Search results for "PLASTICITY"

showing 10 items of 765 documents

Plasticity of brain wave network interactions and evolution across physiologic states

2015

Neural plasticity transcends a range of spatio-temporal scales and serves as the basis of various brain activities and physiologic functions. At the microscopic level, it enables the emergence of brain waves with complex temporal dynamics. At the macroscopic level, presence and dominance of specific brain waves is associated with important brain functions. The role of neural plasticity at different levels in generating distinct brain rhythms and how brain rhythms communicate with each other across brain areas to generate physiologic states and functions remains not understood. Here we perform an empirical exploration of neural plasticity at the level of brain wave network interactions repre…

AdultMaleNerve netCognitive NeuroscienceNeuroscience (miscellaneous)Sensory systemPlasticityCognitive neurosciencelcsh:RC321-571Young AdultCellular and Molecular NeuroscienceNeuroplasticitymedicineHumanslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal ResearchSlow-wave sleepCerebral CortexNetwork physiologySleep StagesNeuronal PlasticityBrain WaveBrain wave interactions; Network physiology; Neural plasticity; Sleep; Time delay stability; Adult; Brain Waves; Cerebral Cortex; Female; Humans; Male; Nerve Net; Neuronal Plasticity; Sleep; Young Adult; Neuroscience (miscellaneous); Cellular and Molecular Neuroscience; Sensory Systems; Cognitive NeuroscienceNetwork dynamicsBrain WavesSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Sensory Systemsbrain wave interactionsmedicine.anatomical_structureBrain wave interactionFemaletime delay stabilityNerve NetSensory SystemPsychologySleepNeuroscienceHumanNeuroscienceneural plasticityFrontiers in Neural Circuits
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The role of heterosynaptic facilitation in long-term potentiation (LTP) of human pain sensation

2008

Long-term potentiation (LTP) of nociceptive synaptic transmission induced by high-frequency electrical stimulation (HFS) predominantly modulates natural somatosensory perceptions mediated by Adelta- and Abeta-fibers in humans at the site of conditioning stimulation. The relative contribution of homo- and heterosynaptic mechanisms underlying those perceptual changes remained unclear. We therefore compared changes of the somatosensory profile between a conditioned skin site (homotopic zone) and an area adjacent to conditioning HFS (heterotopic zone). HFS of the ventral forearm in 24 healthy subjects (mean pain 41/100) led to an abrupt increase of pain to single electrical test stimuli (pain a…

AdultMalePain ThresholdHot TemperatureConditioning ClassicalLong-Term PotentiationPainStimulationSensory systemSomatosensory systemNerve Fibers MyelinatedVibrationYoung AdultPhysical StimulationPressuremedicineHumansHabituation PsychophysiologicAfferent PathwaysLong-term potentiationMiddle AgedElectric StimulationForearmAnesthesiology and Pain MedicineNociceptionNeurologyHyperalgesiaTouchSynapsesNeuropathic painHyperalgesiaSynaptic plasticityFemaleNeurology (clinical)medicine.symptomPsychologyNeurosciencePain
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Perceptual correlates of nociceptive long-term potentiation and long-term depression in humans.

2004

Long-term potentiation (LTP) and long-term depression (LTD) of synaptic strength are ubiquitous mechanisms of synaptic plasticity, but their functional relevance in humans remains obscure. Here we report that a long-term increase in perceived pain to electrical test stimuli was induced by high-frequency electrical stimulation (HFS) (5 × 1 sec at 100 Hz) of peptidergic cutaneous afferents (27% above baseline, undiminished for >3 hr). In contrast, a long-term decrease in perceived pain (27% below baseline, undiminished for 1 hr) was induced by low-frequency stimulation (LFS) (17 min at 1 Hz). Pain testing with punctate mechanical probes (200 μm diameter) in skin adjacent to the HFS–LFS con…

AdultMalePain ThresholdLong-Term PotentiationPainStimulationNeocortexBehavioral/Systems/CognitiveHippocampusSensitivity and SpecificitySynaptic TransmissionConditioning PsychologicalmedicineHumansLong-term depressionPain MeasurementSkinAnalysis of VarianceHypoalgesiaNeuronal Plasticityintegumentary systemGeneral NeuroscienceLong-Term Synaptic DepressionNociceptorsLong-term potentiationMiddle AgedElectric StimulationForearmAllodyniaNociceptionSpinal CordSynaptic plasticityHyperalgesiaFemalemedicine.symptomPsychologyNeuroscienceThe Journal of neuroscience : the official journal of the Society for Neuroscience
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Modality-specific sensory changes in humans after the induction of long-term potentiation (LTP) in cutaneous nociceptive pathways.

2007

The impact of long-term potentiation (LTP) in nociceptive pathways on somatosensory perception was examined by means of quantitative sensory testing (QST) in the ventral forearm of 12 healthy human subjects. Electrical high-frequency stimulation of the forearm skin (HFS; 5 x 1 s at 100 Hz and 10 x detection threshold) led to an abrupt increase of pain to single electrical test stimuli, which were applied through the same electrode (perceptual LTP +72%, p0.01). Perceptual LTP outlasted the 1-h observation period. The effects of HFS on somatosensory perception of natural test stimuli in the conditioned skin area were restricted to mechanical submodalities. Subjects exhibited a significant dec…

AdultMalePain ThresholdLong-Term PotentiationSensory systemStimulationForearmSkin Physiological PhenomenamedicineNoxious stimulusHumansPain MeasurementSkinAfferent Pathwaysintegumentary systemLong-term potentiationAdaptation Physiologicalbody regionsAnesthesiology and Pain MedicineNociceptionmedicine.anatomical_structureNeurologyHyperalgesiaSynaptic plasticityFemaleNeurology (clinical)medicine.symptomPsychologyNeurosciencePainReferences
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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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Voxel-based morphometry depicts central compensation after vestibular neuritis.

2010

Objective Patients who have had vestibular neuritis (VN) show a remarkable clinical improvement especially in gait and posture >6 months after disease onset. Methods Voxel-based morphometry was used to detect the VN-induced changes in gray and white matter by means of structural magnetic resonance imaging. Twenty-two patients were compared an average 2.5 years after onset of VN to a healthy sex-and age-matched control group. Results Our analysis revealed that all patients had signal intensity increases for gray matter in the medial vestibular nuclei and the right gracile nucleus and for white matter in the area of the pontine commissural vestibular fibers. A relative atrophy was observed in…

AdultMaleSensory systemVestibular NerveSomatosensory systemHippocampusSeverity of Illness IndexWhite matterVestibular nucleiAdaptation PsychologicalNeural PathwaysmedicineImage Processing Computer-AssistedHumansVestibular NeuronitisAgedVestibular systemNeuronal PlasticityProprioceptionGracile nucleusBrainAnatomyVoxel-based morphometryMiddle AgedMagnetic Resonance Imagingmedicine.anatomical_structureNeurologyFemaleNeurology (clinical)AtrophyPsychologyAnnals of neurology
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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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Prism adaptation by mental practice

2012

International audience; The prediction of our actions and their interaction with the external environment is critical for sensorimotor adaptation. For instance, during prism exposure, which deviates laterally our visual field, we progressively correct movement errors by combining sensory feedback with forward model sensory predictions. However, very often we project our actions to the external environment without physically interacting with it (e.g., mental actions). An intriguing question is whether adaptation will occur if we imagine, instead of executing, an arm movement while wearing prisms. Here, we investigated prism adaptation during mental actions. In the first experiment, participa…

AdultMaleVisual perceptionMovementCognitive NeuroscienceExperimental and Cognitive PsychologyAdaptation (eye)Sensory systemDevelopmental psychologyYoung AdultMotor imageryFeedback SensoryHumans[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Neuronal PlasticityProprioceptionProprioceptionAdaptation PhysiologicalVisual fieldNeuropsychology and Physiological PsychologyPrism adaptationPractice Psychological[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]ImaginationVisual Perception[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]FemalePrismVisual FieldsPsychologyPrism adaptationPsychomotor PerformanceCognitive psychologyCortex
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Determining the Corticospinal Responses to Single Bouts of Skill and Strength Training

2019

Mason, J, Frazer, AK, Jaberzadeh, S, Ahtiainen, JP, Avela, J, Rantalainen, T, Leung, M, and Kidgell, DJ. Determining the corticospinal responses to single bouts of skill and strength training. J Strength Cond Res 33(9): 2299-2307, 2019-Neuroplastic changes in the primary motor cortex accompany performance improvements following motor practice. Recent evidence suggests that the corticospinal responses to strength and skill training are similar, following both a single session and repeated bouts of training, promoting discussion that strength training is a form of motor learning. However, these findings are limited by the lack of a light-load strength training group. Therefore, the aim of the…

AdultMalecorticospinal silent periodmedicine.medical_specialtyintracortical inhibitionStrength trainingmedicine.medical_treatmentneuroplasticitystrength exerciseeducationPhysical Therapy Sports Therapy and RehabilitationSensory systemliikuntaYoung AdultPhysical medicine and rehabilitationNeuroplasticityharjoitteluHumansMedicineOrthopedics and Sports MedicineNeuronal Plasticitybusiness.industrytaidotMotor CortexkortikospinaalirataResistance TrainingGeneral MedicineEvoked Potentials MotorTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structureMotor SkillsIntracortical inhibitionFemalecorticospinal excitabilityvoimaharjoitteluskill trainingPrimary motor cortexbusinessMotor learningMotor cortexJournal of Strength and Conditioning Research
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Evidence for cortical visual substitution of chronic bilateral vestibular failure (an fMRI study).

2007

Bilateral vestibular failure (BVF) is a rare disorder of the labyrinth or the eighth cranial nerve which has various aetiologies. BVF patients suffer from unsteadiness of gait combined with blurred vision due to oscillopsia. Functional MRI (fMRI) in healthy subjects has shown that stimulation of the visual system induces an activation of the visual cortex and ocular motor areas bilaterally as well as simultaneous deactivations of multisensory vestibular cortex areas. Our question was whether the chronic absence of bilateral vestibular input (BVF) causes a plastic cortical reorganization of the above-described visual-vestibular interaction. We used fMRI to measure the differential effects of…

AdultMalegenetic structuresSensory systemAuditory cortexOscillopsiamedicineImage Processing Computer-AssistedHumansEye Movement MeasurementsNystagmus OptokineticAgedVisual CortexVestibular systemAged 80 and overNeuronal Plasticitymedicine.diagnostic_testMiddle AgedVestibular cortexMagnetic Resonance ImagingVisual cortexmedicine.anatomical_structureVestibular DiseasesChronic DiseaseFemaleNeurology (clinical)medicine.symptomFunctional magnetic resonance imagingPsychologyNeurosciencePhotic StimulationBrodmann areaBrain : a journal of neurology
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