exerciseConcentricMuscular ContractionsIsometric ContractionPhysiology (medical)HumansMedicineEccentricKneeMuscle SkeletalLegbusiness.industryTwitch interpolationAnatomyElectric StimulationTorquemedicine.symptomMuscle groupbusinessMuscle ContractionMuscle contraction
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Intermuscular force transmission between human plantarflexor muscles in vivo.

2010

The exact mechanical function of synergist muscles within a human limb in vivo is not well described. Recent studies indicate the existence of a mechanical interaction between muscle actuators that may have functional significance and further play a role for injury mechanisms. The purpose of the present study was to investigate if intermuscular force transmission occurs within and between human plantarflexor muscles in vivo. Seven subjects performed four types of either active contractile tasks or passive joint manipulations: passive knee extension, voluntary isometric plantarflexion, voluntary isometric hallux flexion, passive hallux extension, and selective percutaneous stimulation of th…

AdultMalePhysiologyStimulationIsometric exerciseElectromyographyIn vivoPhysiology (medical)Isometric ContractionmedicineHumansDisplacement (orthopedic surgery)Muscle StrengthMuscle SkeletalUltrasonographymedicine.diagnostic_testArthrometry Articularbusiness.industryElectromyographyAnatomyElectric StimulationTendonBiomechanical Phenomenamedicine.anatomical_structureFunctional significanceUltrasonographybusinessJournal of applied physiology (Bethesda, Md. : 1985)
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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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