Search results for "Contractile properties"

showing 4 items of 4 documents

Neuromuscular electrical stimulation training induces atypical adaptations of the human skeletal muscle phenotype: a functional and proteomic analysis

2011

Import JabRef | WosArea Physiology; Sport Sciences; International audience; The aim of the present study was to define the chronic effects of neuromuscular electrical stimulation (NMES) on the neuromuscular properties of human skeletal muscle. Eight young healthy male subjects were subjected to 25 sessions of isometric NMES of the quadriceps muscle over an 8-wk period. Needle biopsies were taken from the vastus lateralis muscle before and after training. The training status, myosin heavy chain (MHC) isoform distribution, and global protein pattern, as assessed by proteomic analysis, widely varied among subjects at baseline and prompted the identification of two subgroups: an "active" (ACT) …

AdultMalemedicine.medical_specialtyPathologyProteomePhysiologyVastus lateralis muscleCHAIN ISOFORMMuscle ProteinsElectric Stimulation TherapyStimulationIsometric exerciseBiologyOBSTRUCTIVE PULMONARY-DISEASEMuscle hypertrophy03 medical and health sciences0302 clinical medicineSTRIATED-MUSCLEIsometric ContractionPhysiology (medical)Internal medicineMyosinmedicineHumansHEAT-SHOCK PROTEINSOXIDATIVE STRESSMuscle SkeletalRESISTANCE EXERCISE030304 developmental biologyCLUSTER-ANALYSISALPHA-ACTIN0303 health sciences[SCCO.NEUR]Cognitive science/Neuroscience[SCCO.NEUR] Cognitive science/NeuroscienceSkeletal muscleMYOFIBER HYPERTROPHYAdaptation PhysiologicalPhenotypeEndocrinologymedicine.anatomical_structureMotor unit recruitment[ SCCO.NEUR ] Cognitive science/NeuroscienceFIBER CONTRACTILE PROPERTIESMyofibril030217 neurology & neurosurgery
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Rats bred for low aerobic capacity become promptly fatigued and have slow metabolic recovery after stimulated, maximal muscle contractions.

2012

AIM. Muscular fatigue is a complex phenomenon affected by muscle fiber type and several metabolic and ionic changes within myocytes. Mitochondria are the main determinants of muscle oxidative capacity which is also one determinant of muscle fatigability. By measuring the concentrations of intracellular stores of high-energy phosphates it is possible to estimate the energy production efficiency and metabolic recovery of the muscle. Low intrinsic aerobic capacity is known to be associated with reduced mitochondrial function. Whether low intrinsic aerobic capacity also results in slower metabolic recovery of skeletal muscle is not known. Here we studied the influence of intrinsic aerobic capac…

Magnetic Resonance SpectroscopyAnatomy and PhysiologyPhosphocreatineEvolutionary Selectionlcsh:MedicineIsometric exerciseBreedingmetaboliset sairaudetBiochemistrychemistry.chemical_compound0302 clinical medicineTriceps surae muscleMyocyteta315lcsh:ScienceMusculoskeletal System0303 health sciencesMultidisciplinarycomplex diseaseMuscle BiochemistryAnatomyAnimal ModelsHydrogen-Ion Concentrationmedicine.anatomical_structureaerobinen kapasiteettiMuscle FatigueMuscleaerobinen suorituskykymedicine.symptomMuscle contractionMuscle ContractionResearch Articlemedicine.medical_specialtyEvolutionary ProcessessupistusominaisuudetBioenergeticsPhosphocreatinePhosphates03 medical and health sciencesModel OrganismsInternal medicinePhysical Conditioning AnimalmedicineGeneticsAnimalsskeletal muscleAdaptationBiologyAerobic capacity030304 developmental biologyEvolutionary BiologyMuscle fatiguelcsh:RSkeletal muscleElectric StimulationRatsraajalihasEndocrinologyMetabolismcontractile propertieschemistryRatlcsh:QEnergy MetabolismPhysiological ProcessesAnimal Genetics030217 neurology & neurosurgeryPLoS ONE
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Acute effects of dynamic stretching on mechanical properties result from both muscle-tendon stretching and muscle warm-up

2019

We investigated the acute effects of dynamic stretching on mechanical properties of plantar flexor muscles and tested the hypothesis that it would result from an interaction between muscle-tendon stretching and muscle warm-up. To test the stretching effect, dynamic stretching (DS) was compared to static stretching (SS). To test the warm-up effect, DS was compared to submaximal isometric muscle activity (SIMA) with similar contraction intensity. A control condition served as reference. These four conditioning activities were time matched (2×20s) and tested on separate days on 13 volunteers. Electrical neurostimulation was applied to investigate muscle mechanical properties (peak doublet torq…

AdultMale[SDV.MHEP.RSOA] Life Sciences [q-bio]/Human health and pathology/Rhumatology and musculoskeletal systemsubmaximal contractions[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyCross-Over StudiesWarm-Up Exercisemuscle stretchingpassive resistive torquefascicles extensibilityPre-exercise interventionMuscle Strength DynamometerBiomechanical PhenomenaTendonsYoung Adultcontractile propertiesTorqueMuscle Stretching ExercisesHumansMuscle SkeletalResearch ArticleUltrasonography
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Acute effects of static and dynamic stretching on the neuromuscular system

2019

Stretching is traditionally incorporated into pre-exercise routines in health, rehabilitation and sporting environments to condition the neuromuscular system for exercise. While a large body of evidence reported that stretching may acutely impair the subsequent muscular performance, some conflicting results highlight possible mitigating factors of neuromuscular responses variability. Because the limited data available do not present a clear consensus, the aim of this thesis was to investigate the effects of different factors on neuromuscular responses to stretch: the muscle group, the stretch duration and modality. By means of four studies, it has been shown that static stretching may alter…

Muscle-Tendon stiffnessRaideur musculo-TendineuseExcitabilité corticospinaleContractile propertiesPropriétés contractilesStatic stretchingCorticospinal excitabilityEtirements statiquesEtirements dynamiques[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyActivité musculaire[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Dynamic stretchingMuscle activity
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