Search results for "electric [mass]"

showing 10 items of 1101 documents

Modulation of input–output curves by low and high frequency repetitive transcranial magnetic stimulation of the motor cortex

2002

Objectives: Exploring the modulatory effects of different frequencies of repetitive transcranial magnetic stimulation (rTMS) on the excitability of the motor cortex as measured by the input-output curve technique (I-O curve). Methods: Sixteen healthy subjects participated in this experiment. On two different sessions, conducted 1 week apart, rTMS was applied either at a frequency of 20 or 1Hz at 90% of individual motor threshold (MT) for a total of 1600 pulses each. Before and after rTMS, the cortical excitability was assessed by measuring MT and the size of motor evoked potentials (MEPs) collected at different intensities of stimulation. Results: The analysis on the whole population showed…

AdultMaleRepetitive transcranial magnetic stimulationmedicine.medical_treatmentPopulationCentral nervous systemStimulationbehavioral disciplines and activitiesPhysiology (medical)Modulation (music)medicineHumanseducationCerebral Cortexeducation.field_of_studyElectromyographyMotor CortexMotor controlCortical excitabilityInput-output curveEvoked Potentials MotorTranscranial Magnetic StimulationElectric StimulationSensory SystemsTranscranial magnetic stimulationElectrophysiologymedicine.anatomical_structureNeurologyFemaleNeurology (clinical)PsychologyNeuroscienceMotor cortexClinical Neurophysiology
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Reanimation of the Paralyzed Human Larynx With an Implantable Electrical Stimulation Device

2003

Objectives/Hypothesis Electrical stimulation of the posterior cricoarytenoid muscle, when paced with inspiration, offers a physiological approach to restore ventilation in bilateral laryngeal paralysis without any of the disadvantages associated with conventional treatment. Study Design A prospective study of six patients. Methods The patients were successfully implanted with an Itrel II stimulator (Medtronic, Inc). In postoperative sessions, stimulated vocal fold abduction, patient ventilation, and voice were assessed and compared with preoperative values. Results The optimum stimulus paradigm was a 1- to 2-second train of 1-millisecond pulses delivered at a frequency of 30 to 40 Hz and am…

AdultMaleResuscitationmedicine.medical_specialtyElectric Stimulation TherapyStimulationVocal CordsLateralization of brain functionParalysismedicineHumansProspective StudiesHuman larynxProspective cohort studyAgedElectromyographybusiness.industryMouth BreathingProstheses and ImplantsMiddle Agedmedicine.diseaseSurgeryOtorhinolaryngologyPosterior cricoarytenoid muscleLaryngeal paralysisAnesthesiaFemaleLaryngeal Musclesmedicine.symptombusinessVocal Cord ParalysisInspiratory CapacityThe Laryngoscope
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Chronic sacral neuromodulation for treatment of neurogenic bladder dysfunction: long-term results with unilateral implants

2001

Abstract Objectives. To investigate the therapeutic value of sacral neuromodulation in patients with neurogenic disorders in whom conservative treatment options were unsuccessful. Neurogenic disorders may result in various forms of lower urinary tract dysfunction. Methods. Twenty-seven patients (19 women, 8 men) aged 18 to 63 years (mean 44.9 years) were subjected to percutaneous test stimulation of the sacral spinal nerves. Their urologic symptoms consisted of bladder storage failure (n = 15) due to detrusor hyperreflexia and/or bladder hypersensitivity, failure to empty due to detrusor areflexia (n = 11), and combined bladder hypersensitivity and detrusor areflexia (n = 1). Twelve patient…

AdultMaleSacrummedicine.medical_specialtyPercutaneousAdolescentUrologyUrinary systemElectric Stimulation TherapyStimulationNeurological disordermedicineHumansUrinary Bladder NeurogenicNeurogenic bladder dysfunctionbusiness.industryLong term resultsMiddle AgedUrination Disordersmusculoskeletal systemmedicine.diseaseElectrodes ImplantedSurgerySacral nerve stimulationAnesthesiaFemaleImplantbusinessUrology
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Transcranial direct current stimulation of the motor cortex induces distinct changes in thermal and mechanical sensory percepts

2009

Abstract Objective The aim of this single-blinded, complete crossover study was to evaluate the effects of tDCS on thermal and mechanical perception, as assessed by quantitative sensory testing (QST). Methods QST was performed upon the radial part of both hands of eight healthy subjects (3 female, 5 male, 25–41 years of age). These subjects were examined before and after cathodal, anodal or sham tDCS, applied in a random order. TDCS was administered for 15 min at a 1 mA current intensity, with the active electrode placed over the left primary motor cortex and the reference electrode above the right orbit. Results After cathodal tDCS, cold detection thresholds (CDT), mechanical detection thr…

AdultMaleSignal Detection Psychologicalmedicine.medical_treatmentmedia_common.quotation_subjectCentral nervous systemSensory systemSomatosensory systemFunctional Laterality050105 experimental psychology03 medical and health sciences0302 clinical medicinePhysical StimulationPhysiology (medical)PerceptionReaction TimemedicineHumansSingle-Blind MethodThermosensing0501 psychology and cognitive sciencesmedia_commonAnalysis of VarianceTranscranial direct-current stimulation05 social sciencesMotor CortexEvoked Potentials MotorTranscranial Magnetic StimulationCrossover studyElectric StimulationSensory Systemsmedicine.anatomical_structureTouch PerceptionNeurologySensory ThresholdsFemaleNeurology (clinical)Analysis of variancePsychologyNeuroscience030217 neurology & neurosurgeryMotor cortexClinical 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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Does a Mental Training Session Induce Neuromuscular Fatigue?

2014

ROZAND, V., F. LEBON, C. PAPAXANTHIS, and R. LEPERS. Does a Mental Training Session Induce Neuromuscular Fatigue? Med. Sci. Sports Exerc., Vol. 46, No. 10, pp. 1981–1989, 2014. Mental training, as physical training, enhances muscle strength. Whereas the repetition of maximal voluntary contractions (MVC) induces neuromuscular fatigue, the effect of maximal imagined contractions (MIC) on neuromuscular fatigue remains unknown. Here, we investigated neuromuscular alterations after a mental training session including MIC, a physical training session including MVC, and a combined training session including both MIC and MVC of the elbow flexor muscles. Methods: Ten participants performed 80 MIC (d…

AdultMaleTRANSCRANIAL MAGNETIC STIMULATIONmedicine.medical_specialtymedicine.medical_treatmenteducationPyramidal TractsPhysical Therapy Sports Therapy and RehabilitationIMAGERYMOTOR-EVOKED-POTENTIALSYoung AdultMental ProcessesMotor imageryFLEXOR MUSCLESElbowHumansMedicineOrthopedics and Sports MedicineSession (computer science)MODULATIONExercise physiologyExerciseCONTRACTIONSbusiness.industryTraining (meteorology)SUPRASPINAL FATIGUECORTICOSPINAL EXCITABILITYWorkloadPERFORMANCEElectric StimulationMAXIMAL VOLUNTARYbody regionsTranscranial magnetic stimulationNeuromuscular fatigueMuscle FatiguePhysical therapy[ SCCO ] Cognitive sciencemedicine.symptombusinesshuman activitiesMuscle ContractionMuscle contractionMedicine & Science in Sports & Exercise
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The time course of idiom processing.

2007

Recent neuropsychological and neurophysiological studies have suggested that the neural correlates of idiom processing are predominantly located in the left Brodmann's area (BA) 22 and, to some extent, in the prefrontal cortex. The present study explores the temporal dynamics of left prefrontal and temporal cortex in idiom processing by using repetitive transcranial magnetic stimulation (rTMS) in normal subjects. Forty-five opaque highly familiar idioms and 45 literal sentences were used. Forty-three subjects completed 5 blocks of 18 trials (9 idioms, 9 literal sentences) corresponding to 4 stimulation conditions (left prefrontal, left temporal, vertex, no-stimulation baseline). Each subjec…

AdultMaleTime FactorsCognitive Neurosciencemedicine.medical_treatmentExperimental and Cognitive PsychologyM-PSI/02 - PSICOBIOLOGIA E PSICOLOGIA FISIOLOGICABrain mappingPrefrontal cortexBehavioral NeuroscienceTemporal cortexReaction TimemedicineHumansSemantic memoryPrefrontal cortexAgedCerebral CortexTemporal cortexAnalysis of VarianceBrain MappingNeural correlates of consciousnessIdiomSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaNeuropsychologyCognitionMiddle AgedElectric StimulationSemanticsTranscranial magnetic stimulationFemaleComprehensionPsychologyPhotic StimulationTranscranial magnetic stimulationCognitive psychology
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rTMS of the prefrontal cortex in the treatment of chronic migraine: a pilot study

2004

A recent fMRI study showed that dorsolateral prefrontal cortex (DLPFC) exerts an inhibitory control on pain pathways in humans. We investigated whether high-frequency rTMS over left DLPFC could ameliorate chronic migraine. Treatment consisted of 12 rTMS sessions, delivered in alternate days over left DLPFC. Sham rTMS was used as placebo. Eleven patients were randomly assigned to the rTMS (n=6) or to the placebo (n=5) treatment. Measures of attack frequency, headache index, number of abortive medications (outcome measures) were recorded in the month before, during and in the month after treatment. Subjects treated by rTMS showed a significant reduction of the outcome measures during and in t…

AdultMaleTime FactorsKindligMigraine DisordersPrefrontal CortexPilot ProjectsPlacebobehavioral disciplines and activitieslaw.inventionCentral nervous system diseaseMagneticsChronic MigraineDouble-Blind MethodRandomized controlled triallawmental disordersrTMSmedicineHumansPrefrontal cortexChronic migrainePsychiatric Status Rating ScalesAnalysis of VarianceHeadacheMigraine prophylaxiMiddle Agedmedicine.diseaseElectric StimulationClinical trialDorsolateral prefrontal cortexTreatment Outcomemedicine.anatomical_structurenervous systemNeurologyMigraineAnesthesiaCortico-lymbic sensitizationChronic DiseaseFemaleLeft dorsolateral prefrontal cortexNeurology (clinical)Psychologypsychological phenomena and processes
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Different short-term modulation of cortical motor output to distal and proximal upper-limb muscles during painful sensory nerve stimulation

2004

The pattern of upper-limb muscle activation following painful stimulation has not been clarified in detail. We investigated the short-term inhibitory and excitatory effects of painful electrical digital stimulation on the motoneuron pools of distal and proximal upper-limb muscles. Transcranial magnetic stimulation (TMS) was used as test stimulus, and painful digital nerve stimulation as conditioning stimulus for motor evoked potential (MEP) recordings over the abductor digiti minimi (ADM), abductor pollicis brevis (APB), biceps brachii (BB), and deltoid muscles. Inhibition of the conditioned MEP response was most prominent in the distal muscles, whereas BB and deltoid muscles were only weak…

AdultMaleTime FactorsPhysiologymedicine.medical_treatmentDeltoid curvePainWithdrawal reflexStimulationCellular and Molecular NeurosciencePhysiology (medical)medicineHumansNeurons AfferentEvoked potentialMuscle SkeletalAnalysis of VarianceAbductor pollicis brevis musclebusiness.industryMotor CortexAnatomyMotor neuronEvoked Potentials MotorElectric Stimulationbody regionsTranscranial magnetic stimulationmedicine.anatomical_structureArmFemaleNeurology (clinical)businessSensory nerveMuscle & Nerve
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Psychophysics, flare, and neurosecretory function in human pain models: capsaicin versus electrically evoked pain.

2007

Intradermal capsaicin injection (CAP) and electrical current stimulation (ES) are analyzed in respect to patterns and test-retest reliability of pain as well as sensory and neurosecretory changes. In 10 healthy subjects, 2 CAP (50 g) and 2 ES (5 to 30 mA) were applied to the volar forearm. The time period between 2 identical stimulations was about 4 months. Pain ratings, areas of mechanical hyperalgesia, and allodynia were assessed. The intensity of sensory changes was quantified by using quantitative sensory testing. Neurogenic flare was assessed by using laser Doppler imaging. Calcito- nin gene-related peptide (CGRP) release was quantified by dermal microdialysis in combination with an en…

AdultMaleTime FactorsSensory Receptor CellsCalcitonin Gene-Related PeptideModels NeurologicalPainStimulationSensory systemCalcitonin gene-related peptidechemistry.chemical_compoundmedicineNoxious stimulusLaser-Doppler FlowmetryPsychophysicsHumansPain MeasurementSkinNerve Fibers UnmyelinatedNeuronal Plasticitybusiness.industryNociceptorsMiddle AgedNeurosecretory SystemsElectric StimulationPeripheralAnesthesiology and Pain MedicineAllodyniaNeurologychemistryCapsaicinHyperalgesiaRegional Blood FlowAnesthesiaHyperalgesiaFemaleNeurology (clinical)medicine.symptomCapsaicinInflammation MediatorsbusinessThe journal of pain
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