Search results for "Muscle"

showing 10 items of 3397 documents

Force and EMG power spectrum during eccentric and concentric actions

2000

This study was designed to examine the force and activation levels of elbow flexor muscles during preactivated eccentric, concentric and isometric actions.Force, average EMG (aEMG), and the EMG power spectrum were investigated at different constant movement velocities (1 rad x s(-1), 2 rad x s(-1), 3 rad x s(-1), and 4 rad x s(-1)) at different joint angles.Average force at a 110 degree elbow angle was lower and aEMG was higher in concentric actions as compared with eccentric and isometric actions. At a 55 degree elbow angle, there was no difference in aEMG, or it was slightly higher in eccentric actions. MF was higher in the concentric as compared with eccentric actions at the three fastes…

AdultMalePhysicsmedicine.medical_specialtyElbow flexormedicine.diagnostic_testElectromyographyMovementElbowSpectral densityPhysical Therapy Sports Therapy and RehabilitationElectromyographyAnatomyConcentricMotor unitmedicine.anatomical_structurePhysical medicine and rehabilitationIsometric ContractionElbowmedicineHumansEccentricOrthopedics and Sports Medicinemedicine.symptomMuscle contractionMedicine & Science in Sports & Exercise
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Potentiation of the mechanical behavior of the human skeletal muscle through prestretching

1979

Force-velocity and power-velocity curves in a vertical jump involving movements around several joints were derived from vertical ground reaction forces and knee angular velocities. The jumps were performed with weights from 10 to 160 kg added on the shoulders. The obtained curves from a semi-squatting static starting position resembled those reported for isolated muscles or single muscle groups. Vertical jumps were also performed in the conditions where the shortening of the leg extensors was preceded by prestretching of the active muscles either through a preparatory counter-movement or dropping down on the force-platform from the various heights ranging from 20 to 100 cm. Prestretching mo…

AdultMalePhysiologyChemistryMusclesElastic energySkeletal muscleLong-term potentiationMuscle activationAnatomyElasticityVertical jumpmedicine.anatomical_structureReflexmedicineHumansGround reaction forceMechanical energyBiomedical engineeringActa Physiologica Scandinavica
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The effect of pre-stretch on mechanical efficiency of human skeletal muscle

1987

The mechanical efficiency of positive work was studied in six subjects performing three different types of exercises. On the first occasion the subjects ran on a motor-driven treadmill at 3.33 m s-1; the second and the third exercises consisted of performing rhythmical vertical jumps for 1 min both in rebound (RJ) and no-rebound (NRJ) conditions. The mechanical efficiency calculated in NRJ, which reflects only the conversion of biochemical energy into mechanical work, was found to be lower than the corresponding observation in RJ, 17.2 vs. 27.8% (P less than 0.001), respectively. These differences could not be explained by only the storage and recoil of elastic energy occurring in RJ compar…

AdultMalePhysiologyChemistryPhysical ExertionWork (physics)Elastic energySkeletal muscleAnatomymedicine.disease_causeElasticityStretch shortening cycleRunningPre stretchJumpingmedicine.anatomical_structuremedicineJumpHumansTreadmillMechanoreceptorsMuscle ContractionBiomedical engineeringActa Physiologica Scandinavica
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Mechanical work and efficiency in ergometer bicycling at aerobic and anaerobic thresholds

1987

Internal and external mechanical work, energy consumption and mechanical efficiency were studied in constant-load ergometer bicycling at five different power outputs below, equal to, and above the aerobic (AerT) and anaerobic (AnT) thresholds. The gross, net and true efficiencies of the whole body in five male subjects were calculated. The work against the external load was defined as the external mechanical work. The internal mechanical work was calculated as the sum of the increments of kinetic and potential energy in all body segments by using methods of film analysis. Total energy consumption was measured by combining aerobic and anaerobic energy production. When the power output of the…

AdultMalePhysiologyChemistryPhysical ExertionWork (physics)chemistry.chemical_elementEnergy consumptionKinetic energyOxygenOxygen uptakeOxygen ConsumptionAnimal scienceExercise TestLactatesHumansAnaerobiosisPower outputBicycle ergometerEnergy MetabolismAnaerobic exerciseMuscle ContractionActa Physiologica Scandinavica
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Distinct muscle-tendon interaction during running at different speeds and in different loading conditions.

2019

The interaction between the Achilles tendon and the triceps surae muscles seems to be modulated differently with various task configurations. Here we tested the hypothesis that the increased forces and ankle joint work during running under contrasting conditions (altered speed or load) would be met by different, time-dependent adjustments at the muscle-tendon level. Ultrasonography, electromyography, kinematics, and ground reaction force measurements were used to examine Achilles tendon, gastrocnemius, and soleus muscle mechanics in 16 runners in four different running conditions, consisting of a combination of two different speeds (preferred and +20% of preferred speed) and two loading co…

AdultMalePhysiologyComputer scienceAchilles TendonRunning03 medical and health sciences0302 clinical medicinePhysiology (medical)medicineHumansMuscle SkeletalBiological sciencesGaitUltrasonographyLoad carriageAchilles tendonbusiness.industryWork (physics)030229 sport sciencesStructural engineeringmusculoskeletal systemTendonBiomechanical Phenomenamedicine.anatomical_structurebusinessMuscle architecture030217 neurology & neurosurgeryAnkle JointMuscle ContractionJournal of applied physiology (Bethesda, Md. : 1985)
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Effects of long-term training specificity on maximal strength and power of the upper and lower extremities in athletes from different sports

2002

Maximal concentric one repetition maximum half-squat (1RM(HS)), bench-press (1RM(BP)), power-load curves during concentric actions with loads ranging from 30% to 100% of 1RM(HS) and 1RM(BP)were examined in 70 male subjects divided into five groups: weightlifters (WL, n=11), handball players (HP, n=19), amateur road cyclists (RC, n=18), middle-distance runners (MDR, n=10) and age-matched control subjects (C, n=12). The 1RM(HS)values in WL, HP and RC were 50%, 29% and 28% greater, respectively, ( P<0.001-0.01) than those recorded for MDR and C. The half-squat average power outputs at all loads examined (from 30% to 100%) in WL and HP ( P<0.001 at 45% and 60% with HP) were higher ( P<0.05-0.00…

AdultMalePhysiologyConcentricSensitivity and SpecificityBench pressUpper ExtremityWeight-BearingAnimal sciencePhysiology (medical)One-repetition maximumTask Performance and AnalysisMaximal strengthHumansOrthopedics and Sports MedicinePower outputExercise physiologyMuscle SkeletalExerciseMathematicsPublic Health Environmental and Occupational HealthReproducibility of ResultsMuscle mechanicsGeneral MedicineLower ExtremityMuscle powerPhysical EnduranceSportsEuropean Journal of Applied Physiology
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Viscosity of the elbow flexor muscles during maximal eccentric and concentric actions.

1996

The aim of the present study was to estimate the damping coefficient (B factor) of the elbow flexor muscles during both eccentric and concentric muscle actions. We used a muscle model consisting of a viscous damper associated in parallel with a contractile component, both in series with an elastic component. The viscous damper allowed the concentric loss and the eccentric gain of force to be modelled. Eight volunteer subjects performed maximal eccentric and concentric elbow movements on an isokinetic dynamometer at angular velocities of 0.52, 1.04 and 2.09 rad*s(-1). Torques at an elbow joint angle of 90 degrees were recorded. Electromyogram (EMG) signals from the belly of the right elbow f…

AdultMalePhysiologyElbowElectromyographyConcentricModels BiologicalPhysiology (medical)medicineElbowEccentricHumansOrthopedics and Sports MedicinePhysicsmedicine.diagnostic_testTension (physics)ElectromyographyViscosityMusclesPublic Health Environmental and Occupational HealthBiomechanicsGeneral MedicineAnatomymedicine.anatomical_structureTorqueUpper limbmedicine.symptomMuscle contractionEuropean journal of applied physiology and occupational physiology
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Muscle-tendon interaction and elastic energy usage in human walking

2005

The present study was designed to explore how the interaction between the fascicles and tendinous tissues is involved in storage and utilization of elastic energy during human walking. Eight male subjects walked with a natural cadence (1.4 ± 0.1 m/s) on a 10-m-long force plate system. In vivo techniques were employed to record the Achilles tendon force and to scan real-time fascicle lengths for two muscles (medial gastrocnemius and soleus). The results showed that tendinous tissues of both medial gastrocnemius and soleus muscles lengthened slowly throughout the single-stance phase and then recoiled rapidly close to the end of the ground contact. However, the fascicle length changes demonstr…

AdultMalePhysiologyMedial gastrocnemiusWalkingModels BiologicalTendonsElastic recoilPhysiology (medical)Image Interpretation Computer-AssistedmedicineHumansComputer SimulationMuscle SkeletalUltrasonographyAchilles tendonChemistryElastic energyAnatomyFasciclemusculoskeletal systemAdaptation PhysiologicalTendonmedicine.anatomical_structureEnergy Transfermedicine.symptomCadenceAnkle JointMuscle ContractionMuscle contraction
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Influence of load and stretch shortening cycle on the kinematics, kinetics and muscle activation that occurs during explosive upper-body movements.

1997

Although explosive power in lower-body movements has been extensively studied, there is a paucity of research examining such movements in the upper body. This study aimed to investigate the influence of load and the stretch shortening cycle (SSC) on the kinematics, kinetics, and muscle activation that occurs during maximal effort throws. A total of 17 male subjects performed SSC and concentric only (CO) bench throws using loads of 15%, 30%, 45%, 60%, 75%, 90% and 100% of their previously determined one repetition maximum bench press. The displacement, velocity, acceleration, force and power output as well as the electromyogram (EMG) from pectoralis major, anterior deltoid, and triceps brach…

AdultMalePhysiologyMovementKinematicsElectromyographyConcentricBench pressStretch shortening cyclePhysiology (medical)One-repetition maximummedicineHumansOrthopedics and Sports MedicineExercise physiologyExercisePhysicsmedicine.diagnostic_testElectromyographyPublic Health Environmental and Occupational HealthBody movementGeneral MedicineMechanicsAnatomyKineticshuman activitiesMuscle ContractionEuropean journal of applied physiology and occupational physiology
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Effect of electrode location on surface electromyography changes due to eccentric elbow flexor exercise.

2009

Experiments were carried out to determine whether the location of electrodes has an effect on eccentric exercise–induced changes in surface electromyography (sEMG) variables in the biceps brachii muscle. sEMG signals were recorded with a grid of 64 electrodes before and up to 4 days post-exercise. Root mean square (RMS) and mean power frequency (MNF) were calculated for: (1) each channel; (2) as an average of all channels; and (3) as an average of individual channel rows and columns. Mean muscle-fiber conduction velocity (CV) was estimated similarly but was based on double-differential channels. Maximal isometric voluntary torque decreased 21.3 ± 5.6% post-exercise. The average sEMG variabl…

AdultMalePhysiologyMuscle Fibers SkeletalPainElectromyographyIsometric exerciseNerve conduction velocityRoot mean squareCellular and Molecular NeurosciencePhysiology (medical)Isometric ContractionmedicineElbowEccentricHumansMuscle SkeletalElectrodesExerciseMathematicsMuscle fatiguemedicine.diagnostic_testBiceps brachii muscleElectromyographySignal Processing Computer-AssistedAnatomyElectrode locationNeurology (clinical)Biomedical engineeringMuscle ContractionMusclenerve
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