Search results for "flexor muscle"

showing 9 items of 9 documents

Effect of combined electrostimulation and plyometric training on vertical jump height.

2002

This study investigated the influence of a 4-wk combined electromyostimulation (EMS) and plyometric training program on the vertical jump performance of 10 volleyball players.Training sessions were carried out three times weekly. Each session consisted of three main parts: EMS of the knee extensor muscles (48 contractions), EMS of the plantar flexor muscles (30 contractions), and 50 plyometric jumps. Subjects were tested before (week 0), during (week 2), and after the training program (week 4), as well as once more after 2 wk of normal volleyball training (week 6). Different vertical jumps were carried out, as well as maximal voluntary contraction (MVC) of the knee extensor and plantar flex…

AdultMalemedicine.medical_specialtyTime FactorsMovementPhysical Therapy Sports Therapy and RehabilitationIsometric exercisemedicine.disease_causeVertical jumpJumpingIsometric ContractionmedicineHumansOrthopedics and Sports MedicineKneeMuscle SkeletalElectric stimulationbusiness.industryFlexor musclesElectric StimulationPhysical performancePhysical therapyExtensor musclePlyometric trainingbusinessSportsMedicine and science in sports and exercise
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Effets de la pratique de l'escalade sur la contractilité musculaire

1992

Resume Les caracteristiques biomecaniques des flechisseurs du coude et du poignet de sujets grimpeurs sont comparees a celles de sujets non pratiquants. Les mesures sont realisees a l'aide d'un ergometre isocinetique sur une plage de vitesses angulaires s'etalant de 120°·s −1 en excentrique a 360°·s −1 en concentrique. Les relations couple maximum/vitesse angulaire montrent que les sujets grimpeurs developpent un couple maximum plus eleve que les sujets temoins sur une plage de vitesse angulaire allant de 60°·s −1 en excentrique a 120°·s −1 en concentrique. Les differences entre les valeurs de couple maximum excentrique et concentrique sont identiques pour les deux groupes de sujets. Lors d…

PhilosophyOrthopedics and Sports MedicineFlexor musclesHumanitiesScience & Sports
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Anticipatory postural adjustments during joint action coordination

2019

International audience; There is a current claim that humans are able to effortlessly detect others’ hidden mental state by simply observing their movements and transforming the visual input into motor knowledge to predict behaviour. Using a classical paradigm quantifying motor predictions, we tested the role of vision feedback during a reach and load-lifting task performed either alone or with the help of a partner. Wrist flexor and extensor muscle activities were recorded on the supporting hand. Early muscle changes preventing limb instabilities when participants performed the task by themselves revealed the contribution of the visual input in postural anticipation. When the partner perfo…

coordinationPosturelcsh:MedicineActivationSocio-culturaleReaching MovementsArticleTimesocial behaviorCorticesMedical researchextensor muscleMotor controlLS5_1[SDV.MHEP.AHA]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]Posture coordination extensor muscle flexor muscle social behaviorlcsh:Scienceflexor muscleSupplementary Motor Arealcsh:RHandAcquisitionPremotorlcsh:QPerception[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Load-Lifting Task[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Biomechanische Überlegungen über Stoßkräfte und Fußstabilität beim Laufen

1993

The interaction between "man-shoe and surface" is presented as a model to discuss the complexity of human locomotion. Only if the physiological system "man" interacts positively with the physical requirements of shoe and surface quality running will become effective and economical. Especially during the early ground contact phase the hardness of the shoe construction determines the height of the vertical impact load. These adaptations have consequences in the emg amplitudes during the stretch activation phase of the contact. Comparing various jogging shoes with altered construction properties it can be shown that the "hardness" of the shoe material is well adapted by the variation in the em…

musculoskeletal diseasesFoot (prosody)Computer sciencebusiness.industrytechnology industry and agricultureEMG amplitudeStructural engineeringFlexor musclesStability (probability)Biomechanical Phenomenabody regionsGround contactotorhinolaryngologic diseasesOrthopedics and Sports MedicineRange of motionbusinessHuman locomotionSportverletzung · Sportschaden
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Activation of human plantar flexor muscles increases after electromyostimulation training

2002

Neuromuscular adaptations of the plantar flexor muscles were assessed before and subsequent to short-term electromyostimulation (EMS) training. Eight subjects underwent 16 sessions of isometric EMS training over 4 wk. Surface electromyographic (EMG) activity and torque obtained under maximal voluntary and electrically evoked contractions were analyzed to distinguish neural adaptations from contractile changes. After training, plantar flexor voluntary torque significantly increased under isometric conditions at the training angle (+8.1%, P< 0.05) and at the two eccentric velocities considered (+10.8 and +13.1%, P < 0.05). Torque gains were accompanied by higher normalized soleus EMG a…

AdultMaleVolitionmedicine.medical_specialtyElectromyographyPhysiologybusiness.industryNeuromuscular transmissionIsometric exerciseFlexor musclesElectric StimulationPlantar flexionContractilityPhysical medicine and rehabilitationTorqueIsometric ContractionPhysiology (medical)medicinePhysical therapyHumansMuscle SkeletalbusinessExerciseJournal of Applied Physiology
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Novel triplet of flexor muscles in the posterior tentacles of the snail, Helix pomatia.

2012

The anatomy of three novel flexor muscles in the posterior tentacles of Helix pomatia is described. The muscles originate from the ventral side of the sensory pad and are anchored at different sites in the base of the tentacle stem. The muscles span the tentacle and always take the length of the stem which depends on the rate of tentacle protrusion indicating that the muscles are both contractile and extremely stretchable. The three anchoring points at the base of the stem determine three space axes along which the contraction of a muscle or the synchronous contraction of the muscles can move the tentacle in space.

TentaclebiologyHelix SnailsMovementMusclesVentral sideSnailHelix pomatiaAnatomyFlexor musclesbiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologyEyestalkNeurologybiology.animalAnimalsGeneral Environmental ScienceActa biologica Hungarica
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Does a Mental Training Session Induce Neuromuscular Fatigue?

2014

ROZAND, V., F. LEBON, C. PAPAXANTHIS, and R. LEPERS. Does a Mental Training Session Induce Neuromuscular Fatigue? Med. Sci. Sports Exerc., Vol. 46, No. 10, pp. 1981–1989, 2014. Mental training, as physical training, enhances muscle strength. Whereas the repetition of maximal voluntary contractions (MVC) induces neuromuscular fatigue, the effect of maximal imagined contractions (MIC) on neuromuscular fatigue remains unknown. Here, we investigated neuromuscular alterations after a mental training session including MIC, a physical training session including MVC, and a combined training session including both MIC and MVC of the elbow flexor muscles. Methods: Ten participants performed 80 MIC (d…

AdultMaleTRANSCRANIAL MAGNETIC STIMULATIONmedicine.medical_specialtymedicine.medical_treatmenteducationPyramidal TractsPhysical Therapy Sports Therapy and RehabilitationIMAGERYMOTOR-EVOKED-POTENTIALSYoung AdultMental ProcessesMotor imageryFLEXOR MUSCLESElbowHumansMedicineOrthopedics and Sports MedicineSession (computer science)MODULATIONExercise physiologyExerciseCONTRACTIONSbusiness.industryTraining (meteorology)SUPRASPINAL FATIGUECORTICOSPINAL EXCITABILITYWorkloadPERFORMANCEElectric StimulationMAXIMAL VOLUNTARYbody regionsTranscranial magnetic stimulationNeuromuscular fatigueMuscle FatiguePhysical therapy[ SCCO ] Cognitive sciencemedicine.symptombusinesshuman activitiesMuscle ContractionMuscle contractionMedicine & Science in Sports & Exercise
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Comparing Surface and Fine-Wire Electromyography Activity of Lower Leg Muscles at Different Walking Speeds.

2019

Ankle plantar flexor muscles are active in the stance phase of walking to propel the body forward. Increasing walking speed requires increased plantar flexor excitation, frequently assessed using surface electromyography (EMG). Despite its popularity, validity of surface EMG applied on shank muscles is mostly unclear. Thus, we examined the agreement between surface and intramuscular EMG at a range of walking speeds. Ten participants walked overground at slow, preferred, fast, and maximum walking speeds (1.01 ± 0.13, 1.43 ± 0.19, 1.84 ± 0.23, and 2.20 ± 0.38 m s–1, respectively) while surface and fine-wire EMG activities of flexor hallucis longus (FHL), soleus (SOL), medial gastrocnemius (MG…

IdrottsvetenskapPhysiologysurface electromyographymusculoskeletal systembipedal locomotionkävelybody regionsintramuscular electromyographynilkatEMGelektromyografiaankle plantar flexor musclesPhysiology (medical)biomekaniikkaSport and Fitness SciencesOriginal ResearchFrontiers in physiology
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Effects of plantar flexor muscle fatigue induced by electromyostimulation on postural coordination

2007

International audience; The aim of the present study was to investigate the influence of a modification of an intrinsic capacity (plantar flexor strength) on the implementation of in-phase and anti-phase mode of coordination. Analysis of hip and ankle relative phases during fore-aft tracking task was done before and after an electromyostimulation fatigue protocol on the soleus muscles. Results showed participants used exclusively in-phase and anti-phase modes of coordination, with a sudden switch from one to the other with target frequency increase. Regarding tracking tasks, fatigue induces a decrease of performance for lower frequencies, and a significant decrease of switch frequency (−0.0…

AdultMalemedicine.medical_specialtyMovementPosturePlantar flexion03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationIsometric ContractionHumansMedicine[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]Muscle SkeletalRelative phases[ PHYS.MECA.BIOM ] Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]LegHipMuscle fatiguebusiness.industryGeneral Neuroscience[SPI.MECA.BIOM]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]030229 sport sciencesFlexor musclesAdaptation PhysiologicalElectric StimulationConstraintmedicine.anatomical_structureTorqueMuscle FatiguePhysical therapyAnkle[ SPI.MECA.BIOM ] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]Anklebusiness030217 neurology & neurosurgeryMuscle ContractionNeuroscience Letters
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