Search results for "Motor Systems"

showing 10 items of 20 documents

Self-Relevance Appraisal Influences Facial Reactions to Emotional Body Expressions

2013

International audience; People display facial reactions when exposed to others' emotional expressions, but exactly what mechanism mediates these facial reactions remains a debated issue. In this study, we manipulated two critical perceptual features that contribute to determining the significance of others' emotional expressions: the direction of attention (toward or away from the observer) and the intensity of the emotional display. Electromyographic activity over the corrugator muscle was recorded while participants observed videos of neutral to angry body expressions. Self-directed bodies induced greater corrugator activity than other-directed bodies; additionally corrugator activity was…

MaleAnatomy and Physiology[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEmotionslcsh:MedicineFacial MusclesAngerAngerSocial and Behavioral SciencesFacial recognition system[SCCO]Cognitive science0302 clinical medicinePsychologyEmotional expressionlcsh:Sciencemedia_commonMultidisciplinary05 social sciencesExperimental PsychologyFacial ExpressionFacial musclesmedicine.anatomical_structureMental HealthMedicineFemale[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Cognitive psychologyResearch ArticleAdultmedia_common.quotation_subjectCognitive NeuroscienceNeurophysiologyBiologyEmotional processing050105 experimental psychologyNeurological System03 medical and health sciencesYoung AdultMotor ReactionsPerceptionmedicineHumans0501 psychology and cognitive sciences[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Facial feedback hypothesisBiologyMotor SystemsFacial expressionBehaviorElectromyographylcsh:RNeurosciencesRecognition Psychology[SCCO] Cognitive scienceSelf ConceptNeurons and Cognitionlcsh:Q[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryNeuroscience
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The Relation between Geometry and Time in Mental Actions

2012

Mental imagery is a cognitive tool that helps humans take decisions by simulating past and future events. The hypothesis has been advanced that there is a functional equivalence between actual and mental movements. Yet, we do not know whether there are any limitations to its validity even in terms of some fundamental features of actual movements, such as the relationship between space and time. Although it is impossible to directly measure the spatiotemporal features of mental actions, an indirect investigation can be conducted by taking advantage of the constraints existing in planar drawing movements and described by the two-thirds power law (2/3PL). This kinematic law describes one of th…

MaleImagery PsychotherapyTime FactorsAnatomy and PhysiologyEye MovementsComputer scienceMovementCognitive NeuroscienceScienceNeurophysiologyGeometryKinematicsNeurological SystemYoung AdultMotor ReactionsBehavioral Neurosciencemotor imagerymotor controlHumansAttentionRepresentation (mathematics)BiologyMotor SystemsMultidisciplinarytwo third power lawMovement (music)MusclesQREye movementBiomechanical Phenomena[ SCCO.NEUR ] Cognitive science/NeuroscienceArmTrajectorymental chronometryMedicineFemaleConstant (mathematics)M-PSI/01 - PSICOLOGIA GENERALEPhotic StimulationPsychomotor PerformanceResearch ArticleNeuroscienceMental image
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The Inactivation Principle: Mathematical Solutions Minimizing the Absolute Work and Biological Implications for the Planning of Arm Movements

2008

An important question in the literature focusing on motor control is to determine which laws drive biological limb movements. This question has prompted numerous investigations analyzing arm movements in both humans and monkeys. Many theories assume that among all possible movements the one actually performed satisfies an optimality criterion. In the framework of optimal control theory, a first approach is to choose a cost function and test whether the proposed model fits with experimental data. A second approach (generally considered as the more difficult) is to infer the cost function from behavioral data. The cost proposed here includes a term called the absolute work of forces, reflecti…

MaleMESH: Range of Motion ArticularMESH : Physical ExertionMESH : MovementOptimality criterion[SDV.MHEP.PHY] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]Computer scienceMESH: Muscle ContractionMESH: GravitationMESH : Models BiologicalMESH: MovementKinematicsMESH: Postural BalanceMESH : Gravitation0302 clinical medicineNeuroscience/Motor SystemsMESH : FeedbackMESH : BiomechanicsRange of Motion ArticularMESH: ArmMESH : Jointslcsh:QH301-705.5Postural BalanceMESH: Biomechanics0303 health sciencesNeuroscience/Behavioral NeuroscienceEcology[ SDV.MHEP.PHY ] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]MESH: FeedbackMESH : AdultBiomechanical PhenomenaMathematical theoryMESH: JointsComputational Theory and MathematicsModeling and SimulationArmResearch ArticleGravitationMuscle ContractionComputer Science/Systems and Control TheoryAdultMESH : MaleMovementPhysical ExertionComputational Biology/Computational NeuroscienceMESH: Psychomotor PerformanceModels BiologicalMESH : ArmFeedbackMESH: Physical Exertion03 medical and health sciencesCellular and Molecular NeuroscienceMESH : Postural BalanceControl theory[SDV.MHEP.PHY]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]GeneticsHumansNeuroscience/Theoretical NeuroscienceMolecular BiologyEcology Evolution Behavior and SystematicsSimulation030304 developmental biologyMESH: HumansMESH : HumansWork (physics)MESH: Models BiologicalMotor controlMESH: AdultMESH : Psychomotor PerformanceFunction (mathematics)Optimal controlMESH: MaleTerm (time)MESH : Range of Motion Articularlcsh:Biology (General)MESH : Muscle ContractionJoints030217 neurology & neurosurgeryMathematicsPsychomotor PerformancePLoS Computational Biology
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Quantitative assessment of stereotyped and challenged locomotion after lesion of the striatum: a 3D kinematic study in rats.

2009

Background Although the striatum is in position to regulate motor function, the role of the structure in locomotor behaviour is poorly understood. Therefore, a detailed analysis of locomotion- and obstacle avoidance-related parameters was performed after unilateral lesion of the striatum in rats. Methods and Results Using the three dimensional motion capture technology, kinematics of walking and clearing obstacles, head and body orientation were analyzed before and up to 60 days after the lesion. Recordings were performed in treadmill running rats with or without obstacles attached to the treadmill belt. The lesion, which was induced by the direct injection of the mitochondrial toxin malona…

MaleMovementlcsh:MedicineMotor programKinematicsHindlimbStriatumWalkingMotor ActivityLesionNeuroscience/Motor SystemsPhysiology/Motor SystemsmedicineAnimalsTreadmillRats Wistarlcsh:ScienceNeurological Disorders/Movement DisordersMultidisciplinaryBehavior Animalbusiness.industrylcsh:RBiomechanicsExtremitiesAnatomyCorpus StriatumBiomechanical PhenomenaRatsmedicine.anatomical_structurePathology/Neuropathologylcsh:Qmedicine.symptomForelimbbusinessLocomotionPsychomotor PerformanceResearch ArticlePLoS ONE
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The role of left supplementary motor area in grip force scaling

2013

Skilled tool use and object manipulation critically relies on the ability to scale anticipatorily the grip force (GF) in relation to object dynamics. This predictive behaviour entails that the nervous system is able to store, and then select, the appropriate internal representation of common object dynamics, allowing GF to be applied in parallel with the arm motor commands. Although psychophysical studies have provided strong evidence supporting the existence of internal representations of object dynamics, known as "internal models", their neural correlates are still debated. Because functional neuroimaging studies have repeatedly designated the supplementary motor area (SMA) as a possible …

MaleTRANSCRANIAL MAGNETIC STIMULATIONAnatomy and PhysiologyBrain activity and meditationmedicine.medical_treatmentSocial SciencesBRAIN ACTIVITYSocial and Behavioral SciencesFunctional LateralityACTIVATIONBehavioral NeuroscienceTask Performance and AnalysisHuman PerformancePsychologyMotor skillPhysicsMultidisciplinaryHand StrengthSupplementary motor areaQMotor CortexRPRECISION GRIPSMA*Transcranial Magnetic Stimulationmedicine.anatomical_structureMotor SkillsPREMOTOR AREASFMRIMedicineSensory PerceptionOBJECTSResearch ArticleMotor cortexAdultCognitive NeuroscienceScienceNeurophysiologyNeurological SystemLateralization of brain functionNeuropsychologyHand strengthPsychophysicsmedicineLearningHumansFRONTAL-LOBEBiologyMotor SystemsBehaviorMOVEMENTSCognitive PsychologyEvoked Potentials MotorHandTranscranial magnetic stimulationINTERNAL-MODELSNeuroscienceNeuroscience
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''Active Collisions in Altered Gravity Reveal Eye-Hand Coordination Strategies''

2012

White, Olivier | Lefevre, Philippe | Wing, Alan M. | Bracewell, R. Martyn | Thonnard, Jean-Louis; International audience; ''Most object manipulation tasks involve a series of actions demarcated by mechanical contact events, and gaze is usually directed to the locations of these events as the task unfolds. Typically, gaze foveates the target 200 ms in advance of the contact. This strategy improves manual accuracy through visual feedback and the use of gaze-related signals to guide the hand/ object. Many studies have investigated eye-hand coordination in experimental and natural tasks; most of them highlighted a strong link between eye movements and hand or object kinematics. In this experime…

MaleTime Factorsgenetic structuresComputer sciencelcsh:MedicineAstronomical SciencesKinematicsSocial and Behavioral SciencesInertiaDIRECTION''Behavioral NeuroscienceLearning and MemoryHuman PerformancePsychologyComputer visionOBJECT MANIPULATIONlcsh:ScienceDIRECTIONmedia_commonGravity AlteredMultidisciplinaryEye–hand coordinationHand StrengthWeightlessnessMiddle AgedSpace ExplorationSensory SystemsBiomechanical PhenomenaTARGET[ SCCO.NEUR ] Cognitive science/NeuroscienceGRIP FORCE ADJUSTMENTSFemaleResearch ArticleAdult''GRIP FORCE ADJUSTMENTSMovementCognitive Neurosciencemedia_common.quotation_subjectAccelerationFixation OcularYoung AdultVISUAL INFORMATIONLOAD PERTURBATIONSHand strengthSaccadesHumansWorking MemoryBiologyHEAD MOVEMENTSARM MOVEMENTSMotor SystemsBehaviorHypergravityWeightlessnessbusiness.industryLatency Period Psychologicallcsh:REye movementSpaceflightHandCollisionGazePOINTING MOVEMENTFixation (visual)TASKlcsh:QArtificial intelligencebusinessNeuroscience
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Integration of Gravitational Torques in Cerebellar Pathways Allows for the Dynamic Inverse Computation of Vertical Pointing Movements of a Robot Arm

2008

BackgroundSeveral authors suggested that gravitational forces are centrally represented in the brain for planning, control and sensorimotor predictions of movements. Furthermore, some studies proposed that the cerebellum computes the inverse dynamics (internal inverse model) whereas others suggested that it computes sensorimotor predictions (internal forward model).Methodology/principal findingsThis study proposes a model of cerebellar pathways deduced from both biological and physical constraints. The model learns the dynamic inverse computation of the effect of gravitational torques from its sensorimotor predictions without calculating an explicit inverse computation. By using supervised …

ScienceComputationComputational Biology/Computational NeuroscienceModels BiologicalInverse dynamicsComputer Science::Robotics03 medical and health sciences0302 clinical medicineNeuroscience/Motor SystemsGravitational fieldControl theoryCerebellum030304 developmental biologyPhysics0303 health sciencesNeuroscience/Behavioral NeuroscienceMultidisciplinaryQuantitative Biology::Neurons and CognitionArtificial neural networkbusiness.industryQRRoboticsRoboticsCerebellar cortexMedicineRobotArtificial intelligencebusinessRobotic arm030217 neurology & neurosurgeryGravitationResearch ArticlePLoS ONE
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Fos mapping of brain activation induced by the mammary pheromone in the newborn rabbit

2010

The female European rabbit, Oryctolagus cuniculus, displays a surprising maternal behaviour. Indeed, she comes into the nest only once per day and for a very brief period (3-4 minutes), almost exclusively to nurse. A pheromonal signal identified as the 2-methylbut-2-enal and named the mammary pheromone (MP) is emitted in milk by all lactating rabbit females. This chemosensory cue induces typical head-searching and oral-seizing movements in newborn rabbits usually involved in the localisation of the nipples. The MP therefore appears as a biological signal important for sucking, survival and growth in pups. To date, only few data are available regarding the neuronal substrate which sustains t…

[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition[SCCO.NEUR]Cognitive science/Neuroscience[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutrition[SCCO.NEUR] Cognitive science/Neurosciencesensory and motor systems[ SCCO.NEUR ] Cognitive science/Neurosciencechemical senses[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionolfaction
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Might as well jump: Sound affects muscle activation in skateboarding

2014

The aim of the study is to reveal the role of sound in action anticipation and performance, and to test whether the level of precision in action planning and execution is related to the level of sensorimotor skills and experience that listeners possess about a specific action. Individuals ranging from 18 to 75 years of age - some of them without any skills in skateboarding and others experts in this sport - were compared in their ability to anticipate and simulate a skateboarding jump by listening to the sound it produces. Only skaters were able to modulate the forces underfoot and to apply muscle synergies that closely resembled the ones that a skater would use if actually jumping on a ska…

lcsh:Medicinemedicine.disease_causeSocial and Behavioral Sciencesexperience0302 clinical medicineJumpingperception and action mechanismsmuscle activation; sound feedbackHuman PerformancePsychologylcsh:Sciencemedia_commonMultidisciplinarySettore INF/01 - InformaticaMedicine (all)05 social sciencesMuscle activationMiddle AgedAnticipationSensory Systemsaction anticipation; performance; sensorimotor skills; experience; sound; muscle activation; skateboarding; action planning; movement patternsMental HealthSoundsound feedbackAuditory SystemAction planningJumpMedicineSensory Perceptionperception and action mechanisms; Anticipatory postural adjustment; Auditory InterfacesperformanceCognitive psychologyResearch ArticleHumanMuscle ContractionAdultAdolescentmedia_common.quotation_subjectCognitive NeuroscienceskateboardingBiology050105 experimental psychology03 medical and health sciencesMotor ReactionsYoung Adultsensorimotor skillsPerceptionmedicineReaction Timeaction planningHumans0501 psychology and cognitive sciencesActive listeningSports and Exercise Medicineaction anticipationmuscle activationMuscle SkeletalBiologyComputerized SimulationsAgedAnticipatory postural adjustmentMotor SystemsBehaviorAnalysis of VarianceBiochemistry Genetics and Molecular Biology (all)Electromyographylcsh:RAcoustic Stimulation; Adolescent; Adult; Aged; Analysis of Variance; Electromyography; Humans; Middle Aged; Muscle Contraction; Muscle Skeletal; Reaction Time; Skating; Young Adult; Psychomotor Performance; Sound; Agricultural and Biological Sciences (all); Biochemistry Genetics and Molecular Biology (all); Medicine (all)movement patternsAuditory InterfacesAction (philosophy)Acoustic StimulationAgricultural and Biological Sciences (all)SkatingComputer Sciencelcsh:Q030217 neurology & neurosurgeryPsychomotor PerformanceNeuroscience
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Interhemispheric inhibition during mental actions of different complexity.

2013

International audience; Several investigations suggest that actual and mental actions trigger similar neural substrates. Yet, neurophysiological evidences on the nature of interhemispheric interactions during mental movements are still meagre. Here, we asked whether the content of mental images, investigated by task complexity, is finely represented in the inhibitory interactions between the two primary motor cortices (M1s). Subjects' left M1 was stimulated by means of transcranial magnetic stimulation (TMS) while they were performing actual or mental movements of increasing complexity with their right hand and exerting a maximum isometric force with their left thumb and index. Thus, we sim…

medicine.medical_treatmentCognitive NeuroscienceScienceNeurophysiologyElectromyographyBiologySocial and Behavioral SciencesFunctional LateralityBehavioral NeuroscienceMagneticsMental ProcessesCognitionMotor systemmedicineHumansPsychologyBiologyMotor SystemsMultidisciplinarymedicine.diagnostic_testElectromyographyPhysicsQMotor CortexCognitive PsychologyRNeurophysiologyTranscranial magnetic stimulationmedicine.anatomical_structureNeurology[ SCCO.NEUR ] Cognitive science/NeuroscienceMedicineSilent periodPrimary motor cortexPhysical Laws and PrinciplesNeuroscienceMotor cortexMental imageResearch ArticleNeuroscience
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