Search results for "ELECTROMYOGRAPHY"

showing 10 items of 672 documents

A comparison of the triceps surae and residual muscle moments at the ankle during cycling.

1991

The rigid linked system model and principles of inverse dynamics have been widely used to calculate residual muscle moments during various activities. EMG driven models and optimization algorithms have also been presented in the literature in efforts to estimate skeletal muscle forces and evaluate their possible contribution to the residual muscle moment. Additionally, skeletal muscle-tendon forces have been measured, directly, in both animals and humans. The purpose of this investigation was to calculate the moment produced by the triceps surae muscles and compare it to the residual muscle moment at the ankle during cycling at three power outputs (90, 180 and 270 W). Inferences were made r…

AdultMaleMovementTransducersBiomedical EngineeringBiophysicsElectromyographyAchilles TendonModels BiologicalInverse dynamicsTriceps surae musclemedicineHumansOrthopedics and Sports MedicinePhysicsAchilles tendonmedicine.diagnostic_testElectromyographyMusclesRehabilitationBiomechanicsAnatomyProstheses and ImplantsTendonBicyclingMoment (mathematics)medicine.anatomical_structureStress MechanicalAnkleAnkleAnkle JointBiomedical engineeringJournal of biomechanics
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Performance, balance and posture variations with Occlusal Splint and Taopatch® devices: a retrospettive cross-over study

2021

Background The aim of the study was to evaluate how muscular performances, balance and posture were influenced applying Occlusal Splints and Taopatch® 8 (Tao Technologies Srls, Cittadella, Padua, Italy) devices in athletes. Methods Eighteen athletes, 7 females and 11 males, with an average age of 23.8 years, were included. Two devices were used: 1) a customized soft occlusal splint to be applied to the lower ach; 2) nanotechnological devices based on carbon nanotubules and quantum dots (Taopatch®) positioned on C7 and xiphoid process. Four functional tests were performed: surface electromyography (sEMG), kinesiography, the squat jump and counter movement jump and handgrip test. The tests we…

AdultMaleMovementmedicine.medical_treatmentPosturePhysical Therapy Sports Therapy and RehabilitationElectromyographyXiphoid processOcclusal SplintsYoung Adult03 medical and health sciences0302 clinical medicineSquat jumpHand strengthmedicineHumansOrthopedics and Sports MedicineBalance (ability)OrthodonticsCross-Over StudiesHand Strengthmedicine.diagnostic_testElectromyographybusiness.industryOcclusal Splints030229 sport sciences030206 dentistryCrossover studybody regionsmedicine.anatomical_structureItalyFemaleSplint (medicine)businessThe Journal of Sports Medicine and Physical Fitness
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Interrelationships between electromyographic, mechanical, muscle structure and reflex time measurements in man.

1981

Reaction time (TRT) with its premotor (PMT) and motor time (MT) components, patellar reflex time (TRfT) with its latency (LAT) and motor time (RfMT) were studied together with isometric force production and relaxation time variables in one leg isometric knee extension. These variables were intercorrelated together with muscle biopsy variables taken from m. vastus lateralis. From these computations MT proved to demonstrate significant correlations to rate of isometric force development (RFD) (P less than 0.001), maximum force (P0) (P less than 0.001) and per cent distribution of ST fibers (P less than 0.001). It is speculated that these relationships are determined by the pattern of the moto…

AdultMaleMuscle biopsyTime Factorsmedicine.diagnostic_testPhysiologyChemistryElectromyographyMuscle RelaxationMusclesPatellar reflexAnatomyElectromyographyIsometric exerciseMuscle relaxationIsometric ContractionMotor unit recruitmentReflexReflexmedicineReaction TimeHumansmedicine.symptomMuscle contractionMuscle ContractionActa physiologica Scandinavica
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Bilateral and Unilateral Neuromuscular Function and Muscle Cross-Sectional Area in Middle-Aged and Elderly Men and Women

1996

Forty-eight healthy men (M) and women (W), divided into two different age groups, i.e., M50 yrs (range 44-57; n = 12), W50 yrs (range 43-57; n = 12), M70 yrs (range 59-75; n = 12), and W70 yrs (range 62-75; n = 12), volunteered as subjects for examination of muscle cross-sectional area (CSA), maximal voluntary forces, force-time curves, and electromyographic activity of the knee extensor muscles during bilateral and unilateral isometric contractions. The maximal bilateral knee extension force and the average CSA values in M50 were greater (p < .05) than in M70 and in W50 were greater (p < .05-.001) than those recorded for W70. The early forces in the force-time curve were greater (p < .05) …

AdultMaleMuscle tissueAgingmedicine.medical_specialtyIsometric exerciseElectromyographyKnee extensionAge groupsIsometric ContractionInternal medicineMaximal strengthmedicineHumansKneeAgedmedicine.diagnostic_testKnee extensorsElectromyographybusiness.industryMusclesAnatomyMiddle AgedMuscle Fibers Slow-Twitchmedicine.anatomical_structureMuscle Fibers Fast-TwitchCardiologyFemaleGeriatrics and GerontologyOlder peoplebusinessThe Journals of Gerontology Series A: Biological Sciences and Medical Sciences
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Hereditary motor sensory neuropathy type II with neurofilament accumulation: new finding or new disorder?

1985

Peroneal muscular atrophy is now known to be heterogeneous and to be due to various underlying genetic mechanisms. Exploring this heterogeneity further, we report on a German kinship with the clinical, genetic, and nerve conduction features of hereditary motor and sensory neuropathy type II (HMSN type II) but whose sural nerves on biopsy were found to show infrequent axonal swellings with neurofilament accumulations not previously described. The dominant inheritance and absence of kinky hair set this disorder apart from giant axonal neuropathy. There was no history of toxic exposure to industrial chemicals. We conclude that the disorder either is a new type of HMSN or is HMSN type II with p…

AdultMaleNeurofilamentAdolescentBiopsyCardiomyopathyNeural ConductionCardiovascular System03 medical and health sciences0302 clinical medicineSural NerveEvoked Potentials SomatosensoryBiopsymedicineHumansAxonHereditary Sensory and Autonomic NeuropathiesChildCytoskeleton030304 developmental biologyGiant axonal neuropathyAged0303 health sciencesmedicine.diagnostic_testbusiness.industryElectromyographyPeroneal muscular atrophyMiddle Agedmedicine.diseaseAxonsPedigreeMicroscopy ElectronMuscular Atrophymedicine.anatomical_structureNeurologyEvoked Potentials VisualFemaleNeurology (clinical)AbnormalityHereditary motor and sensory neuropathybusinessNeuroscience030217 neurology & neurosurgeryAnnals of neurology
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Spatial variability of muscle activity during human walking: The effects of different EMG normalization approaches

2015

Human leg muscles are often activated inhomogeneously, e.g. in standing. This may also occur in complex tasks like walking. Thus, bipolar surface electromyography (sEMG) may not accurately represent whole muscle activity. This study used 64-electrode high-density sEMG (HD-sEMG) to examine spatial variability of lateral gastrocnemius (LG) muscle activity during the stance phase of walking, maximal voluntary contractions (MVCs) and maximal M-waves, and determined the effects of different normalization approaches on spatial and inter-participant variability. Plantar flexion MVC, maximal electrically elicited M-waves and walking at self-selected speed were recorded in eight healthy males aged 2…

AdultMaleNormalization (statistics)EMG normalizationmedicine.medical_specialtyWalkingElectromyographyta3112Young AdultPhysical medicine and rehabilitationmedicineHumansHuman legMuscle activityMultichannel EMGMuscle Skeletalta315MathematicsLegmedicine.diagnostic_testElectromyographyGeneral NeuroscienceReproducibility of ResultsSignal Processing Computer-AssistedElectric StimulationElectromyogramData Interpretation StatisticalGait analysisPhysical therapySpatial variabilityGait analysisPeak valuehuman activitiesLateral gastrocnemiusNEUROSCIENCE
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Nociceptive masseter inhibitory reflexes evoked by laser radiant heat and electrical stimuli

1997

Electrical stimulation of the mental nerve evokes two suppression periods SP1 and SP2 in masseter muscle activity bilaterally. In order to investigate a possible nociceptive origin of the suppression periods, we compared the reflex responses evoked by electrical stimulation and by selective activation of nociceptors in hairy skin using painful infrared laser stimuli. The SP was elicited during more than 90% maximal voluntary contraction. Thresholds for detection, pain, and SP in the mental nerve area were determined by the method of limits. A suppression period was evoked by laser stimuli in nine of ten subjects bilaterally. The mean onset latency was 46.9 ms, the mean duration 58.9 ms. The…

AdultMalePain ThresholdHot TemperatureTime FactorsStimulationElectromyographyStimulus (physiology)Masseter musclemedicineHumansMolecular Biologymedicine.diagnostic_testElectromyographyMasseter MuscleChemistryLasersGeneral NeuroscienceNociceptorsMental nerveElectric StimulationNociceptionAnesthesiaReflexNociceptorFemaleNeurology (clinical)Developmental BiologyBrain Research
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Influence of Scapular Position on the Core Musculature Activation in the Prone Plank Exercise

2017

Cortell-Tormo, JM, García-Jaén, M, Chulvi-Medrano, I, Hernández-Sánchez, S, Lucas-Cuevas, ÁG, and Tortosa-Martínez, J. Influence of scapular position on the core musculature activation in the prone plank exercise. J Strength Cond Res 31(8): 2255-2262, 2017-Prone plank is a widely used exercise in core stability training. Research has shown that pelvic tilt plays an important role on the electromyographic (EMG) activation of core musculature. However, the influence of scapular position on EMG activation is currently unknown. Therefore, this study evaluated the influence of scapular position on the core muscles during a prone plank. Surface EMG of the rectus abdominis (RA), external oblique (…

AdultMalePelvic tiltmedicine.medical_specialtyBridge exerciseMovementParaspinal MusclesRectus AbdominisPhysical Therapy Sports Therapy and RehabilitationElectromyographyYoung Adult03 medical and health sciences0302 clinical medicineScapulaEducación Física y DeportivaHumansMedicineAbdominal Oblique MusclesOrthopedics and Sports MedicineSurface electromyographyExercise physiologyExerciseAbdominal MusclesCore (anatomy)Pelvic floormedicine.diagnostic_testElectromyographybusiness.industryCore stabilityAbdominal Oblique MusclesPelvic Floor030229 sport sciencesGeneral MedicineAnatomymusculoskeletal systemBiomechanical Phenomenabody regionsScapulamedicine.anatomical_structurePelvic tiltPhysical therapyCore stabilityFemalebusiness030217 neurology & neurosurgeryJournal of Strength and Conditioning Research
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Trunk muscle activation patterns and spine kinematics when using an oscillating blade: influence of different postures and blade orientations.

2009

Abstract Sanchez-Zuriaga D, Vera-Garcia FJ, Moreside JM, McGill SM. Trunk muscle activation patterns and spine kinematics when using an oscillating blade: influence of different postures and blade orientations. Objective To compare trunk muscle activation patterns and trunk kinematics when using an oscillating blade in standing and unsupported sitting postures, and with different orientations of the blade. Design A cross-sectional survey of trunk muscle activities and lumbar motion. Setting Biomechanics research laboratory. Participants Healthy men (N=13). Interventions An oscillating blade was held with 2 hands and oscillated with vertical and horizontal orientations of blade. These exerci…

AdultMalePeriodicityanimal structuresPhysical Therapy Sports Therapy and RehabilitationIsometric exerciseElectromyographyKinematicsSittingstomatognathic systemAbdomenmedicineHumansMuscle SkeletalMathematicsmedicine.diagnostic_testAngular displacementElectromyographyRehabilitationBiomechanicsAnatomyThoraxHorizontal planeTrunkSpineBiomechanical PhenomenaExercise Therapybody regionsArchives of physical medicine and rehabilitation
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Human walking along a curved path. II. Gait features and EMG patterns

2003

We recorded basic gait features and associated patterns of leg muscle activity, occurring during continuous body progression when humans walked along a curved trajectory, in order to gain insight into the nervous mechanisms underlying the control of the asymmetric movements of the two legs. The same rhythm was propagated to both legs, in spite of inner and outer strides diverging in length (P < 0.001). There was a phase lag in limb displacement between the inner and outer leg of 7% of the total cycle duration (P = 0.0001). Swing velocity was greater for outer than inner foot (P < 0.001). The duration of the stance phase diminished and increased in the outer and inner leg (P < 0.01), respect…

AdultMalePhysicsElectromyographyStance phaseMovementGeneral NeuroscienceExtremitiesWalkingAnatomySwingTrunkBiomechanical Phenomenabody regionsLeg muscleGait (human)RhythmSpace PerceptionPeroneus longusHumansMuscle activityMuscle SkeletalGaitAlgorithmsPsychomotor PerformanceEuropean Journal of Neuroscience
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