0000000000701183

AUTHOR

Keitaro Seki

0000-0002-7546-1990

showing 5 related works from this author

Biomechanical factors affecting energy cost during running utilising different slopes

2019

This study aimed to examine the characteristics of electromyography (EMG) and kinematics of the supporting leg affecting energy cost while running at incline, level, and decline slopes. Twelve male Japanese middle- and long-distance runners volunteered for this study. The subjects were asked to run at 13.5 km·h

MaleKnee JointComputer scienceMovement030209 endocrinology & metabolismPhysical Therapy Sports Therapy and RehabilitationKinematicsElectromyographyAutomotive engineeringRunningYoung Adult03 medical and health sciences0302 clinical medicinemedicineHumansOrthopedics and Sports MedicineMuscle Skeletalmedicine.diagnostic_testElectromyographyPulmonary Gas Exchange030229 sport sciencesBiomechanical Phenomenabody regionsLower ExtremityExercise TestRunning economyEnergy costHip JointEnergy MetabolismAnkle JointJournal of Sports Sciences
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Causal relationships among motion factors for achieving a high release velocity in the discus throw

2019

Control theoryMotion (physics)MathematicsTaiikugaku kenkyu (Japan Journal of Physical Education, Health and Sport Sciences)
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Kinematic characteristics of barefoot sprinting in habitually shod children

2018

Background Anecdotally, a wide variety of benefits of barefoot running have been advocated by numerous individuals. The influence of the alterations in the properties of the shoe on the running movement has been demonstrated in adults at submaximal jogging speeds. However, the biomechanical differences between shod and barefoot running in children at sprinting speeds and the potential developmental implications of these differences are still less examined. The purpose was to determine the potential differences in habitually shod children’s sprint kinematics between shod and barefoot conditions. Methods Ninety-four children (51 boys and 43 girls; 6–12 years-old; height, 135.0 ± 0.12 m; body…

Acute effectsSprint kinematicsmedicine.medical_specialtyBarefoot runningPhysical fitnesslcsh:MedicineKinematicsGeneral Biochemistry Genetics and Molecular BiologyBarefoot03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationmedicinebusiness.industryGeneral NeuroscienceForefootlcsh:R030229 sport sciencesGeneral MedicineKinesiologyGrowth and developmentSagittal planemedicine.anatomical_structureSprintFoot strike patternGeneral Agricultural and Biological SciencesPsychologybusinesshuman activitiesStance time030217 neurology & neurosurgeryPeerJ
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Effects of Joint Kinetics on Energy Cost during Repeated Vertical Jumping

2019

The present study was designed to investigate the effects of lower limb joint kinetics on energy cost during jumping.Eight male middle and long-distance runners volunteered for the study. The subjects were asked to repeat vertical jumps at a frequency of 2 Hz for 3 min on a force platform in three different surface inclination conditions: Incline (+8°), Level (0°), and Decline (-8°). Sagittal plane kinematics were obtained using a high-speed video camera. Simultaneously, ground reaction forces and EMG of the lower limb muscles were recorded. Energy cost was calculated using steady-state oxygen uptake, respiratory ratio, and vertical distance of the body.In all conditions, energy cost correl…

Malemedicine.medical_specialtyinclinationKnee JointEnergy metabolismPhysical Therapy Sports Therapy and RehabilitationPlyometric ExerciseLower limbBiomechanical Phenomena03 medical and health sciencesYoung Adult0302 clinical medicinePhysical medicine and rehabilitationOxygen ConsumptionEMGniveletstretch-shortening cyclemedicinePlyometricsHumansOrthopedics and Sports Medicineta315Joint (geology)business.industry030229 sport sciencesmechanical workVertical jumpingBiomechanical PhenomenaKineticselektromyografiaefficiencyEnergy costHip JointhyppääminenbiomekaniikkabusinessEnergy MetabolismAnkle JointMedicine and Science in Sports and Exercise
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Biomechanical factors affecting energy cost during running utilising different slopes

2020

This study aimed to examine the characteristics of electromyography (EMG) and kinematics of the supporting leg affecting energy cost while running at incline, level, and decline slopes. Twelve male Japanese middle- and long-distance runners volunteered for this study. The subjects were asked to run at 13.5 km·h−1 on a treadmill under three slope conditions. Sagittal plane kinematics and the EMG of the lower limb muscles, respiratory gases were recorded. Energy cost differed significantly between slopes, being the lowest in decline slope and the greatest in incline slope. Integrated EMG (iEMG) of leg extensor muscles was greater in the incline slope than in the decline slope, and iEMG of the…

musculoskeletal diseasesinclinationEMGliikeoppielektromyografiakinematicsrunning economybiomekaniikkamusculoskeletal systemenergiankulutus (aineenvaihdunta)juoksu
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