0000000000247591

AUTHOR

Sina Mehdizadeh

0000-0002-8598-6176

showing 3 related works from this author

Quantifying coordination and coordination variability in backward versus forward running: Implications for control of motion

2015

The aims of this study were to compare coordination and coordination variability in backward and forward running and to investigate the effects of speed on coordination variability in both backward and forward running. Fifteen healthy male participants took part in this study to run forwards and backwards on a treadmill at 80%, 100% and 120% of their preferred running speeds. The coordinate data of passive reflective markers attached to body segments were recorded using motion capture systems. Coordination of shank-foot and thigh-shank couplings in sagittal plane was quantified using the continuous relative phase method. Coordination variability was calculated as the standard deviation of a…

AdultMalecoordinationComputer scienceAccelerationBiophysicsDegrees of freedom (statistics)Phase (waves)Reversal LearninggaitMotion captureStandard deviationRunningYoung Adultbackward runningControl theoryOrientationmedicineHumansOrthopedics and Sports MedicineTreadmillta315SimulationvariabilityRehabilitationCentral pattern generatorcentral pattern generatorsGaitSagittal planemedicine.anatomical_structurePsychomotor PerformanceGait & Posture
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A minimal limit-cycle model to profile movement patterns of individuals during agility drill performance: Effects of skill level.

2015

Identification of control strategies during agility performance is significant in understanding movement behavior. This study aimed at providing a fundamental mathematical model for describing the motion of participants during an agility drill and to determine whether skill level constrained model components. Motion patterns of two groups of skilled and unskilled participants (n = 8 in each) during performance of a forward/backward agility drill modeled as limit-cycles. Participant movements were recorded by motion capture of a reflective marker attached to the sacrum of each individual. Graphical and regression analyses of movement kinematics in Hooke’s plane, phase plane and velocity prof…

AdultSacrumComputer scienceMovementBiophysicsExperimental and Cognitive PsychologyKinematicsAthletic PerformanceMotion captureMotion (physics)RunningSkill levelMotionYoung AdultOscillometryHumansOrthopedics and Sports MedicineComputer Simulationta315Postural BalanceSimulationVan der Pol oscillatorDrillMovement (music)Limit-cycle modelGeneral MedicineVariance (accounting)Phase planeModels TheoreticalMotor processesBiomechanical PhenomenaPhysical FitnessNonlinear dynamicsCalibrationAgilityRegression AnalysisPsychomotor PerformanceHuman movement science
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Quantifying foot placement variability and dynamic stability of movement to assess control mechanisms during forward and lateral running

2015

Research has indicated that human walking is more unstable in the secondary, rather than primary plane of progression. However, the mechanisms of controlling dynamic stability in different planes of progression during running remain unknown. The aim of this study was to compare variability (standard deviation and coefficient of variation) and dynamic stability (sample entropy and local divergence exponent) in anterior–posterior and medio-lateral directions in forward and lateral running patterns. For this purpose, fifteen healthy, male participants ran in a forward and lateral direction on a treadmill at their preferred running speeds. Coordinate data of passive reflective markers attached …

AdultMaleComputer scienceBiomedical EngineeringBiophysicsWalkingStability (probability)Motion captureStandard deviationYoung Adultnonlinear dynamicsGait (human)Transition from walking to runningControl theorydynamic stabilityrunningmotor controlHumansOrthopedics and Sports MedicineTreadmillta315GaitSimulationFootvariabilityRehabilitationMotor controlSample entropyExercise TestJournal of Biomechanics
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