Search results for " Cerebral Cortex"

showing 10 items of 15 documents

Resonance of cortico-cortical connections of the motor system with the observation of goal directed grasping movements

2010

Goal directed movements require the activation of parietal, premotor and primary motor areas. In monkeys, neurons of these areas become active also during the observation of movements performed by others, especially for coding the goal of the action (mirror system). Using bifocal transcranial magnetic stimulation (TMS) in healthy subjects, we tested whether the observation of goal directed reach to grasp actions may lead to specific changes in the short-latency connections linking key areas of the mirror system, such as the anterior intraparietal cortex (AIP) and the ventral premotor cortex (PMv), with the primary motor cortex (M1). We found that AIP-M1 and PMv-M1 cortico-cortical interacti…

MalePremotor cortexmedicine.medical_treatmentObservationParietal cortexGoalBehavioral NeuroscienceCortex (anatomy)Neural PathwaysEvoked PotentialsMirror neuronCerebral CortexConnectivityBrain MappingHand StrengthMIRROR NEURONSBody movementSkeletalTranscranial Magnetic Stimulationmedicine.anatomical_structureMotorMuscleFemaleSettore MED/26 - NeurologiaPrimary motor cortexPsychologyGoalsHumanAdultConnectivity; Observation; Parietal cortex; Premotor cortex; Transcranial magnetic stimulation;Cognitive NeuroscienceMovementGoals; Movement; Muscle Skeletal; Male; Young Adult; Electromyography; Female; Evoked Potentials Motor; Cerebral Cortex; Humans; Photic Stimulation; Psychomotor Performance; Observation; Hand Strength; Neural Pathways; Transcranial Magnetic Stimulation; Brain Mapping; AdultPosterior parietal cortexExperimental and Cognitive PsychologyConnectivity; Observation; Parietal cortex; Premotor cortex; Transcranial magnetic stimulationNOPremotor cortexNeural PathwayYoung AdultMotor systemmedicineHumansMuscle SkeletalSettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaElectromyographyEvoked Potentials MotorTranscranial magnetic stimulationGoals; Young Adult; Humans; Electromyography; Observation; Movement; Muscle Skeletal; Cerebral Cortex; Photic Stimulation; Brain Mapping; Evoked Potentials Motor; Adult; Neural Pathways; Hand Strength; Psychomotor Performance; Transcranial Magnetic Stimulation; Female; MaleTMSNeurosciencePhotic StimulationPsychomotor Performance
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Auditory temporal processing deficits in patients with insular stroke

2006

OBJECTIVE: To assess central auditory function in a series of patients with stroke of the insula and adjacent areas. METHODS: The authors recruited eight patients with stroke affecting the insula and adjacent areas and eight neurologically normal controls (matched to the patients for age, sex, handedness, and hearing thresholds). The lesion spared the adjacent auditory areas in three patients and included other auditory structures in five cases. The authors conducted pure-tone audiometry and tympanometry and a central auditory test battery, which included the dichotic digits, and three temporal tests, the duration pattern, frequency pattern, and gaps in noise tests. They collected informati…

AdultMalemedicine.medical_specialtyAuditory areaAudiologyLesionAudiometrymedicineHumansNeuropsychological assessmentHearing DisordersStrokeAgedCerebral CortexSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamedicine.diagnostic_testDichotic listeningMiddle AgedTympanometrymedicine.diseaseSurgeryStrokeAdult Aged Audiometry Cerebral Cortex/pathology* Female Hearing Disorders/diagnosis Hearing Disorders/etiology Humans Male Middle Aged Stroke/complications Stroke/diagnosisFemaleNeurology (clinical)medicine.symptomAudiometryPsychologyInsulaNeurology
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Early patterns of electrical activity in the developing cerebral cortex of humans and rodents.

2006

International audience; During prenatal and early postnatal development, the cerebral cortex exhibits synchronized oscillatory network activity that is believed to be essential for the generation of neuronal cortical circuits. The nature and functional role of these early activity patterns are of central interest in neuroscience. Much of the research is performed in rodents and in vitro, but how closely do these model systems relate to the human fetal brain? In this review, we compare observations in humans with in vivo and in vitro rodent data, focusing on particular oscillatory activity patterns that share many common features: delta brushes, spindle bursts and spindle-like oscillations. …

PeriodicityMESH: PeriodicityRodentPeriod (gene)Central nervous systemModels NeurologicalMESH: NeuronsNeurological disorder[SDV.BC]Life Sciences [q-bio]/Cellular Biology03 medical and health sciences0302 clinical medicineMESH: Models Neurologicalbiology.animalmedicineAnimalsHumansMESH: Animals[SDV.BC] Life Sciences [q-bio]/Cellular Biology030304 developmental biologyCerebral CortexNeurons0303 health sciencesMESH: HumansbiologyGeneral Neurosciencemedicine.diseaseMESH: Cerebral CortexDevelopmental disorderElectrophysiologymedicine.anatomical_structureMESH: Nerve NetCerebral cortexHuman fetalNerve NetPsychologyNeuroscience030217 neurology & neurosurgery
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The cholinergic system in Down's syndrome

2006

The cholinergic system is one of the most important modulatory neurotransmitter systems in the brain. Alterations of the transmission communicators are accompanied by reduction of the cortical activity, which is associated with a learning and memory deficit. Down's syndrome is a pathological condition characterized by a high number of abnormalities that involve the brain.The cholinergic system is involved in alterations of the neurological system such as severe learning difficulties.To explain these alterations, important results are obtained from studies about murine trisomy 16 (animal model of Down's syndrome).The results obtained provide useful elements in the improvement of knowledge ab…

030506 rehabilitationDown syndromeCentral nervous systemTrisomyDiseaseSynaptic TransmissionHealth Professions (miscellaneous)Mice03 medical and health sciencesMemorymedicineAnimalsHumansLearningAttentionReceptors Cholinergic0501 psychology and cognitive sciencesDown's syndromePathologicalCerebral CortexHealth PolicyMedicine (all)05 social sciencesCognitive disorderCholinergic systemBrainTrisomy 16medicine.diseaseChromosomes MammalianDevelopmental disorderDisease Models AnimalPsychiatry and Mental healthmedicine.anatomical_structureCholinergic FibersAnimals Attention; physiology Brain; physiopathology Cerebral Cortex; physiopathology Cholinergic Fibers; physiology Chromosomes; Mammalian Disease Models; Animal Down Syndrome; genetics/physiopathology Humans Learning; physiology Memory; physiology Mice Receptors; Cholinergic; physiology Synaptic Transmission; physiology TrisomyIntellectual disabilitieDown Syndrome0305 other medical sciencePsychologyTrisomyNeuroscience050104 developmental & child psychologyJournal of Intellectual Disabilities
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Efficacy and tolerability of a fixed dose combination of cortex phospholipid liposomes and cyanocobalamin for intramuscular use in peripheral neuropa…

2019

Peripheral neuropathies are frequently encourtered in clinical practice and are assiociated with a major impairment in quality of life . Howewvwr, their management reamans poor, and current therapies are often burdened with major side effects and can present poor efficacy on pain and functionality. Therefore, it has been suggested that the combination of two or more different drugs may improve analgesis efficacy and reduce side effects. Tricortin 1000 is formulated with 12 mg of Brain cortex phospholipid liposomes + 1000 microgrammi of Cyanocobalamin injectable (PL+ CNCb1) for intramuscolar use and is indicated in the tratment of poly-algo-neuropathic syndromes. This combination exerts a ma…

Viitamin B 12Fixed-dose combinationAnalgesicPharmacologyInjections IntramuscularInjections03 medical and health sciences0302 clinical medicinePharmacotherapyPeripheral nervous system diseasemedicineHumansCyanocobalaminphospholipidPhospholipidsCerebral CortexIntramuscularAnalgesicsClinical Trials as TopicNeck painLiposomebiologybusiness.industrySettore MED/34 - Medicina Fisica E RiabilitativaBack painPeripheral Nervous System DiseasesGeneral MedicineBack pain; Liposomes; Neuralgia; Peripheral nervous system diseases; Phospholipids; Vitamin B 12; Analgesics; Cerebral Cortex; Clinical Trials as Topic; Drug Combinations; Humans; Injections Intramuscular; Liposomes; Neuroprotective Agents; Peripheral Nervous System Diseases; Phospholipids; Vitamin B 12Drug CombinationsVitamin B 12Neuroprotective AgentsTolerability030220 oncology & carcinogenesisLiposomesbiology.proteinNeuralgia030211 gastroenterology & hepatologyIiposomemedicine.symptombusinessNeurotrophinMinerva Medica
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Transcranial magnetic stimulation (TMS) application in sport medicine: A brief review

2017

Since 1985, transcranial magnetic stimulation (TMS) has been used for non-invasive exploration of motor control in humans and for a wide range of applications in all ages of life. This brief review examined briefly the potential interest in sport medicine.

Transcrania magnetic stimulationAtlethes; Motor cerebral cortex; TMS; Transcrania magnetic stimulationAtlethes; Motor cerebral cortex; TMS; Transcrania magnetic stimulation; Medicine (all)TMSMedicine (all)AtlethesAtletheMotor cerebral cortex
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Evidence for reading improvement following tDCS treatment in children and adolescents with Dyslexia.

2016

Purpose There is evidence that non-invasive brain stimulation transitorily modulates reading by facilitating the neural pathways underactive in individuals with dyslexia. The study aimed at investigating whether multiple sessions of transcranial direct current stimulation (tDCS) would enhance reading abilities of children and adolescents with dyslexia and whether the effect is long-lasting. Methods Eighteen children and adolescents with dyslexia received three 20-minute sessions a week for 6 weeks (18 sessions) of left anodal/right cathodal tDCS set at 1 mA over parieto-temporal regions combined with a cognitive training. The participants were randomly assigned to the active or the sham tre…

Malemedicine.medical_treatmentAudiologyTranscranial Direct Current StimulationFunctional LateralityDevelopmental psychologycognitive trainingDyslexia0302 clinical medicineReading (process)Childmedia_commonneurology (clinical)Cerebral CortexTranscranial direct-current stimulation05 social sciencesCognitive trainingparieto-temporal regionsCognitive behavioral therapyTreatment OutcomeTolerabilityFemaleBrain stimulation cognitive training parieto-temporal regions Adolescent Cerebral Cortex Cognitive Behavioral Therapy Double-Blind Method Dyslexia Functional Laterality Transcranial Direct Current Stimulation Treatment Outcome ReadingPsychologymedicine.medical_specialtyAdolescentmedia_common.quotation_subjectbrain stimulation050105 experimental psychologyNObrain stimulation; cognitive training; parieto-temporal regions; adolescent; analysis of variance; cerebral cortex; child; cognitive therapy; double-blind method; dyslexia; female; functional laterality; humans; male; transcranial direct current stimulation; treatment outcome; reading; medicine (all); neurology; developmental neuroscience; neurology (clinical)03 medical and health sciencesSettore MED/39 - NEUROPSICHIATRIA INFANTILEDouble-Blind Methodmental disordersmedicineHumans0501 psychology and cognitive sciencesmedicine (all)parieto-temporal regionAnalysis of VarianceCognitive Behavioral TherapyneurologyDyslexiamedicine.diseaseWord lists by frequencydevelopmental neuroscienceReadingBrain stimulationcognitive therapy030217 neurology & neurosurgeryRestorative neurology and neuroscience
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Biased postural vertical in humans with hemispheric cerebral lesions.

1998

International audience; This study was aimed at demonstrating the existence of a biased postural vertical in humans with a recent cerebral lesion. The postural vertical of patients and controls was analysed comparatively using a self-regulated balancing task, performed in sitting posture. Patients displayed a quite constant (19/22) contralesional tilt of the postural vertical (mean -2.6 degrees), varying with the severity of their spatial neglect and hemianaethesia. Eight of them showed a pathological contralesional bias (mean -5.5 degrees) as compared to normals. This result indicates an asymmetric process of somatic graviceptive information due to some cerebral lesions. When patients were…

Malemedicine.medical_specialtymedia_common.quotation_subjectMESH : MalePostureTranscutaneous electrical nerve stimulationMESH : Cerebrovascular Disorderslaw.inventionNeglectLesion[ SDV.NEU.SC ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesPhysical medicine and rehabilitationCerebral lesionMESH : Postural BalancelawOrientation (mental)MESH : Gravity SensingmedicineMESH : Transcutaneous Electric Nerve StimulationHumansMESH : FemaleMESH : Middle AgedGravity SensingPostural Balancemedia_commonCerebral CortexGeneral NeuroscienceMESH : HumansMESH : PostureMiddle AgedCerebrovascular DisordersBody schemaCerebral hemisphereTranscutaneous Electric Nerve StimulationVisual PerceptionMESH : Cerebral CortexFemalemedicine.symptomPsychologyTilt (camera)NeuroscienceMESH : Visual Perception[SDV.NEU.SC] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive Sciences
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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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Quantitative mass spectrometry for human melanocortin peptides in vitro and in vivo suggests prominent roles for β-MSH and desacetyl α-MSH in energy …

2018

Objective The lack of pro-opiomelanocortin (POMC)-derived melanocortin peptides results in hypoadrenalism and severe obesity in both humans and rodents that is treatable with synthetic melanocortins. However, there are significant differences in POMC processing between humans and rodents, and little is known about the relative physiological importance of POMC products in the human brain. The aim of this study was to determine which POMC-derived peptides are present in the human brain, to establish their relative concentrations, and to test if their production is dynamically regulated. Methods We analysed both fresh post-mortem human hypothalamic tissue and hypothalamic neurons derived from …

MalePluripotent Stem CellsLeptinlcsh:Internal medicineendocrine systemhPSC human pluripotent stem cellsPro-Opiomelanocortin[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyHypothalamusMass SpectrometryTandem Mass Spectrometry[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]beta-MSHHomeostasisHumansHuman pluripotent stem cellObesitylcsh:RC31-1245MSHNeuronsintegumentary systemReceptors MelanocortinLC-MS/MS liquid chromatography tandem mass spectrometryNeuropeptidesdigestive oral and skin physiologyPOMCPVH the paraventricular nucleus of the hypothalamusCTX cerebral cortexMelanocortinsNeuropeptidealpha-MSHOriginal ArticleFemalehormones hormone substitutes and hormone antagonistsChromatography Liquid
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