Search results for "Somatosensory cortex"

showing 10 items of 106 documents

Detecting differences with magnetoencephalography of somatosensory processing after tactile and electrical stimuli.

2018

Abstract Background Deviant stimuli within a standard, frequent stimulus train induce a cortical somatosensory mismatch response (SMMR). The SMMR reflects the brain’s automatic mechanism for the detection of change in a somatosensory domain. It is usually elicited by electrical stimulation, which activates nerve fibers and receptors in superficial and deep skin layers, whereas tactile stimulation is closer to natural stimulation and activates uniform fiber types. We recorded SMMRs after electrical and tactile stimuli. Method 306-channel magnetoencephalography recordings were made with 16 healthy adults under two conditions: electrical (eSMMR) and tactile (tSMMR) stimulations. The SMMR proto…

0301 basic medicineAdultMaleAdolescenthuman sensory cortexStimulationStimulus (physiology)Somatosensory systemta3112Tactile stimulikosketusaisti03 medical and health sciencesYoung Adult0302 clinical medicineEvoked Potentials SomatosensoryPhysical StimulationmedicineHumansaivotutkimuscutaneous nerve stimulationSensory stimulation therapyMEGmedicine.diagnostic_testbusiness.industryfunctional brain imagingGeneral NeuroscienceMagnetoencephalographySignal Processing Computer-AssistedMagnetoencephalographySomatosensory Cortexmismatch responseElectric StimulationLong latency030104 developmental biologyTouch Perceptiontactile stimulationFemalebusinessNeuroscienceTactile processing030217 neurology & neurosurgeryärsykkeetJournal of neuroscience methods
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Long-term physical activity modulates brain processing of somatosensory stimuli: Evidence from young male twins.

2016

Leisure-time physical activity is a key contributor to physical and mental health. Yet the role of physical activity in modulating cortical function is poorly known. We investigated whether precognitive sensory brain functions are associated with the level of physical activity. Physical activity history (3-yr-LTMET), physiological measures and somatosensory mismatch response (sMMR) in EEG were recorded in 32 young healthy twins. In all participants, 3-yr-LTMET correlated negatively with body fat%, r = −0.77 and positively with VO2max, r = 0.82. The fat% and VO2max differed between 15 physically active and 17 inactive participants. Trend toward larger sMMR was seen in inactive compared to ac…

0301 basic medicineAdultMalehuman electrophysiologyFITNESSMISMATCH NEGATIVITY MMN515 PsychologyPhysical activityMonozygotic twinprecognitive brain functionPhysical exerciseSensory systemCHILDRENGatingElectroencephalographyMotor ActivitySomatosensory system03 medical and health sciences0302 clinical medicinephysical exercisemedicineEVOKED-POTENTIALSHumansHealthy Lifestyleta315Evoked PotentialsExerciseYoung malemedicine.diagnostic_testLATENCYGeneral NeuroscienceMEMORYta3141ADULTSSomatosensory Cortex16. Peace & justice3142 Public health care science environmental and occupational healthta3124030104 developmental biologyNeuropsychology and Physiological PsychologyDISCRIMINATIONFemalePsychologyNeurosciencesomatosensory mismatch response030217 neurology & neurosurgeryRESPONSESBiological psychology
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Acute Exercise Modulates Pain-induced Response on Sensorimotor Cortex ∼20 Hz Oscillation.

2019

Exercise affects positively on self-reported pain in musculoskeletal pain conditions possibly via top-down pain inhibitory networks. However, the role of cortical activity in these networks is unclear. The aim of the current exploratory study was to investigate the effects of acute exercise on cortical nociceptive processing and specifically the excitability in the human sensorimotor cortex. Five healthy adults (mean age 32.8 years) were recorded with a whole-head 306-channel magnetoencephalography (MEG, Elekta Neuromag® Triux™). Participant’s right hand third fingertip was stimulated electrically with an intracutaneous non-magnetic copper tip electrode before and immediately after an exerc…

0301 basic medicineAdultbrain oscillationsPainStimulationEvoked fieldIsometric exerciseliikuntaStimulus (physiology)Inhibitory postsynaptic potentialSomatosensory systemkivunhoito03 medical and health sciences0302 clinical medicineEvoked Potentials SomatosensorymedicineHumanselectrical stimulationsensorimotor cortexExerciseMEGexercisemedicine.diagnostic_testbusiness.industryGeneral NeuroscienceMagnetoencephalographyMagnetoencephalographySomatosensory Cortexaivokuori030104 developmental biologyNociceptionmagnetoencephalographstimulointiSensorimotor CortexbusinessNeuroscience030217 neurology & neurosurgeryliikuntahoitoNeuroscience
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Electrical activity controls area-specific expression of neuronal apoptosis in the mouse developing cerebral cortex

2017

Programmed cell death widely but heterogeneously affects the developing brain, causing the loss of up to 50% of neurons in rodents. However, whether this heterogeneity originates from neuronal identity and/or network-dependent processes is unknown. Here, we report that the primary motor cortex (M1) and primary somatosensory cortex (S1), two adjacent but functionally distinct areas, display striking differences in density of apoptotic neurons during the early postnatal period. These differences in rate of apoptosis negatively correlate with region-dependent levels of activity. Disrupting this activity either pharmacologically or by electrical stimulation alters the spatial pattern of apoptos…

0301 basic medicineAgingMouseStimulationCell CountSomatosensory systemMice0302 clinical medicineAnesthesiaBiology (General)whisker deafferentationCerebral CortexNeuronsNeocortexCaspase 3General NeuroscienceQRapoptosisMotor CortexGeneral MedicineAnatomyactivity patternsmedicine.anatomical_structurecell deathCerebral cortexMedicinePrimary motor cortexMotor cortexResearch ArticleProgrammed cell deathQH301-705.5ScienceBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesmedicineAnimalsSensory deprivationdevelopmentGeneral Immunology and MicrobiologySomatosensory CortexElectrophysiological Phenomena030104 developmental biologyDevelopmental Biology and Stem Cellsnervous systemAnimals NewbornNeuroscience030217 neurology & neurosurgeryNeuroscienceeLife
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Cell type specific impact of cannabinoid receptor signaling in somatosensory barrel map formation in mice

2019

Endocannabinoids and their receptors are highly abundant in the developing cerebral cortex and play major roles in early developmental processes, for example, neuronal proliferation, migration, and axonal guidance as well as postnatal plasticity. To investigate the role of the cannabinoid type 1 receptor (CB1) in the formation of sensory maps in the cerebral cortex, the topographic representation of the whiskers in the primary somatosensory cortex (barrel field) of adult mice with different cell type specific genetic deletion of CB1 was studied. A constitutive absence of CB1 (CB1-KO) significantly decreased the total area of the somatosensory cortical map, affecting barrel, and septal areas…

0301 basic medicineBiologySomatosensory systemMice03 medical and health sciencesGlutamatergicOrgan Culture Techniques0302 clinical medicineReceptor Cannabinoid CB1medicineAnimalsMice KnockoutBrain Mappingmusculoskeletal neural and ocular physiologyGeneral Neurosciencefood and beveragesSomatosensory CortexBarrel cortexMice Inbred C57BL030104 developmental biologyCortical mapmedicine.anatomical_structurenervous systemCerebral cortexSensory mapsForebrainGABAergiclipids (amino acids peptides and proteins)Neurosciencepsychological phenomena and processes030217 neurology & neurosurgerySignal TransductionJournal of Comparative Neurology
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Models for preterm cortical development using non invasive clinical EEG

2017

AbstractThe objective of this study was to evaluate the piglet and the mouse as model systems for preterm cortical development. According to the clinical context, we used non invasive EEG recordings. As a prerequisite, we developed miniaturized Ag/AgCl electrodes for full band EEG recordings in mice and verified that Urethane had no effect on EEG band power. Since mice are born with a “preterm” brain, we evaluated three age groups: P0/P1, P3/P4 and P13/P14. Our aim was to identify EEG patterns in the somatosensory cortex which are distinguishable between developmental stages and represent a physiologic brain development. In mice, we were able to find clear differences between age groups wit…

0301 basic medicineBrain developmentsomatosensory cortexmouse modelContext (language use)Neurosciences. Biological psychiatry. NeuropsychiatryBiologyElectroencephalographySomatosensory system600 Technik Medizin angewandte Wissenschaften::610 Medizin und Gesundheit::616 KrankheitenInterhemispheric coherence03 medical and health sciences0302 clinical medicine616medicineCoherence (signal processing)cortical developmentmedicine.diagnostic_testGeneral Neurosciencephase amplitude couplingNon invasivetelemetrycoherence030104 developmental biologypigletfull band eegpretermNeuroscience030217 neurology & neurosurgeryPhase amplitude couplingRegular ArticlesRC321-571Translational Neuroscience
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Assessing sensory versus optogenetic network activation by combining (o)fMRI with optical Ca2+ recordings

2016

Encoding of sensory inputs in the cortex is characterized by sparse neuronal network activation. Optogenetic stimulation has previously been combined with fMRI (ofMRI) to probe functional networks. However, for a quantitative optogenetic probing of sensory-driven sparse network activation, the level of similarity between sensory and optogenetic network activation needs to be explored. Here, we complement ofMRI with optic fiber-based population Ca2+ recordings for a region-specific readout of neuronal spiking activity in rat brain. Comparing Ca2+ responses to the blood oxygenation level-dependent signal upon sensory stimulation with increasing frequencies showed adaptation of Ca2+ transient…

0301 basic medicineGenetic VectorsPopulationOptogenetic fMRIChannelrhodopsinSensory systemStimulationOptogeneticsSomatosensory system03 medical and health sciences0302 clinical medicineChannelrhodopsinsTransduction GeneticBiological neural networkAnimalseducationEvoked PotentialsOptical FibersNeuronseducation.field_of_studyAniline CompoundsSensory stimulation therapyChemistrySomatosensory CortexOriginal Articlesoptical neurophysiologyFluoresceinsMagnetic Resonance ImagingRats Inbred F344calcium recordingsOptogeneticsOxygen030104 developmental biologyMicroscopy FluorescenceNeurologylight propagationCalciumFemalesparse network activationNeurology (clinical)Cardiology and Cardiovascular MedicineNeurosciencePhotic Stimulation030217 neurology & neurosurgeryJournal of Cerebral Blood Flow & Metabolism
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Activation of Corticothalamic Layer 6 Cells Decreases Angular Tuning in Mouse Barrel Cortex.

2019

In the mouse whisker system, the contribution of L6 corticothalamic cells (L6 CT) to cortical and thalamic processing of the whisker deflection direction was investigated. A genetically defined population of L6 CT cells project to infragranular GABAergic interneurons that hyperpolarize neurons in somatosensory barrel cortex (BC). Optogenetic activation of these neurons switched BC to an adapted mode in which excitatory cells lost their angular tuning. In contrast, however, this was not the case with a general activation of inhibitory interneurons via optogenetic activation of Gad2-expressing cells. The decrease in angular tuning, when L6 CT cells were activated, was due to changes in cortic…

0301 basic medicineMaleCognitive NeurosciencePopulationNeuroscience (miscellaneous)OptogeneticsSomatosensory systemInhibitory postsynaptic potentiallcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceMice0302 clinical medicineThalamusexcitation inhibition balancedirection selectivitymedicineAnimalsGABAergic Neuronseducationlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal ResearchNeuronseducation.field_of_studyAfferent PathwaysNeocortexGAD2NTSR1ChemistryNeural InhibitionSomatosensory CortexBarrel cortexSensory Systemslayer 6030104 developmental biologymedicine.anatomical_structurenervous systemTouch PerceptionVibrissaeExcitatory postsynaptic potentialGABAergicFemaleNeuroscience030217 neurology & neurosurgeryNeuroscienceFrontiers in neural circuits
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Somatosensory Brain Function and Gray Matter Regional Volumes Differ According to Exercise History : Evidence from Monozygotic Twins

2017

Associations between long-term physical activity and cortical function and brain structure are poorly known. Our aim was to assess whether brain functional and/or structural modulation associated with long-term physical activity is detectable using a discordant monozygotic male twin pair design. Nine monozygotic male twin pairs were carefully selected for an intrapair difference in their leisure-time physical activity of at least three years duration (mean age 34 ± 1 years). We registered somatosensory mismatch response (SMMR) in EEG to electrical stimulation of fingers and whole brain MR images. We obtained exercise history and measured physical fitness and body composition. Equivalent ele…

0301 basic medicineMaleFITNESSMismatch negativityphysical activityMismatch negativityElectroencephalographycomputer.software_genreSomatosensory systemSuperior temporal gyrus0302 clinical medicineVoxelBrain structureGENERATORSTwin researchGray MatterRadiological and Ultrasound Technologymedicine.diagnostic_testOrgan SizeMagnetic Resonance Imaging3142 Public health care science environmental and occupational healthmedicine.anatomical_structureNeurologyEXCITABILITYHEALTHAnatomyPsychologyAdultsomatosensory cortexMISMATCH NEGATIVITY MMNPOTENTIALS03 medical and health sciencesTIME PHYSICAL-ACTIVITYmedicineBrain electrophysiologyHumansRadiology Nuclear Medicine and imagingMODULATIONExercisekaksostutkimusbrain electrophysiologyPostcentral gyrusPhysical activitybrain structureTwins MonozygoticMedial frontal gyrusTwin studySomatosensory cortex030104 developmental biologyDISCRIMINATIONNeurology (clinical)poikkeavuusnegatiivisuuscomputerNeuroscience030217 neurology & neurosurgeryRESPONSES
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Behavioral and Cortical Correlates of Self-Suppression, Anticipation, and Ambivalence in Rat Tickling.

2019

The relationship between tickling, sensation, and laughter is complex. Tickling or its mere anticipation makes us laugh, but not when we self-tickle. We previously showed rat somatosensory cortex drives tickling-evoked vocalizations and now investigated self-tickle suppression and tickle anticipation. We recorded somatosensory cortex activity while tickling and touching rats and while rats touched themselves. Allo-touch and tickling evoked somatotopic cortical excitation and vocalizations. Self-touch induced wide-ranging inhibition and vocalization suppression. Self-touch also suppressed vocalizations and cortical responses evoked by allo-touch or cortical microstimulation. We suggest a glo…

0301 basic medicineMalemedia_common.quotation_subjectBiologySomatosensory systemGeneral Biochemistry Genetics and Molecular BiologyLaughter03 medical and health sciences0302 clinical medicineSensationmedicineMicrostimulationAnimalsRats Long-Evansmedia_commonTicklingSomatosensory CortexAnticipationRatsAffect030104 developmental biologyTouch PerceptionTouchGabazineGABAergicGeneral Agricultural and Biological SciencesNeuroscience030217 neurology & neurosurgerymedicine.drugCurrent biology : CB
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