Search results for " Dynamics"

showing 10 items of 4108 documents

Flexible multibody simulation approach in the analysis of tibial strain during walking.

2007

Strains within the bone tissue play a major role in bone (re)modeling. These small strains can be assessed using experimental strain gage measurements, which are challenging and invasive. Further, the strain measurements are, in practise, limited to certain regions of superficial bones only, such as the anterior surface of the tibia. In this study, tibial strains occurring during walking were estimated using a numerical approach based on flexible multibody dynamics. In the introduced approach, a lower body musculoskeletal model was developed by employing motion capture data obtained from walking at a constant velocity. The motion capture data were used in inverse dynamics simulation to teac…

AdultMaleModels AnatomicComputer scienceBiomedical EngineeringBiophysicsWalkingBone tissueMotion captureInverse dynamicsWeight-BearingImaging Three-DimensionalmedicineHumansOrthopedics and Sports MedicineComputer SimulationTibiaStrain gaugeTibiabusiness.industryRehabilitationDynamics (mechanics)Multibody simulationStructural engineeringMultibody systemBiomechanical Phenomenamedicine.anatomical_structureStress MechanicalbusinessJournal of biomechanics
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The calculation of the first positive Lyapunov exponent in sleep EEG data

1993

To help determine if the EEG is quasiperiodic or chaotic we performed a new analysis by calculating the first positive Lyapunov exponent L1 from sleep EEG data. Lyapunov exponents measure the mean exponential expansion or contraction of a flow in phase space. L1 is zero for periodic as well as quasiperiodic processes, but positive in case of chaotic processes expressing the sensitive dependence on initial conditions. We calculated L1 for sleep EEG segments of 15 healthy male subjects corresponding to sleep stages I, II, III, IV and REM (according to Rechtschaffen and Kales). Our investigations support the assumption that EEG signals are neither quasiperiodic waves nor simple noise. Moreover…

AdultMaleModels NeurologicalChaoticLyapunov exponentElectroencephalographyMeasure (mathematics)symbols.namesakemedicineHumansContraction (operator theory)MathematicsSleep StagesQuantitative Biology::Neurons and Cognitionmedicine.diagnostic_testGeneral NeuroscienceMathematical analysisBrainElectroencephalographySignal Processing Computer-AssistedMiddle AgedNonlinear Sciences::Chaotic DynamicsQuasiperiodic functionPhase spacesymbolsNeurology (clinical)SleepElectroencephalography and Clinical Neurophysiology
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A comparison of the triceps surae and residual muscle moments at the ankle during cycling.

1991

The rigid linked system model and principles of inverse dynamics have been widely used to calculate residual muscle moments during various activities. EMG driven models and optimization algorithms have also been presented in the literature in efforts to estimate skeletal muscle forces and evaluate their possible contribution to the residual muscle moment. Additionally, skeletal muscle-tendon forces have been measured, directly, in both animals and humans. The purpose of this investigation was to calculate the moment produced by the triceps surae muscles and compare it to the residual muscle moment at the ankle during cycling at three power outputs (90, 180 and 270 W). Inferences were made r…

AdultMaleMovementTransducersBiomedical EngineeringBiophysicsElectromyographyAchilles TendonModels BiologicalInverse dynamicsTriceps surae musclemedicineHumansOrthopedics and Sports MedicinePhysicsAchilles tendonmedicine.diagnostic_testElectromyographyMusclesRehabilitationBiomechanicsAnatomyProstheses and ImplantsTendonBicyclingMoment (mathematics)medicine.anatomical_structureStress MechanicalAnkleAnkleAnkle JointBiomedical engineeringJournal of biomechanics
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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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Quantifying changes in EEG complexity induced by photic stimulation.

2009

Summary Objectives: This study aims to characterize EEG complexity, measured as the prediction error resulting from nonlinear prediction, in healthy humans during photic stimulation. Methods: EEGs were recorded from 15 subjects with eyes closed (EC) and eyes open (EO), during the baseline condition and during stroboscopic photic stimulation (PS) at 5, 10, and 15 Hz. The mean squared prediction error (MSPE) resulting from nearest neighbor local linear prediction was taken as complexity index. Complexity maps were generated interpolating the MSPE index over a schematic scalp representation. Results: Statistical analysis revealed that: i) EEG shows good predictability in all conditions and see…

AdultMalePhotic StimulationComputer scienceHealth InformaticsElectroencephalographyMachine learningcomputer.software_genreBrain mappingComplexity indexHealth Information ManagementReference ValuesmedicineHumansEEGPredictabilityPredictability mapVisual stimulationHealth InformaticAdvanced and Specialized NursingBrain Mappingmedicine.diagnostic_testbusiness.industryStochastic processLocal linear predictionPattern recognitionElectroencephalographySignal Processing Computer-AssistedNeurophysiologymedicine.anatomical_structureNonlinear DynamicsScalpSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaFemaleArtificial intelligencebusinesscomputerAlgorithmsPhotic StimulationMethods of information in medicine
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Effects of muscle action type on corticospinal excitability and triceps surae muscle-tendon mechanics.

2018

This study investigated whether the specific motor control strategy reported for eccentric muscle actions is dependent on muscle mechanical behavior. Motor evoked potentials, Hoffman reflex (H-reflex), fascicle length, pennation angle, and fascicle velocity of soleus muscle were compared between isometric and two eccentric conditions. Ten volunteers performed maximal plantarflexion trials in isometric, slow eccentric (25°/s), and fast eccentric (100°/s) conditions, each in a different randomized testing session. H-reflex normalized by the preceding M wave (H/M) was depressed in both eccentric conditions compared with isometric ( P < 0.001), while no differences in fascicle length and pe…

AdultMalePhysiologyPyramidal TractsH-ReflexTendons03 medical and health sciences0302 clinical medicineMuscle actionTriceps surae muscleIsometric ContractionMedicineEccentricHumansta315Muscle Skeletalbusiness.industryGeneral NeuroscienceMotor control030229 sport sciencesTendonBiomechanical Phenomenamedicine.anatomical_structurecorticospinal excitabilitymotor evoked potentialsbusinessNeuroscience030217 neurology & neurosurgerymuscle-tendon dynamicsJournal of neurophysiology
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Axis Rotation and Visually Induced Motion Sickness: The Role of Combined Roll, Pitch, and Yaw Motion

2011

A well-known phenomenon in aviation and in virtual environments such as simulators or computer games is motion sickness (MS). The amount of sensory conflict is thought to be responsible for the severity of MS, which should increase with the complexity of the simulated motion. The focus of the present study is on the direction and complexity of simulated body rotations in the genesis and severity of visually induced MS. The methods utilized for this study are as follows: Three simulated rollercoaster rides including translational movement in the fore-aft axis and additional rotational motion either in pitch only, along the pitch and roll axes, or in pitch, roll, and yaw were generated. The a…

AdultMaleProjection screenVisual perceptionRotationMotion SicknessMovementSeverity of Illness IndexFlight dynamicsmedicineHumansComputer visionVerbal Rating ScaleSimulationMathematicsAnalysis of Variancebusiness.industryPublic Health Environmental and Occupational HealthRotation around a fixed axisVideotape Recordingmedicine.diseaseMotion sicknessVisual PerceptionSimulator sicknessFemaleArtificial intelligenceFast motionbusinessAviation, Space, and Environmental Medicine
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Diagnosing fatigue in gait patterns by support vector machines and self-organizing maps

2009

The aim of the study was to train and test support vector machines (SVM) and self-organizing maps (SOM) to correctly classify gait patterns before, during and after complete leg exhaustion by isokinetic leg exercises. Ground reaction forces were derived for 18 gait cycles on 9 adult participants. Immediately before the trials 7-12, participants were required to completely exhaust their calves with the aid of additional weights (44.4±8.8kg). Data were analyzed using: (a) the time courses directly and (b) only the deviations from each individual's calculated average gait pattern. On an inter-individual level the person recognition of the gait patterns was 100% realizable. Fatigue recognition …

AdultMaleSelf-organizing mapmedicine.medical_specialtySupport Vector MachineWeight LiftingComputer scienceIndividualityBiophysicsExperimental and Cognitive PsychologyPattern Recognition AutomatedYoung AdultPhysical medicine and rehabilitationmedicineHumansOrthopedics and Sports MedicineGround reaction forceGaitArtificial neural networkMuscle fatiguebusiness.industryBiomechanicsGeneral MedicineGaitBiomechanical PhenomenaSupport vector machineNonlinear DynamicsMuscle FatiguePattern recognition (psychology)Artificial intelligencebusinesshuman activitiesHuman Movement Science
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Kinematic and dynamic processes for the control of pointing movements in humans revealed by short-term exposure to microgravity.

2004

The generation of accurate motor commands requires implicit knowledge of both limb and environmental dynamics. The action of gravity on moving limb segments must be taken into account within the motor command, and may affect the limb trajectory chosen to accomplish a given motor task. Exactly how the CNS deals with these gravitoinertial forces remains an open question. Does the CNS measure gravitational forces directly, or are they accommodated in the motor plan by way of internal models of physical laws? In this study five male subjects participated. We measured kinematic and dynamic parameters of upward and downward arm movements executed at two different speeds, in both normal Earth grav…

AdultMaleTime FactorsWeightlessnessComputer scienceWeightlessnessGeneral NeuroscienceMovementDynamics (mechanics)Motor controlBody movementMechanicsKinematicsBiomechanical PhenomenaGravity of EarthNonlinear DynamicsTorqueTrajectoryArmTorqueHumansGravity SensingPsychomotor PerformanceNeuroscience
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Motor planning of arm movements is direction-dependent in the gravity field.

2007

International audience; In the present study we analyzed kinematic and dynamic features of arm movements in order to better elucidate how the motor system integrates environmental constraints (gravity) into motor planning and control processes. To reach this aim, we experimentally manipulated the mechanical effects of gravity on the arm while maintaining arm inertia constant (i.e. the distribution of the mass around the shoulder joint). Six subjects performed single-joint arm movements (rotation around the shoulder joint) in both sagittal (upward, U, versus downward, D) and horizontal (left, L, versus right, R) planes, at different amplitudes and from different initial positions. Under thes…

AdultMaleTime Factorsmedia_common.quotation_subjectMovementKinematicsRotationInertiaarm kinematics050105 experimental psychologyFunctional Laterality03 medical and health sciencesAcceleration0302 clinical medicineinternal modelsMotor systemmotor planningmedicineHumans0501 psychology and cognitive sciences[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]gravity forceAstrophysics::Galaxy AstrophysicsMathematicsmedia_common[ PHYS.MECA.BIOM ] Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]Analysis of VarianceMovement (music)General Neuroscience05 social sciences[SPI.MECA.BIOM]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]Planning TechniquesHorizontal planeGeodesySagittal planeBiomechanical Phenomenamedicine.anatomical_structureNonlinear DynamicsTorqueArminertial force[ SPI.MECA.BIOM ] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]030217 neurology & neurosurgeryPsychomotor PerformanceGravitationNeuroscience
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