Search results for "Muscle Contraction"

showing 10 items of 569 documents

Disturbed motor control of rhythmic movement at 2 h and delayed after maximal eccentric actions.

2008

The aim of this study was to examine the influence of exercise-induced muscle damage on elbow rhythmic movement (RM) performance and neural activity pattern and to investigate whether this influence is joint angle specific. Ten males performed an exercise of 50 maximal eccentric elbow flexions in isokinetic machine with duty cycle of 1:15. Maximal dynamic and isometric force tests (90 degrees , 110 degrees and 130 degrees elbow angle) and both active and passive stretch reflex tests of elbow flexors were applied to the elbow joint. The intentional RM was performed in the horizontal plane at elbow angles; 60-120 degrees (SA-RM), 80-140 degrees (MA-RM) and 100-160 degrees (LA-RM). All measure…

AdultMaleReflex Stretchmedicine.medical_specialtyMovementElbowBiophysicsNeuroscience (miscellaneous)Isometric exerciseElectromyographyBicepsPhysical medicine and rehabilitationElbow JointmedicineEccentricHumansStretch reflexLactic AcidMuscle StrengthMuscle SkeletalCreatine Kinasemedicine.diagnostic_testbusiness.industryElectromyographyMotor controlAnatomybody regionsmedicine.anatomical_structureMuscle FatigueReflexNeurology (clinical)businessMuscle ContractionJournal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology
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The effects of muscle history on short latency stretch reflex response of soleus muscle

2003

Abstract The purpose of the present study was to investigate the combined effects of muscle history, activation and stretching velocity on short latency stretch response (SLR). Stretches (70, 120 and 200 deg s-1) were elicited to both passive and active (10–25% MVC) triceps surae muscle with constant (ISO), lengthened (LEN) or shortened (SHO) muscle length. Under the passive SHO pre-condition both SLR amplitude and reflex torque (RT) decreased where as latency increased compared with the passive ISO pre-condition. Such observations were absent in active trials. Stretches applied to a lengthening passive muscle (LEN) resulted in smaller SLR amplitude and RT compared with passive ISO. In acti…

AdultMaleReflex Stretchmedicine.medical_specialtyPhysical ExertionBiophysicsNeuroscience (miscellaneous)Triceps surae muscleInternal medicinemedicineHumansShort latencyStretch reflexLatency (engineering)Muscle SkeletalSoleus muscleElectromyographyChemistryAnatomyAdaptation PhysiologicalAmplitudeEndocrinologymedicine.anatomical_structureReflexActive muscleFemaleStress MechanicalNeurology (clinical)Muscle ContractionJournal of Electromyography and Kinesiology
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Effects of differently induced stretch loads on neuromuscular control in drop jump exercise

1996

The neuromuscular characteristics of the triceps surae and vastus lateralis muscles and interactions between the pre-activation of these muscles and the muscle output itself during ground contact were investigated during various types of stretch-shortening cycle muscle loading. The loading of the muscles was effected by using three different types of drop jump exercise. These jumps allowed separate modifications of the loading of the leg extensor muscles by changing the velocity of the centre of gravity (CG) or by changing directly the body mass, which was also affected by changing artificially the acceleration of the CG. It was found that the eccentric peak angular velocity of the ankle jo…

AdultMaleReflex Stretchmedicine.medical_specialtyPhysiologyNeuromuscular JunctionElectromyographymedicine.disease_causeGastrocnemius muscleJumpingPhysical medicine and rehabilitationPhysiology (medical)medicineEccentricHumansOrthopedics and Sports MedicineStretch reflexExercise physiologyExerciseSoleus muscleProprioceptionmedicine.diagnostic_testChemistryElectromyographyPublic Health Environmental and Occupational HealthGeneral MedicineAnatomymedicine.anatomical_structureExercise TestMuscle Contraction
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Neuromuscular changes after long-lasting mechanically and electrically elicited fatigue

2001

Central fatigue was investigated under an isolated active condition whereby the possible effects of supraspinal fatigue were minimized. Therefore, ten subjects were fatigued by simultaneously and repeatedly mechanically stretching and electrically stimulating their calf muscles for 1 h. This was performed using an ankle ergometer. The active fatigue task included a total of 2400 muscle stretches with an intensity of 10% of the maximal voluntary contraction (MVC). This protocol clearly impaired neuromuscular function, as revealed by a significant reduction in MVC (P < 0.01) and the neural input to the muscle (average EMG) (P < 0.01-0.001). The interpolated nerve stimulation compensated for t…

AdultMaleReflex Stretchmedicine.medical_specialtyPhysiologyNeuromuscular transmissionElectromyographyH-ReflexPhysiology (medical)Internal medicinemedicineHumansOrthopedics and Sports MedicineStretch reflexMuscle SkeletalMotor Neuronsmedicine.diagnostic_testElectromyographybusiness.industryPublic Health Environmental and Occupational HealthGeneral MedicineAnatomyMiddle AgedIntensity (physics)Electrophysiologymedicine.anatomical_structureTorqueMuscle FatigueReflexCardiologyAnklemedicine.symptombusinessAnkle JointMuscle ContractionMuscle contractionEuropean Journal of Applied Physiology
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Reduced stretch reflex sensitivity and muscle stiffness after long-lasting stretch-shortening cycle exercise in humans

1998

It has been suggested that during repeated long-term stretch-shortening cycle (SSC) exercise the decreased neuromuscular function may result partly from alterations in stiffness regulation. Therefore, interaction between the short latency stretch-reflex component (M1) and muscle stiffness and their influences on muscle performance were investigated before and after long lasting SSC exercise. The test protocol included various jumps on a sledge ergometer. The interpretation of the sensitivity of the reflex was based on the measurements of the patellar reflexes and the M1 reflex components. The peak muscle stiffness was measured indirectly and calculated as a coefficient of the changes in the…

AdultMaleReflex Stretchmedicine.medical_specialtyPhysiologyPhysical ExertionElectromyographyH-ReflexWeight-BearingPhysiology (medical)Internal medicinemedicineHumansOrthopedics and Sports MedicineStretch reflexMuscle SkeletalSoleus musclemedicine.diagnostic_testMuscle fatigueElectromyographybusiness.industryPublic Health Environmental and Occupational HealthGeneral MedicineAnatomyMiddle AgedMuscle stiffnessmedicine.anatomical_structureMuscle FatigueCardiologyReflexmedicine.symptomH-reflexbusinessMuscle ContractionMuscle contractionEuropean Journal of Applied Physiology
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Soleus aponeurosis strain distribution following chronic unloading in humans: an in vivo MR phase-contrast study.

2006

The in vivo strain properties of human skeletal muscle-tendon complexes are poorly understood, particularly following chronic periods of reduced load bearing. We studied eight healthy volunteers who underwent 4 wk of unilateral lower limb suspension (ULLS) to induce chronic unloading. Before and after the ULLS, maximum isometric ankle plantar flexion torque was determined by using a magnetic resonance (MR)-compatible dynamometry. Volumes of the triceps surae muscles and strain distribution of the soleus aponeurosis and the Achilles tendon at a constant submaximal plantar flexion (20% pre-maximal voluntary contraction) were measured by using MRI and velocity-encoded, phase-contrast MRI techn…

AdultMaleRestraint Physicalmedicine.medical_specialtyPhysiologyPhase contrast microscopyStrain (injury)Achilles Tendonlaw.inventionWeight-BearingAtrophyIn vivolawPhysiology (medical)Internal medicineIsometric ContractionmedicineHumansMuscle SkeletalAchilles tendonChemistryWeightlessnessAnatomySoleus aponeurosismedicine.diseaseMagnetic Resonance ImagingTendonBiomechanical PhenomenaEndocrinologymedicine.anatomical_structureHindlimb SuspensionStrain distributionSprains and StrainsFemaleMuscle ContractionJournal of applied physiology (Bethesda, Md. : 1985)
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Acute change of titin at mid-sarcomere remains despite 8 wk of plyometric training

2014

Purpose: The purpose of this study was to investigate skeletal muscle changes induced by an acute bout of plyometric exercise (PlyEx) both before and after PlyEx training, to understand if titin is affected differently after PlyEx training. Methods: Healthy untrained individuals (N=11) completed the 1stPlyEx (10x10 squat-jumps, 1min rest). Thereafter, 6 subjects completed 8 weeks of PlyEx, while 5 controls abstained from any jumping activity. Seven days after the last training session all subjects completed the 2ndPlyEx. Blood samples were collected before, 6 hours and 1, 2, 3 and 4 days after each acute bout of PlyEx, and muscle biopsies 4 days before and 3 days after each acute bout of Pl…

AdultMaleSarcomeresmedicine.medical_specialtyPhysiologyZ-disk streaming acute bouts calpain eccentric exerciseMuscle ProteinsPlyometric ExerciseSarcomerePhysiology (medical)HumansMedicinePlyometricsConnectinTissue DistributionMuscle SkeletalExercisebiologySettore BIO/16 - Anatomia UmanaCalpainbusiness.industrySkeletal musclemusculoskeletal systemAdaptation Physiologicalmedicine.anatomical_structurebiology.proteinPhysical therapyFemaleTitinPlyometric trainingAutolysisbusinessMuscle ContractionJournal of Applied Physiology
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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 &amp; Science in Sports &amp; Exercise
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Cycling exercise and the determination of electromechanical delay.

2007

The main aim of the present paper was to address the validity of a methodology proposed in a previous paper [Li L, Baum BS. Electromechanical delay estimated by using electromyography during cycling at different pedaling frequencies. J Electromyogr Kinesiol 2004;14(6):647-52], aimed at determining the electromechanical delay from pedaling exercise performed at various cadences. Twelve trained subjects undertook pedaling bouts corresponding to combinations of cadences ranging from 50 to 100 RPM and power output from 37.5% to 75% of Pmax. As cadence increased, peak torque angle was found to shift forward in crank cycle (from 60-65 degrees at 50 RPM to 75-80 degrees at 100 RPM, depending on th…

AdultMaleTime FactorsKnee JointPhysical ExertionBiophysicsNeuroscience (miscellaneous)ElectromyographyControl theoryTask Performance and AnalysismedicineTorqueMuscular forceHumansPower outputMuscle SkeletalMathematicsCrankmedicine.diagnostic_testCoactivationBicyclingTorqueExercise TestHip JointNeurology (clinical)CadenceCyclingMuscle ContractionJournal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology
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Do Stretch Durations Affect Muscle Mechanical and Neurophysiological Properties?

2016

International audience; The aim of the study was to determine whether stretching durations influence acute changes of mechanical and neurophysiological properties of plantar flexor muscles. Plantar flexors of 10 active males were stretched in passive conditions on an isokinetic dynamometer. Different durations of static stretching were tested in 5 randomly ordered experimental trials (1, 2, 3, 4 and 10×30-s). Fascicle stiffness index, evoked contractile properties and spinal excitability (Hmax/Mmax) were examined before (PRE), immediately after (POST0) and 5 min after (POST5) stretching. No stretch duration effect was recorded for any variable. Moreover, whatever the stretching duration, st…

AdultMaleTime FactorsM waveStiffness indexPhysical Therapy Sports Therapy and RehabilitationPlantar flexionStatic stretchingYoung Adult03 medical and health sciencesstiffness0302 clinical medicineMuscle Stretching Exercises[SDV.MHEP.PHY]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]medicineHumansOrthopedics and Sports MedicineH reflexMuscle Skeletalsoleusdose-responseFootChemistry[ SDV.MHEP.PHY ] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]030229 sport sciencesAnatomyNeurophysiologyFascicleTorqueIsokinetic dynamometermedicine.symptomH-reflex030217 neurology & neurosurgeryMuscle ContractionMuscle contractionBiomedical engineering
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