Search results for "Grip force"

showing 7 items of 7 documents

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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Grip force regulates hand impedance to optimize object stability in high impact loads

2011

Anticipatory grip force adjustments are a prime example of the predictive nature of motor control. An object held in precision grip is stabilized by fine adjustments of the grip force against changes in tangential load force arising from inertia during acceleration and deceleration. When an object is subject to sudden impact loads, prediction becomes critical as the time available for sensory feedback is very short. Here, we investigated the control of grip force when participants performed a targeted tapping task with a hand-held object. During the initial transport phase of the movement, load force varied smoothly with acceleration. In contrast, in the collision, load forces sharply incre…

AdultMaleComputer scienceMovementmedia_common.quotation_subjectInertiaWeight-BearingYoung AdultAccelerationControl theorymedicineHumansLoad forceElectrical impedancemedia_commonHand StrengthGeneral NeuroscienceStiffnessMotor controlCollisionbody regionsAcoustic StimulationFemaleGrip forcemedicine.symptomNeuroscience
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Effects of combined hand-arm vibration and cold on skin temperature

1989

Under laboratory conditions 14 healthy male subjects were exposed to hand-arm vibration (ahzw = 6.3 m/s2) at different air temperatures (5 degrees, 12 degrees, 18 degrees and 25 degrees C). Static load (grip force 15 N, push force 40 N) was kept constant. Finger tip temperature as an indirect criterion of the peripheral blood circulation was measured. As expected, low air temperatures (5 degrees, 12 degrees and 18 degrees C) cause a strong decrease of skin temperature. Under additional stress of vibration connected with static load, a further decrease of the mean skin temperature was noted. At this, static load proved to have a predominant influence on the acute diminution of skin temperatu…

AdultMaleDiminutionmedicine.medical_specialtyMaterials sciencePhysical ExertionWork (physics)Public Health Environmental and Occupational HealthSkin temperatureVibrationPeripheral bloodSurgeryCold TemperatureVibrationStress (mechanics)Reference ValuesmedicineHumansGrip forceComposite materialSkin TemperatureHand armInternational Archives of Occupational and Environmental Health
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Grip Force Adjustments Reflect Prediction of Dynamic Consequences in Varying Gravitoinertial Fields

2018

International audience; Humans have a remarkable ability to adjust the way they manipulate tools through a genuine regulation of grip force according to the task. However, rapid changes in the dynamical context may challenge this skill, as shown in many experimental approaches. Most experiments adopt perturbation paradigms that affect only one sensory modality. We hypothesize that very fast adaptation can occur if coherent information from multiple sensory modalities is provided to the central nervous system. Here, we test whether participants can switch between different and never experienced dynamical environments induced by centrifugation of the body. Seven participants lifted an object …

Gravity (chemistry)object manipulationPhysiologyComputer science[SDV.MHEP.PHY] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]Context (language use)gravity sensing03 medical and health sciencesAcceleration0302 clinical medicinePhysiology (medical)internal-modelsmotor control[SDV.MHEP.PHY]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]movements[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]uncertaintySimulationhypergravityOriginal Research030304 developmental biologybayesian integration0303 health sciencessensorimotor memoryswitchinggrip forceGRASPsize cuesrecision gripgravity[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Grip force030217 neurology & neurosurgerysensory information
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Validity and Reliability of a Single Question for Leisure-Time Physical Activity Assessment in Middle-Aged Women.

2020

Purpose: To investigate the validity and test–retest reliability of a single seven-level scale physical activity assessment question (SR-PA L7) and its three-level categorization (SR-PA C3). Methods: The associations of SR-PA L7 and C3 with accelerometer-measured leisure-time physical activity (ACC-LTPA) and with the results of four different physical performance tests (6-min walk [n = 733], knee extension [n = 695], vertical jump [n = 731], and grip force [n = 780]) were investigated among women aged 47–55 years participating in the Estrogenic Regulation of Muscle Apoptosis study (n = 795). The reliability was studied using Spearman correlations with 4-month test–retest period (n = 152). R…

Leisure timePhysical activityValidityPhysical Therapy Sports Therapy and RehabilitationWalkingtestaus03 medical and health sciencesVertical jump0302 clinical medicineLeisure Activitiesphysical activity measurementSurveys and QuestionnairesStatisticstest–retest reliabilityaccelerometryHumans030212 general & internal medicineself-reported physical activityReliability (statistics)MathematicsHand StrengthRehabilitationReproducibility of Results030229 sport sciencesRepeatabilityMiddle AgedPhysical FitnessScale (social sciences)Exercise TestFemaleGeriatrics and GerontologyGrip forceGerontologyhuman activitiesfyysinen aktiivisuusluotettavuusJournal of aging and physical activity
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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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Smart switching in feedforward control of grip force during manipulation of elastic objects

2017

AbstractSwitching systems are common in artificial control systems. Here, we suggest that the brain adopts a switched feedforward control of grip forces during manipulation of objects. We measured how participants modulated grip force when interacting with soft and rigid virtual springs when stiffness varied nearly continuously between trials. We identified a sudden phase transition between two forms of feedforward control that differed in the timing of the synchronization between the anticipated load force and the applied grip force. The switch occurred several trials after a threshold stiffness level. These results suggest that in the control of grip force, the brain acts as a switching c…

body regionsSynchronization (alternating current)State variableComputer scienceControl systemFeed forwardmedicineStiffnessGrip forcemedicine.symptomhuman activitiesSimulation
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