Search results for "Contract"

showing 10 items of 1719 documents

Electromechanical delay in human skeletal muscle under concentric and eccentric contractions.

1979

In contraction of skeletal muscle a delay exists between the onset of electrical activity and measurable tension. This delay in electromechanical coupling has been stated to be between 30 and 100 ms. Thus, in rapid movements it may be possible for electromyographic (EMG) activity to have terminated before force can be detected. This study was designed to determine the dependence of the EMG-tension delay upon selected initial conditions at the time of muscle activation. The right forearms of 14 subjects were passively oscillated by a motor-driven dynamometer through flexion-extension cycles of 135 deg at an angular velocity of approximately equal to 0.5 rad/s. Upon presentation of a visual s…

AdultMaleLightPhysiologyMovementBrachioradialisIsometric exerciseConcentricBicepsPhysiology (medical)medicineEccentricHumansOrthopedics and Sports MedicinePhysicsMusclesPublic Health Environmental and Occupational HealthSkeletal muscleGeneral MedicineAnatomyElectrophysiologyElectrophysiologymedicine.anatomical_structuremedicine.symptomBiomedical engineeringMuscle contractionMuscle ContractionEuropean journal of applied physiology and occupational physiology
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Muscle kinematics during isometric contraction: Development of phase contrast and spin tag techniques to study healthy and atrophied muscles

2004

Purpose To develop and compare phase-contrast (PC) and spin-tag (ST) MR imaging techniques for accurate quantification of velocity and displacement distribution in the muscle tendon complex of the lower leg during isometric contractions under in vivo conditions, in healthy subjects and subjects with atrophy. Materials and Methods Techniques were developed to acquire PC and ST dynamic images, gated to the force exerted by a subject during isometric contraction. Algorithms were optimized for correction of phase shading errors. Flow velocity quantification was validated in phantoms and ex vivo rabbit muscles. Trajectories of pixels calculated from PC images were compared with those in ST image…

AdultMaleMagnetic Resonance Imaging CineIsometric exerciseKinematicsDisplacement (vector)In vivoIsometric ContractionImage Processing Computer-AssistedmedicineAnimalsHumansRadiology Nuclear Medicine and imagingMuscle SkeletalPhysicsLegPhantoms ImagingBiomechanicsAnatomyMuscle atrophyBiomechanical PhenomenaHindlimbTendonMuscular Atrophymedicine.anatomical_structureFlow velocityFemaleRabbitsmedicine.symptomBiomedical engineeringJournal of Magnetic Resonance Imaging
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Muscle tone in different joint positions and at submaximal isometric torque levels

2007

The aim was to evaluate the tone and electric activity of the quadriceps muscle at rest and different torque levels. The second aim was to study whether thickness of soft tissues and change in the joint position would affect muscle tone. Eighteen healthy subjects participated. Computerized muscle tonometer (CMT) and surface electromyography (sEMG) measurements were performed: seated, first at rest with leg straight and then with the knee at 60 degrees . Thereafter measurements were obtained at levels of 80, 60, 40 and 20% of the maximum isometric torque at the same knee angle. Thickness of skin, subcutis and muscle was measured by ultrasound. The CMT values taken were the depth the indenter…

AdultMaleManometryPhysiologyBiomedical EngineeringBiophysicsElectromyographyTone (musical instrument)Muscle toneIsometric ContractionPhysiology (medical)medicineHumansTorqueMuscle Skeletalmedicine.diagnostic_testElectromyographybusiness.industryUltrasoundWork (physics)Soft tissueRepeatabilityAnatomyBiomechanical PhenomenaElectrophysiologyCross-Sectional Studiesmedicine.anatomical_structureData Interpretation StatisticalMuscle TonusFemaleJointsbusinessBiomedical engineeringPhysiological Measurement
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Effects of different electrical stimulation currents and phase durations on submaximal and maximum torque, efficiency, and discomfort: a randomized c…

2021

Abstract Background Neuromuscular electrical stimulation (NMES) is an important therapeutic tool for rehabilitation. However, best stimulation parameters remain to be determined. Objective To determine the influence of different electrical stimulation currents and phase durations on torque, efficiency, and discomfort. Methods Using a cross-over design, kHz frequency alternating currents (KFAC) and pulsed currents (PC) with narrow (200 µs) or wide (500 µs) phase durations were randomly applied on knee extensor muscles of healthy participants with a minimum of seven days between sessions. The NMES-evoked torque, NMES-efficiency, and discomfort (visual 0−10 cm analogue scale) were measured for…

AdultMaleMaterials scienceAdolescentPhase (waves)Physical Therapy Sports Therapy and RehabilitationStimulationElectric Stimulation TherapyQuadriceps Muscle03 medical and health sciencesYoung Adult0302 clinical medicineIsometric ContractionTorqueHumansOrthopedics and Sports MedicineKneeMuscle SkeletalOriginal ResearchCross-Over StudiesKnee extensorsRehabilitation030229 sport sciencesCrossover studyElectric StimulationIntensity (physics)Phase durationTorqueMaximum torque030217 neurology & neurosurgeryBiomedical engineeringBrazilian journal of physical therapy
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Contribution of the tendinous tissue to force enhancement during stretch–shortening cycle exercise depends on the prestretch and concentric phase int…

2005

When the prestretch intensity and concentric work are increased in stretch-shortening cycle (SSC) exercises, the utilization of the elastic energy can increase during the concentric phase. In order to further understand this process during SSC exercises, the interaction between fascicle-tendinous tissues (TT) of the vastus lateralis (VL) muscle was examined under different prestretch and rebound intensity drop jumps. Ten male subjects participated in the study. Direct VL fascicle lengths (N = 10) and in vivo patellar tendon force (N = 1) were measured together with the electromyographic (EMG) activity of VL during the trials. With increasing drop height but the same rebound height condition…

AdultMaleMaterials scienceKnee JointMovementPhysical ExertionBiophysicsNeuroscience (miscellaneous)Phase (waves)ConcentricTendonsHumansExercise physiologyMuscle SkeletalExerciseTension (physics)Work (physics)AnatomyFascicleAdaptation PhysiologicalIntensity (physics)body regionsStretch-Shortening Cycle ExerciseStress MechanicalNeurology (clinical)Muscle ContractionBiomedical engineeringJournal of Electromyography and Kinesiology
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Neomuscular fatigue to power loading using a weight-stack device fitted with or without additional rubber band resistance

2014

The addition of a rubber band (RB) to traditional weight-based resistance may be beneficial regarding the deceleration phase common during explosive power actions with light weights. This would lead to greater force and muscle activity during the latter part of the movement, but this may influence the distribution of neuromuscular fatigue. Fifteen men performed 2 knee extension power loadings (5 × 5 × 40% of 1 repetition maximum [1RM]) using a typical weight-stack device without (WS) and with the addition of a RB (WS + RB) in a crossover design. Concentric contractions were performed as fast as possible, and analyzed for torque, velocity, power, and vastus lateralis and medialis surface ele…

AdultMaleMaterials scienceKnee JointPhysical Therapy Sports Therapy and RehabilitationIsometric exerciseElectromyographyConcentricQuadriceps MuscleRoot mean squareYoung AdultIsometric ContractionmedicineHumansOrthopedics and Sports MedicineLactic AcidMuscle StrengthLead (electronics)ta315Cross-Over StudiesMuscle fatiguemedicine.diagnostic_testElectromyographyResistance TrainingGeneral MedicineAmplitudeTorqueMuscle FatigueExercise TestRange of motionBiomedical engineeringThe Journal of Strength and Conditioning Research
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Measurement of EMG activity with textile electrodes embedded into clothing.

2007

Novel textile electrodes that can be embedded into sports clothing to measure averaged rectified electromyography (EMG) have been developed for easy use in field tests and in clinical settings. The purpose of this study was to evaluate the validity, reliability and feasibility of this new product to measure averaged rectified EMG. The validity was tested by comparing the signals from bipolar textile electrodes (42 cm(2)) and traditional bipolar surface electrodes (1.32 cm(2)) during bilateral isometric knee extension exercise with two electrode locations (A: both electrodes located in the same place, B: traditional electrodes placed on the individual muscles according to SENIAM, n=10 person…

AdultMaleMaterials scienceKnee JointPhysiologyAverage rectified valueCoefficient of variationTransducersBiomedical EngineeringBiophysicsMonitoring AmbulatoryIsometric exerciseElectromyographySports MedicineSignalSensitivity and SpecificityClothingPhysiology (medical)Isometric ContractionmedicineHumansTreadmillElectrodesExerciseSimulationAnalysis of Variancemedicine.diagnostic_testElectromyographyTextilesReproducibility of ResultsRepeatabilityEquipment DesignMiddle AgedEquipment Failure AnalysisTorqueElectrodeFemaleBiomedical engineeringPhysiological measurement
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Kinetic and electromyographic analysis of single repetition constant and variable resistance leg press actions

2010

During a multi-joint leg press action, maximal force capabilities increase with increasing knee angle. In typical resistance exercises, constant resistance is used, which does not stress the neuromuscular system at large knee angles. The purpose of this study was to compare constant and variable resistance settings using a range of contraction loads and velocities. Nine healthy, untrained males performed single contractions using four different resistance settings (constant resistance, two settings that increased resistance at large knee angles and one setting that reduced resistance at large knee angles). Single contractions using 40%, 60%, and 80% of one repetition maximum with both stead…

AdultMaleMaterials scienceKnee JointVastus medialisPhysical ExertionBiophysicsNeuroscience (miscellaneous)ElectromyographyConcentricBicepsOne-repetition maximummedicineHumansMuscle Skeletalta315Leg pressmedicine.diagnostic_testElectromyographyResistance TrainingAnatomyAdaptation PhysiologicalKineticsLarge kneeNeurology (clinical)Range of motionMuscle ContractionBiomedical engineeringJournal of Electromyography and Kinesiology
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Medial gastrocnemius muscle behavior during human running and walking.

2007

Utilization of elastic energy in the tendinous tissues (TT) of the human skeletal muscle may be task dependent. The present study was designed to investigate this problem by comparing the fascicle-TT interaction of the medial gastrocnemius muscle (MG) during ground contact of running and walking. Seven subjects ran and walked with a natural cadence. Ankle and knee joint angular data were recorded by electrogoniometers for estimating the entire MG muscle-tendon unit (MTU) length, together with the ground reaction forces. The MG fascicle length was measured by using the high-speed ultrasound image scanning during movements. The results showed that in running, after the rapid early fascicle st…

AdultMaleMaterials scienceMuscle RelaxationMuscle Fibers SkeletalBiophysicsMedial gastrocnemiusWalkingKnee JointSarcomereRunningmedicineHumansOrthopedics and Sports MedicineGround reaction forceMuscle SkeletalUltrasonographyLegElectromyographyRehabilitationSkeletal muscleAnatomyFasciclemedicine.anatomical_structureAnkleCadenceMuscle ContractionGaitposture
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Neuromuscular responses to different resistance loading protocols using pneumatic and weight stack devices

2013

The purpose of this study was to examine single repetition characteristics and acute neuromuscular responses to typical hypertrophic (HL), maximal strength (MSL), and power (PL) loadings performed with two of the most common resistance modes; pneumatic and weight stack. Acute responses were assessed by measuring maximal voluntary contraction (MVC), corresponding quadriceps-EMG and resting and superimposed twitch torques. Activation level was calculated from the twitch torques. Decreases in MVC were greater during HL and MSL than during PL. During HL, resting twitch force decreased 8% (P < 0.05) more on the weight stack than on the pneumatic device. Furthermore, loading using the weight stac…

AdultMaleMaterials sciencePhysical ExertionBiophysicsNeuroscience (miscellaneous)Young AdultVoluntary contractionStack (abstract data type)Maximal strengthmedicineHumansContraction velocityTwitch forceMuscle SkeletalMuscle fatigueResistance trainingResistance TrainingTorquePhysical FitnessMuscle FatiguePhysical EnduranceNeurology (clinical)medicine.symptomMuscle ContractionBiomedical engineeringMuscle contractionJournal of Electromyography and Kinesiology
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