Search results for "Sensory cortex"

showing 10 items of 113 documents

Interoceptive and multimodal functions of the operculo-insular cortex: tactile, nociceptive and vestibular representations.

2013

The operculo-insular cortex has been termed the 'homeostatic control center' or 'general magnitude estimator' of the human mind. In this study, somatosensory, nociceptive and caloric vestibular stimuli were applied to reveal, whether there are mainly common, or possibly specific regions activated by one modality alone and whether lateralization effects, time pattern differences or influences of the aversive nature of the stimuli could be observed. Activation of the dorsal posterior insula was caused by all stimuli alike thus terming this area multimodal. Early phases of the noxious heat and caloric vestibular stimulation led to responses in the anterior insula. Using conjunction analyses we…

AdultMaleNociceptionCognitive NeuroscienceSomatosensory systemInsular cortexbehavioral disciplines and activitiesLateralization of brain functionInteroceptionYoung AdultCortex (anatomy)Physical StimulationmedicineHumansPostural BalanceVestibular systemBrain MappingSensory stimulation therapySomatosensory CortexMagnetic Resonance Imagingmedicine.anatomical_structurenervous systemNeurologyTouchFemaleVestibule LabyrinthAversive StimulusPsychologyInsulaNeurosciencepsychological phenomena and processesNeuroImage
researchProduct

Illusion of Pain: Pre-existing Knowledge Determines Brain Activation of ‘Imagined Allodynia’

2007

Abstract Allodynia means that innocuous tactile stimulation is felt as pain. Accordingly, cerebral activations during allodynia or touch should markedly differ. The aim of this study was to investigate whether the imagination of allodynia affects brain processing of touch in healthy subjects. Seventeen healthy subjects divided into 2 subgroups were investigated: The first group (n = 7) was familiar with allodynia, based on previous pain studies, whereas the second group (n = 10) had never knowingly experienced allodynia. Using functional magnetic resonance imaging, 2 experimental conditions were investigated. In one condition the subjects were simply touched at their left hand, whereas duri…

AdultMalePain ThresholdBrain activity and meditationPainSensory systemInsular cortexPhysical StimulationImage Processing Computer-AssistedPsychophysicsHumansMedicineAnterior cingulate cortexPain MeasurementBrain MappingSensory stimulation therapymedicine.diagnostic_testHyperesthesiabusiness.industrySomatosensory CortexMiddle AgedIllusionsMagnetic Resonance ImagingOxygenKnowledgeAnesthesiology and Pain MedicineAllodyniamedicine.anatomical_structureNeurologyTouchNeuropathic painImaginationFemaleNeurology (clinical)medicine.symptombusinessFunctional magnetic resonance imagingNeuroscienceThe Journal of Pain
researchProduct

Basal opioid receptor binding is associated with differences in sensory perception in healthy human subjects: a [18F]diprenorphine PET study.

2009

The endogenous opioid system is involved in many body functions including pain processing and analgesia. To determine the role of basal opioid receptor availability in the brain in pain perception, twenty-three healthy subjects underwent positron emission tomography (PET) utilizing the subtype-nonselective opioid antagonist [(18)F]diprenorphine, quantitative sensory testing (QST) and the cold pressor test. Binding potentials (BPs) were calculated using a non-invasive reference tissue model and statistical parametric mapping was applied for t-statistical analysis on a voxelwise basis. We found that cold pain-sensitive subjects present a significantly lower BP in regions including the bilater…

AdultMalePain Thresholdmedicine.drug_classCognitive NeuroscienceSensationDiprenorphinePainInsular cortexYoung AdultOpioid receptorOpioid Receptor BindingPhysical StimulationmedicinePressureHumansEndogenous opioidBrain ChemistryBrainSomatosensory CortexMiddle AgedCold TemperatureNeurologyOpioidData Interpretation StatisticalPositron-Emission TomographySensory ThresholdsReceptors OpioidOrbitofrontal cortexPerceptionRadiopharmaceuticalsPsychologyDiprenorphineNeuroscienceOpioid antagonistmedicine.drugNeuroImage
researchProduct

Effects of transcranial direct current stimulation of the primary sensory cortex on somatosensory perception.

2011

Background: Transcranial direct current stimulation (tDCS) is able to modify cortical excitability and activity in humans. Objective: The aim of the present study was to analyze the effects of tDCS of the primary sensory cortex (SI) on thermal and mechanical perception, assessed by quantitative sensory testing (QST). Methods: The comprehensive QST protocol encompassing thermal and mechanical detection and pain thresholds as devised by the German Research Network on Neuropathic Pain (DFNS) was applied to skin areas innervated by the radial and median nerve of 12 healthy subjects, who were examined before and after each tDCS stimulation type. Anodal, cathodal, and sham tDCS was applied at a 1…

AdultMalePain Thresholdmedicine.medical_specialtymedicine.medical_treatmentBiophysicsquantitative sensory testingStimulationAudiologySomatosensory system050105 experimental psychologyFunctional Lateralitylcsh:RC321-57103 medical and health sciencesYoung Adult0302 clinical medicineEvoked Potentials SomatosensoryPhysical StimulationSensationThreshold of painmedicineReaction TimeHumans0501 psychology and cognitive sciencesThermosensinglcsh:Neurosciences. Biological psychiatry. NeuropsychiatryAnalysis of VarianceTranscranial direct-current stimulationGeneral Neuroscience05 social sciencesTemperatureElectroencephalographySomatosensory CortexQSTTranscranial Magnetic StimulationTranscranial magnetic stimulationHyperalgesiaNeuropathic painFemaleNeurology (clinical)transcranial direct current stimulationPrimary motor cortexPsychologyNeuroscience030217 neurology & neurosurgeryBrain stimulation
researchProduct

Feasibility and reproducibility of electroencephalography-based corticokinematic coherence

2020

Corticokinematic coherence (CKC) is the phase coupling between limb kinematics and cortical neurophysiological signals, reflecting cortical processing of proprioceptive afference, and it is reproducible when estimated with magnetoencephalography (MEG). However, feasibility and reproducibility of CKC based on electroencephalography (EEG) is still unclear and is the primary object of the present report. Thirteen healthy right-handed volunteers (seven females, 21.7 ± 4.3 yr) participated in two combined MEG/EEG sessions 12.6 ± 1.3 mo apart. Participants' dominant and nondominant index finger was continuously moved at 3 Hz for 4 min separately using a pneumatic-movement actuator. Coherence was …

AdultMalePhysiologyComputer scienceMovementproprioceptionKinematicsElectroencephalographyFunctional Laterality050105 experimental psychologysomatosensoryFingersYoung Adult03 medical and health sciences0302 clinical medicineEvoked Potentials SomatosensorymedicineHumans0501 psychology and cognitive sciencesComputer visionEEGrepeatabilityReproducibilityliikeaistimedicine.diagnostic_testProprioceptiontoistettavuusbusiness.industryGeneral Neuroscience05 social sciencesMagnetoencephalographyReproducibility of ResultsSomatosensory CortexCoherence (statistics)Sciences bio-médicales et agricolesneurotieteetBiomechanical Phenomena3. Good healthkinematicsFeasibility StudiesFemalebiomekaniikkaArtificial intelligencebusiness030217 neurology & neurosurgeryelectroencephalography
researchProduct

Dipole Source Analyses of Early Median Nerve SEP Components Obtained From Subdural Grid Recordings

2010

The median nerve N20 and P22 SEP components constitute the initial response of the primary somatosensory cortex to somatosensory stimulation of the upper extremity. Knowledge of the underlying generators is important both for basic understanding of the initial sequence of cortical activation and to identify landmarks for eloquent areas to spare in resection planning of cortex in epilepsy surgery. We now set out to localize the N20 and P22 using subdural grid recording with special emphasis on the question of the origin of P22: Brodmann area 4 versus area 1. Electroencephalographic dipole source analysis of the N20 and P22 responses obtained from subdural grids over the primary somatosensor…

AdultMalePhysiologyModels NeurologicalSubdural SpaceSomatosensory systemYoung AdultSpecies SpecificityEvoked Potentials SomatosensoryCortex (anatomy)Brodmann area 4medicineAnimalsHumansBrain MappingEpilepsyScalpGeneral NeuroscienceMotor CortexElectroencephalographyArticlesHaplorhiniSomatosensory CortexAnatomyMiddle AgedMagnetic Resonance ImagingCentral sulcusMedian Nervemedicine.anatomical_structureSomatosensory evoked potentialFemalePrimary motor cortexTomography X-Ray ComputedPsychologyNeuroscienceBrodmann areaMotor cortexJournal of Neurophysiology
researchProduct

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
researchProduct

Median and tibial nerve somatosensory evoked potentials: middle-latency components from the vicinity of the secondary somatosensory cortex in humans

1997

The topography of the middle-latency N110 after radial nerve stimulation suggested a generator in SII. To support this hypothesis, we have tried to identify a homologous component in the tibial nerve SEP (somatosensory evoked potential). Evoked potentials following tibial nerve stimulation (motor + sensory threshold) were recorded with 29 electrodes (bandpass 0.5-500 Hz, sampling rate 1000 Hz). For comparison, the median nerve was stimulated at the wrist. Components were identified as peaks in the global field power (GFP). Map series were generated around GFP peaks and amplitudes were measured from electrodes near map maxima. With median nerve stimulation, we recorded a negativity with a ma…

AdultMaleSecondary somatosensory cortexChemistryGeneral NeuroscienceElectroencephalographyStimulationSomatosensory CortexAnatomySomatosensory systemMedian nerveMedian Nervemedicine.anatomical_structureSomatosensory evoked potentialEvoked Potentials SomatosensoryPeripheral nervous systemmedicineHumansFemaleNeurology (clinical)Tibial NerveTibial nerveRadial nerveElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section
researchProduct

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
researchProduct

Facilitatory effects of 1 Hz rTMS in motor cortex of patients affected by migraine with aura

2004

We previously showed paradoxical facilitatory effects of low-frequency repetitive transcranial magnetic stimulation (rTMS) on striate and extrastriate cortex of patients suffering migraine with aura. In this study we evaluated the effects of 1 Hz rTMS on the excitability of inhibitory and facilitatory circuits of motor cortex to explore whether the abnormal pattern of excitability extends beyond the sensory cortex also involving motor areas in migraine with aura. Nine patients affected by migraine with aura and eight healthy controls entered into the study. The hot spot for activation of the right abductor pollicis brevis (APB) was checked by means of a figure-of-eight coil and motor thresh…

AdultMaleTime Factorsmedicine.medical_treatmentElectromagnetic FieldsExtrastriate cortexmotor cortexrTMSmedicineHumansmigraine with auraSensory cortexEvoked potentialAbductor pollicis brevis muscleGeneral NeuroscienceEvoked Potentials MotorMigraine with auraparadoxical facilitationTranscranial magnetic stimulationVisual cortexmedicine.anatomical_structureFemalemedicine.symptomPsychologyNeuroscienceMotor cortex
researchProduct