Search results for "Stimulation"

showing 10 items of 2192 documents

Mapping effective connectivity between the frontal and contralateral primary motor cortex using dual-coil transcranial magnetic stimulation

2019

AbstractCytoarchitectonic, anatomical and electrophysiological studies have divided the frontal cortex into distinct functional subdivisions. Many of these subdivisions are anatomically connected with the contralateral primary motor cortex (M1); however, effective neurophysiological connectivity between these regions is not well defined in humans. Therefore, we aimed to use dual-coil transcranial magnetic stimulation (TMS) to map, with high spatial resolution, the effective connectivity between different frontal regions of the right hemisphere and contralateral M1 (cM1). TMS was applied over the left M1 alone (test pulse) or after a conditioning pulse was applied to different grid points co…

0303 health sciencesmedicine.medical_treatmentStimulationIndex fingerNeurophysiologyBiologyStatistical parametric mappingbehavioral disciplines and activitiesbody regionsTranscranial magnetic stimulationDorsolateral prefrontal cortex03 medical and health sciencesElectrophysiology0302 clinical medicinemedicine.anatomical_structuremedicinePrimary motor cortexNeuroscience030217 neurology & neurosurgery030304 developmental biology
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Mechanical Plantar Foot Stimulation in Parkinson′s Disease: A Scoping Review

2020

Background: Parkinson′s disease (PD) is the second most prevalent neurodegenerative disease in older individuals. Neurorehabilitation-based interventions such as those improving gait are crucial for a holistic approach and to limit falls. Several studies have recently shown that mechanical plantar foot stimulation is a beneficial intervention for improving gait impairment in PD patients. The objective of this scoping review is to evaluate the beneficial effects of this stimulation on gait parameters, and to analyse protocols of foot stimulation and other effects in non-motor symptoms. Relevant articles were searched in the Medline database using Pubmed and Scopus, using the primary search t…

030506 rehabilitationmedicine.medical_specialtyParkinson's diseasemedicine.medical_treatmentlcsh:MedicineStimulationReviewDiseasegaitrehabilitation03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationmedicinestride lengthNeurorehabilitationRehabilitationmedical devicebusiness.industrylcsh:R3D printingmedicine.diseaseGaitClinical trialPreferred walking speedfoot0305 other medical sciencebusinesshuman activitiesasymmetry030217 neurology & neurosurgeryDiseases
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Layer-Specific Refinement of Sensory Coding in Developing Mouse Barrel Cortex

2017

Rodent rhythmic whisking behavior matures during a critical period around 2 weeks after birth. The functional adaptations of neocortical circuitry during this developmental period remain poorly understood. Here, we characterized stimulus-evoked neuronal activity across all layers of mouse barrel cortex before, during, and after the onset of whisking behavior. Employing multi-electrode recordings and 2-photon calcium imaging in anesthetized mice, we tested responses to rostro-caudal whisker deflections, axial "tapping" stimuli, and their combination from postnatal day 10 (P10) to P28. Within this period, whisker-evoked activity of neurons displayed a general decrease in layer 2/3 (L2/3) and …

2805 Cognitive NeuroscienceMale0301 basic medicineNeurogenesisCognitive NeurosciencePeriod (gene)2804 Cellular and Molecular Neuroscience610 Medicine & healthSensory systemStimulationBiologySomatosensory system03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineCalcium imagingPhysical StimulationAnimalsPremovement neuronal activityNeuronsAfferent PathwaysNeuronal Plasticity10242 Brain Research InstituteWhisking in animalsSomatosensory CortexBarrel cortexMice Inbred C57BL030104 developmental biologyAnimals NewbornVibrissae570 Life sciences; biologyFemaleSensory DeprivationNeuroscience030217 neurology & neurosurgery
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An extensive pattern of atypical neural speech-sound discrimination in newborns at risk of dyslexia.

2019

Objective: Identifying early signs of developmental dyslexia, associated with deficient speech-sound processing, is paramount to establish early interventions. We aimed to find early speech-sound processing deficiencies in dyslexia, expecting diminished and atypically lateralized event-related potentials (ERP) and mismatch responses (MMR) in newborns at dyslexia risk. Methods: ERPs were recorded to a pseudoword and its variants (vowel-duration, vowel-identity, and syllable-frequency changes) from 88 newborns at high or no familial risk. The response significance was tested, and group, laterality, and frontality effects were assessed with repeated-measures ANOVA. Results: An early positive a…

6162 Cognitive scienceMaleSpeech soundAudiologyEvent-related potential (ERP)Dyslexia0302 clinical medicineEARLY LANGUAGE-ACQUISITIONnewbornMedicineFAMILIAL RISKAuditoryBRAIN RESPONSES05 social sciencesevent-related potential (ERP)ElectroencephalographySensory SystemsLanguage developmentNeurologyLateralityEvoked Potentials AuditorySpeech PerceptionFemaleAnalysis of variancespeech soundpsychological phenomena and processesmedicine.medical_specialty515 PsychologyMISMATCH NEGATIVITY MMNCORTICAL RESPONSESEVENT-RELATED POTENTIALSGENETIC RISKbehavioral disciplines and activities050105 experimental psychology03 medical and health sciencesSpeech discriminationEvent-related potentialPhoneticsPhysiology (medical)Vowelotorhinolaryngologic diseasesdysleksiaHumansSpeech0501 psychology and cognitive sciencesauditoryAUDITORY-DISCRIMINATIONMismatch response (MMR)vastasyntyneetAuditory Cortexbusiness.industrypuheääni3112 NeurosciencesDyslexiaInfant NewbornNewbornmismatch response (MMR)medicine.diseaseta3124PseudowordPHONEME MISMATCHAcoustic StimulationDEVELOPMENTAL DYSLEXIANeurology (clinical)business030217 neurology & neurosurgeryClinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology
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Structural changes induced by daily music listening in the recovering brain after middle cerebral artery stroke: a voxel-based morphometry study

2014

[Abstract.] Music is a highly complex and versatile stimulus for the brain that engages many temporal, frontal, parietal, cerebellar, and subcortical areas involved in auditory, cognitive, emotional, and motor processing. Regular musical activities have been shown to effectively enhance the structure and function of many brain areas, making music a potential tool also in neuro- logical rehabilitation. In our previous randomized controlled study, we found that listening to music on a daily basis can improve cognitive recovery and improve mood after an acute mid- dle cerebral artery stroke. Extending this study, a voxel-based morphometry (VBM) analysis utilizing cost function masking was perf…

6162 Cognitive sciencespeechAudiologyBehavioral NeuroscienceEARLY-ONSET STIMULATIONSPATIAL NORMALIZATIONArcuate fasciculusmagnetic resonance imagingCerebrovascular diseaseOriginal ResearchSUPPORTED THERAPYmagneettikuvausstrokehumanitiesPsychiatry and Mental healthNeuropsychology and Physiological Psychologymedicine.anatomical_structureNeurologyNeuroplasticitatta6131PsychologyMalalties cerebrovascularsmedicine.medical_specialtyCOST FUNCTION MASKING515 PsychologyneuroplasticitymusiikkiAuditory cortexbehavioral disciplines and activitiesLateralization of brain functionlcsh:RC321-571rehabilitationMagnetic resonance imagingWORKING-MEMORYImatges per ressonància magnèticamedicinevoxel-based morphometrymusicneuroplastisuuslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryBiological PsychiatryAnterior cingulate cortexWorking memoryENRICHED-ENVIRONMENTARCUATE FASCICULUSVoxel-based morphometryta3124Superior frontal gyrusenvironmental enrichmentkuntoutusNeuroplasticity3111 BiomedicineVerbal memorySENSORIMOTOR CORTEXNeuroscienceMusicNeuroscienceMúsicaAUDITORY-CORTEXNEUROTROPHIC FACTOR
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Effect of a dominant-negative form of ADAM10 in a mouse model of Alzheimer's disease.

2009

The alpha-secretase cleaves in the non-amyloidogenic pathway the amyloid-beta protein precursor (AbetaPP) within the region of the amyloid-beta peptides to prevent their formation and aggregation in the brain. Members of the ADAM family (a disintegrin and metalloprotease) are the main candidates for physiologically relevant alpha-secretases. We recently demonstrated that overexpression of ADAM10 in mice transgenic for human AbetaPP (ADAM10 x APP[V717I]) alleviated functional deficits related to Alzheimer's disease. To further demonstrate that this is due to the specific activity of alpha-secretase, we characterized mice overexpressing an inactive form of ADAM10 (ADAM10[E384A]; ADAM10-dn). T…

ADAM10Morris water navigation taskGlutamic AcidStimulationMice TransgenicADAM10 ProteinAmyloid beta-Protein PrecursorMiceIn vivoAlzheimer DiseaseDisintegrinReaction TimeAnimalsHumansIsoleucineProtein precursorMaze LearningSwimmingMetalloproteinaseAlaninebiologyBehavior AnimalChemistryGeneral NeuroscienceAge FactorsMembrane ProteinsValineGeneral MedicineCell biologyMice Inbred C57BLPsychiatry and Mental healthClinical PsychologyADAM ProteinsDisease Models Animalbiology.proteinSpecific activityGeriatrics and GerontologyAmyloid Precursor Protein SecretasesJournal of Alzheimer's disease : JAD
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'I love Rock 'n' Roll'--music genre preference modulates brain responses to music.

2013

The present study examined the effect of participants' music genre preference on the neural processes underlying evaluative and cognitive judgements of music using the event-related potential technique. To this aim, two participant groups differing in their preference for Latin American and Heavy Metal music performed a liking judgement and a genre classification task on a variety of excerpts of either music genre. A late positive potential (LPP) was elicited in all conditions between 600 and 900 ms after stimulus onset. During the genre classification task, an early negativity was elicited by the preferred compared to the non-preferred music at around 230-370 ms whereas the non-preferred g…

AESTHETICSMaleEvent-related potentialEvaluative processingmedia_common.quotation_subjectJudgementEVENT-RELATED POTENTIALSNEGATIVITY BIAS050105 experimental psychologyDevelopmental psychology03 medical and health sciences0302 clinical medicineEvent-related potentialPerceptionCATEGORIZATIONNegativity biasEMOTIONROUGHNESSReaction TimeHumans0501 psychology and cognitive sciencesValence (psychology)Music genre preferenceta515media_commonPERCEPTIONAnalysis of VarianceBrain MappingLate positive potential (LPP)General Neuroscience05 social sciencesBrainCognitionElectroencephalographyNeuropsychology and Physiological PsychologyEarly negativityCategorizationAcoustic StimulationMusic and emotionAuditory PerceptionEvoked Potentials AuditoryFemalePsychologyELECTROPHYSIOLOGICAL INDEXESSENSORY CONSONANCEERP030217 neurology & neurosurgeryMusicBiological psychology
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Central functional response to the novel peptide cannabinoid, hemopressin.

2013

Hemopressin is the first peptide ligand to be described for the CB₁ cannabinoid receptor. Hemopressin acts as an inverse agonist in vivo and can cross the blood-brain barrier to both inhibit appetite and induce antinociception. Despite being highly effective, synthetic CB₁ inverse agonists are limited therapeutically due to unwanted, over dampening of central reward pathways. However, hemopressin appears to have its effect on appetite by affecting satiety rather than reward, suggesting an alternative mode of action which might avoid adverse side effects. Here, to resolve the neuronal circuitry mediating hemopressin's actions, we have combined blood-oxygen-level-dependent, pharmacological-ch…

AM251MaleCannabinoid receptorHypothalamus MiddleNerve Tissue ProteinsNucleus accumbensSatiety ResponseRats Sprague-DawleyCellular and Molecular Neurosciencechemistry.chemical_compoundHemoglobinsMiceRandom AllocationPiperidinesReceptor Cannabinoid CB1Appetite DepressantsmedicineInverse agonistAnimalsPeriaqueductal GrayPharmacologyMice KnockoutNeuronsBehavior AnimalCannabinoidsHemopressinPeptide FragmentsRatsVentral tegmental areamedicine.anatomical_structurechemistryPyrazolesRaphe NucleiBrain stimulation rewardRaphe nucleiPsychologyNeuroscienceInjections Intraperitonealmedicine.drugNeuropharmacology
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Cannabinoid type 1 receptor modulates intestinal propulsion by an attenuation of intestinal motor responses within the myenteric part of the peristal…

2007

Cannabinoid-1 (CB1) receptor activation affects gastrointestinal propulsion in vivo. It was our aim to further characterize the involved myenteric mechanisms in vivo and in vitro. In CB1(-/-) mice and wild-type littermates we performed in vivo transit experiments by charcoal feeding and in vitro electrophysiological recordings in mouse small intestinal smooth muscle. Ascending neuronal contraction (ANC) following electrical field stimulation was studied in rat ileum in a partitioned organ bath separating the aboral stimulation site from the oral recording site. The knockout animals displayed an accelerated upper gastrointestinal transit compared to control animals. The CB1 receptor antagoni…

AM251Malemedicine.medical_specialtyCannabinoid receptorPhysiologyPolyunsaturated Alkamidesmedicine.medical_treatmentNeuromuscular JunctionMotilityStimulationArachidonic AcidsBiologyNeuromuscular junctionMembrane PotentialsMiceOrgan Culture TechniquesPiperidinesReceptor Cannabinoid CB1Internal medicineCannabinoid Receptor ModulatorsReflexmedicineAnimalsRNA MessengerIntestinal MucosaRats WistarReceptorMice KnockoutMyoelectric Complex MigratingEndocrine and Autonomic SystemsReverse Transcriptase Polymerase Chain ReactionGastroenterologyMuscle SmoothEndocannabinoid systemElectric StimulationRatsIntestinesEndocrinologymedicine.anatomical_structurePyrazolesPeristalsisCannabinoidmedicine.drugEndocannabinoidsNeurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society
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Transcranial direct current stimulation preconditioning modulates the effect of high-frequency repetitive transcranial magnetic stimulation in the hu…

2012

Experimental studies emphasize the importance of homeostatic plasticity as a mean of stabilizing the properties of neural circuits. In the present work we combined two techniques able to produce short-term (5-Hz repetitive transcranial magnetic stimulation, rTMS) and long-term (transcranial direct current stimulation, tDCS) effects on corticospinal excitability to evaluate whether and how the effects of 5-Hz rTMS can be tuned by tDCS preconditioning. Twelve healthy subjects participated in the study. Brief trains of 5-Hz rTMS were applied to the primary motor cortex at an intensity of 120% of the resting motor threshold, with recording of the electromyograph traces evoked by each stimulus o…

Abductor pollicis brevis muscleTranscranial direct-current stimulationGeneral Neurosciencemedicine.medical_treatmentStimulus (physiology)Transcranial magnetic stimulationmedicine.anatomical_structureHomeostatic plasticityMetaplasticitymedicinePrimary motor cortexPsychologyNeuroscienceMotor cortexEuropean Journal of Neuroscience
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