Search results for "Motor system"

showing 10 items of 60 documents

Dynamic large-scale network synchronization from perception to action

2018

Sensory-guided actions entail the processing of sensory information, generation of perceptual decisions, and the generation of appropriate actions. Neuronal activity underlying these processes is distributed into sensory, fronto-parietal, and motor brain areas, respectively. How the neuronal processing is coordinated across these brain areas to support functions from perception to action remains unknown. We investigated whether phase synchronization in large-scale networks coordinate these processes. We recorded human cortical activity with magnetoencephalography (MEG) during a task in which weak somatosensory stimuli remained unperceived or were perceived. We then assessed dynamic evolutio…

0301 basic medicineComputer sciencemedia_common.quotation_subjectSomatosensorySensory systemSynchronizationSomatosensory systemlcsh:RC321-57103 medical and health sciences0302 clinical medicineArtificial IntelligencePerceptionMotor systemSynchronization (computer science)medicinePremovement neuronal activitylcsh:Neurosciences. Biological psychiatry. Neuropsychiatrymedia_commonMEGmedicine.diagnostic_testApplied MathematicsGeneral NeuroscienceResearchCommunication3112 NeurosciencesMagnetoencephalographyPhase synchronizationComputer Science Applications030104 developmental biologyActionPerceptionNeuroscience030217 neurology & neurosurgery
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Attenuated beta rebound to proprioceptive afferent feedback in Parkinson's disease.

2018

AbstractMotor symptoms are defining traits in the diagnosis of Parkinson’s disease (PD). A crucial component in motor function and control of movements is the integration of efferent signals from the motor network to the peripheral motor system, and afferent proprioceptive sensory feedback. Previous studies have indicated abnormal movement-related cortical oscillatory activity in PD, but the role of the proprioceptive afference on abnormal oscillatory activity in PD has not been elucidated. In the present study, we examine the role of proprioception by studying the cortical processing of proprioceptive stimulation in PD patients, ON/OFF levodopa medication, as compared to that of healthy co…

0301 basic medicineMaleParkinson's diseaselcsh:MedicineStimulationAntiparkinson AgentsLevodopa0302 clinical medicineFeedback SensoryMedicine:Science::Medicine [DRNTU]lcsh:Science0303 health sciencesMultidisciplinarymedicine.diagnostic_testMotor CortexMagnetoencephalographyParkinson DiseaseMiddle Aged3. Good healthProprioceptive functioncortexmedicine.anatomical_structureFemaleMotor cortexmedicine.drugAdultLevodopaParkinsonin tautiSensory systemArticle03 medical and health sciencesmotor cortexMotor systemHumans030304 developmental biologyAgedProprioceptionbusiness.industrylcsh:RMagnetoencephalographyIndex fingermedicine.diseaseProprioceptionaivokuori030104 developmental biologylcsh:QbusinessBeta RhythmNeuroscience030217 neurology & neurosurgeryScientific reports
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Interhemispheric inhibition is dynamically regulated during action observation

2016

International audience; It is now well established that the motor system plays a pivotal role in action observation and that the neurophysiological processes underlying perception and action overlaps. However, while various experiments have shown a specific facilitation of the contralateral motor cortex during action observation, no information is available concerning the dynamics of interhemispheric interactions. The aim of the present study was, therefore, to assess interhemispheric inhibition during the observation of others' actions. We designed a transcranial magnetic stimulation (TMS) experiment in which we measured both corticospinal excitability and interhemispheric inhibition, this…

0301 basic medicineMalemedicine.medical_treatmentcorpus-callosumPyramidal TractsCorticospinal excitabilitFunctional Laterality0302 clinical medicinehuman motor cortextranscallosal inhibitionInterhemispheric inhibitiontranscranial magnetic stimulationAction observation Corticospinal excitabilit; Interhemispheric inhibition Movement kinematics Transcranial magnetic stimulation Adult Evoked Potentials Motor Female Functional Laterality Hand Strength Humans Male Motor Cortex Movement Muscle Skeletal Pyramidal Tracts Rest Transcranial Magnetic Stimulation Young Adult Neuropsychology and Physiological Psychology Experimental and Cognitive Psychology Cognitive NeuroscienceEvoked Potentialsvoluntary movementHand StrengthMotor CortexAction observationSkeletalCorticospinal excitabilitymedicine.anatomical_structureNeuropsychology and Physiological PsychologyMotormultiple-sclerosiscortical areasMuscleFemalePsychologyMotor cortexAdultCognitive NeuroscienceMovementRestipsilateral silent periodExperimental and Cognitive PsychologyInhibitory postsynaptic potential03 medical and health sciencesYoung AdultMotor systemmedicineHumansMuscle SkeletalPyramidal tractsNeurophysiologyEvoked Potentials MotorTranscranial magnetic stimulation030104 developmental biologyAction (philosophy)[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Silent periodMovement kinematicsNeuroscienceintracortical circuits030217 neurology & neurosurgery
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2017

Whether the central nervous system is capable to switch between contexts critically depends on experimental details. Motor control studies regularly adopt robotic devices to perturb the dynamics of a certain task. Other approaches investigate motor control by altering the gravitoinertial context itself as in parabolic flights and human centrifuges. In contrast to conventional robotic experiments, where only the hand is perturbed, these gravitoinertial or immersive settings coherently plunge participants into new environments. However radically different they are, perfect adaptation of motor responses are commonly reported. In object manipulation tasks, this translates into a good matching o…

0301 basic medicinePhysiologyComputer scienceInternal modelMotor controlSensory system03 medical and health sciences030104 developmental biology0302 clinical medicineHomogeneousPhysiology (medical)Time courseMotor systemPredictabilityGrip force030217 neurology & neurosurgerySimulationFrontiers in Physiology
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Women in LOVe: Lacto-Ovo-Vegetarian Diet Rich in Omega-3 Improves Vasomotor Symptoms in Postmenopausal Women. An Exploratory Randomized Controlled Tr…

2019

Objective:In the postmenopausal period, most women suffer vasomotor symptoms (VMS). It is well-known that VMS can worsen the quality of life. Diet seems to play a relevant role in the development of VMS, but the effect of diet on VMS is mainly limited to observational studies, and analyses of nutritional supplements. The aim of this study was thus to determine the efficacy of a lactoovo- vegetarian (LOVe) diet rich in omega-3 fatty acids vs. a lacto-ovo-vegetarian diet rich in EVO (extra-virgin olive oil) in reducing VMS frequency in postmenopausal women.Methods:A two-arms (lacto-ovo-vegetarian diet with EVO vs. lacto-ovo-vegetarian diet rich in omega-3) randomized-controlled trial with a f…

0301 basic medicinemedicine.medical_specialtyTime FactorsEndocrinology Diabetes and MetabolismSweatinglaw.invention03 medical and health sciences0302 clinical medicinePrimary outcomeRandomized controlled triallawInternal medicineFatty Acids Omega-6medicineImmunology and AllergyHumans030212 general & internal medicine030109 nutrition & dieteticsPostmenopausal womenVasomotorbusiness.industryDiet VegetarianAnthropometryMiddle Agedmedicine.diseaseMenopausePostmenopauseVasomotor SystemTreatment OutcomeItalyHot FlashesObservational studyFemaleDiet menopause omega 3 lacto-ovo-vegetarian RCT Kupperman indexbusinessNutritive ValueBiomarkersOlive oilVegetariansEndocrine, metabolicimmune disorders drug targets
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Gap perception in bumblebees

2018

ABSTRACT A number of insects fly over long distances below the natural canopy, where the physical environment is highly cluttered consisting of obstacles of varying shape, size and texture. While navigating within such environments, animals need to perceive and disambiguate environmental features that might obstruct their flight. The most elemental aspect of aerial navigation through such environments is gap identification and ‘passability’ evaluation. We used bumblebees to seek insights into the mechanisms used for gap identification when confronted with an obstacle in their flight path and behavioral compensations employed to assess gap properties. Initially, bumblebee foragers were train…

570PhysiologyAcousticsmedia_common.quotation_subjectOptic FlowAquatic Science03 medical and health sciences0302 clinical medicineSalience (neuroscience)PerceptionAnimalsMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biologymedia_common0303 health sciencesSensorimotor systemBeesLateral displacementLateral velocityFlight AnimalInsect ScienceObstacleAnimal Science and Zoology030217 neurology & neurosurgeryGeology
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Flexible switching of feedback control mechanisms allows for learning of different task dynamics.

2013

To produce skilled movements, the brain flexibly adapts to different task requirements and movement contexts. Two core abilities underlie this flexibility. First, depending on the task, the motor system must rapidly switch the way it produces motor commands and how it corrects movements online, i.e. it switches between different (feedback) control policies. Second, it must also adapt to environmental changes for different tasks separately. Here we show these two abilities are related. In a bimanual movement task, we show that participants can switch on a movement-by-movement basis between two feedback control policies, depending only on a static visual cue. When this cue indicates that the …

AdultAnatomy and PhysiologyCognitive NeuroscienceMovementFeedback controlNeurophysiologylcsh:MedicineMotor ActivitySocial and Behavioral SciencesNeurological SystemFeedbackMotor ReactionsYoung Adult03 medical and health sciencesLearning and Memory0302 clinical medicineHuman–computer interactionTask Performance and AnalysisMotor systemReaction TimePsychologyLearningHumansMotor activitylcsh:ScienceBiologySensory cue030304 developmental biologyMotor SystemsComputational NeurosciencePhysics0303 health sciencesMultidisciplinarybusiness.industrylcsh:RCognitive PsychologyMotor commandsRoboticsMental HealthArmMedicinelcsh:QArtificial intelligenceCuesbusiness030217 neurology & neurosurgeryHuman learningResearch ArticleNeurosciencePLoS ONE
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The representation of gravitational force during drawing movements of the arm

1998

The purpose of the present experiment was to study the way in which the central nervous system (CNS) represents gravitational force (GF) during vertical drawing movements of the arm. Movements in four different directions: (a) upward vertical (0 degrees), (b) upward oblique (45 degrees), (c) downward vertical (180 degrees) and (d) downward oblique (135 degrees), and at two different speeds, normal and fast, were executed by nine subjects. Data analysis focused upon arm movement kinematics in the frontal plane and gravitational torques (GTs) exerted around the shoulder joint. Regardless of movement direction, subjects showed straight-line paths for both speed conditions. In addition, movemen…

AdultMaleAnalysis of VarianceMovement (music)MovementGeneral NeuroscienceMotor controlBody movementPlanning TechniquesKinematicsGeodesyAccelerationTorqueVertical directionMotor systemArmHumansTorqueFemaleGravitationMathematicsExperimental Brain Research
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The Temporal Structure of Vertical Arm Movements

2011

Import JabRef | WosArea Life Sciences and Biomedicine - Other Topics; International audience; The present study investigates how the CNS deals with the omnipresent force of gravity during arm motor planning. Previous studies have reported direction-dependent kinematic differences in the vertical plane; notably, acceleration duration was greater during a downward than an upward arm movement. Although the analysis of acceleration and deceleration phases has permitted to explore the integration of gravity force, further investigation is necessary to conclude whether feedforward or feedback control processes are at the origin of this incorporation. We considered that a more detailed analysis of…

AdultMaleCORTEXAnatomy and PhysiologyTime FactorsMovementAccelerationlcsh:MedicineNeurophysiologyKinematicsRotationNeurological SystemMotor Neuron DiseasesBehavioral NeuroscienceAccelerationGRAVITYHumanslcsh:ScienceBiologyMotor SystemsDIRECTIONAL ISOMETRIC FORCESENSORIMOTORPhysicsMultidisciplinaryMovement (music)lcsh:RMOTOR CORTICAL REPRESENTATIONBiomechanicsVertical planePOINTING MOVEMENTSGeodesyBiomechanical PhenomenaMODELSIGNAL-DEPENDENT NOISEAmplitudeNeurologySAGITTAL PLANEDuration (music)[ SCCO.NEUR ] Cognitive science/NeuroscienceArmMedicinelcsh:QINTEGRATIONResearch ArticleNeurosciencePLoS ONE
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CATCHING FALLING OBJECTS: THE ROLE OF THE CEREBELLUM IN PROCESSING SENSORY-MOTOR ERRORS THAT MAY INFLUENCE UPDATING OF FEEDFORWARD COMMANDS. AN fMRI …

2011

Import JabRef | WosArea Neurosciences and Neurology; International audience; The human motor system continuously adapts to changes in the environment by comparing differences between the brain's predicted outcome of a certain behavior and the observed outcome. This discrepancy signal triggers a sensory-motor error and it is assumed that the cerebellum is a key structure in updating this error and associated feedforward commands. Using fMRI, the aim of the present study was to determine the main cerebellar structures that are involved in the processing of sensory-motor errors and in updating feedforward commands when simply catching a falling ball without displacement of the hand. Subjects o…

AdultMaleCORTEXREPRESENTATIONgenetic structuresTRANSFORMATIONSMovementSpeech recognitionREACHING MOVEMENTS[ SCCO.PSYC ] Cognitive science/PsychologyImage processingSensory systemBrain mappingMECHANISMS03 medical and health sciences0302 clinical medicineCerebellumMotor systemImage Processing Computer-AssistedHumansADAPTATION030304 developmental biologyARM MOVEMENTSNeuronsBrain Mapping0303 health sciencesCommunicationbusiness.industry[SCCO.NEUR]Cognitive science/NeuroscienceGeneral NeuroscienceFeed forwardGRIPCognitionHUMAN BRAINMagnetic Resonance ImagingFunctional imagingbody regionsnervous system[SCCO.PSYC]Cognitive science/Psychology[ SCCO.NEUR ] Cognitive science/NeuroscienceBall (bearing)INTERNAL-MODELSbusinessPsychologyhuman activitiesPsychomotor Performance030217 neurology & neurosurgerypsychological phenomena and processes
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