Search results for "Muscle fibre"

showing 10 items of 23 documents

Age affects myosin relaxation states in skeletal muscle fibers of female but not male mice

2018

The recent discovery that myosin has two distinct states in relaxed muscle–disordered relaxed (DRX) and super-relaxed (SRX)–provides another factor to consider in our fundamental understanding of the aging mechanism in skeletal muscle, since myosin is thought to be a potential contributor to dynapenia (age-associated loss of muscle strength independent of atrophy). The primary goal of this study was to determine the effects of age on DRX and SRX states and to examine their sex specificity. We have used quantitative fluorescence microscopy of the fluorescent nucleotide analog 2′/3′-O-(N-methylanthraniloyl) ATP (mantATP) to measure single-nucleotide turnover kinetics of myosin in skinned skel…

Adenosine TriphosphataseMale0301 basic medicineAgingMuscle PhysiologyPhysiologyMuscle RelaxationATPaseMuscle Fibers Skeletallcsh:MedicineMale miceSkeletal Muscle FibersBiochemistrymyosinsMiceMyosin headContractile Proteins0302 clinical medicineAnimal Cellsskeletal muscle fibresMyosinMedicine and Health SciencesgenderLipid HormonesPost-Translational ModificationPhosphorylationlcsh:Scienceta315Musculoskeletal SystemSex Characteristics0303 health sciencesMultidisciplinaryEstradiolRelaxation (psychology)biologyChemistryMusclesanimal experimentsEnzymesmedicine.anatomical_structurePhosphorylationFemaleCellular TypesAnatomyResearch ArticleMuscle ContractionSex characteristicsmedicine.medical_specialtyMotor ProteinssukupuolierotActin MotorseläinkokeetMuscle Fibersmyosiinitsukupuoli03 medical and health sciencesAtrophyMolecular MotorsInternal medicinemedicineAnimalslihassolut030304 developmental biology030102 biochemistry & molecular biologylcsh:RPhosphatasesBiology and Life SciencesProteinsSkeletal muscleCell BiologySkeletal Muscle Fibersmedicine.diseaseHormonesCytoskeletal Proteins030104 developmental biologyEndocrinologySkeletal MusclesageEnzymologybiology.proteinlcsh:QSteady state (chemistry)ikä030217 neurology & neurosurgery
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Electromechanical behaviour of human muscles in vertical jumps

1982

The relationships of muscle structure to the potentiation of myoelectrical activity and to the use of prestretching in five lower limb muscles were studied in different vertical jumping conditions. The subjects for the study were six male students, divided according to the muscle fiber distribution in m. vastus lateralis into “fast” and “slow” groups. The subjects performed vertical jumps (1) from a static squatting position (SJ), (2) with a preliminary counter movement (CMJ) and (3) after dropping (DJ) from five different heights. Myoelectrical (EMG) activity was recorded from mm. gluteus maximus, vastus lateralis, vastus medialis, rectus femoris and gastrocnemius in each jumping condition…

AdultMaleKnee JointPhysiologyVastus medialisMovementElectromyographyConcentricSports Medicinemedicine.disease_causeJumpingPhysiology (medical)medicineHumansEccentricOrthopedics and Sports MedicineMuscle fibreLegmedicine.diagnostic_testElectromyographyChemistryMusclesTrack and FieldPublic Health Environmental and Occupational HealthGeneral MedicineAnatomymusculoskeletal systemVertical jumpingbody regionsSquatting positionMuscle ContractionEuropean Journal of Applied Physiology and Occupational Physiology
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Mechanical characteristics and fiber composition of human leg extensor muscles.

1979

To investigate the influence of skeletal muscle fiber composition on the mechanical performance of human skeletal muscle under dynamic conditions, 34 physical education students with differing muscle fiber composition (M. vastus lateralis) were used as subjects to perform maximal vertical jumps on the force-platform. Two kinds of jumps were performed: one from a static starting position (SJ), the other with a preliminary counter-movement (CMJ). The calculated mechanical parameters included height of rise of center of gravity (h), average force (F), net impulse (NI) and average mechanical power (W). It was observed that the percentage of fast twitch fibers was significantly related (p less t…

AdultMaleLegMaterials scienceFast twitch musclePhysiologyMusclesWork (physics)Public Health Environmental and Occupational HealthSkeletal muscleGeneral MedicineAnatomyImpulse (physics)Biomechanical Phenomenamedicine.anatomical_structurePhysiology (medical)medicineReaction TimeHumansOrthopedics and Sports MedicineHuman legMuscle fibreFiber compositionMechanical energyBiomedical engineeringEuropean journal of applied physiology and occupational physiology
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Interrelationships between Muscle Structure, Muscle Strength, and Running Economy

2003

The present study was designed to investigate possible differences in running economy (RE) among elite middle-distance runners by examining muscle structure and maximal isometric force (MVC).Ten young male runners ran at six different running speeds. During the running bouts, respiratory gases, and blood lactate were measured. Muscle biopsies were obtained from the vastus lateralis muscle for analyzing fiber type distribution, muscle fiber area, myosin heavy chain (MHC) composition, activities of a number of metabolic enzymes (citrate synthase, lactate dehydrogenase, phosphofruktokinase, and 3-hydroxyacyl-CoA-dehydrogenase), and titin isoforms.Energy expenditure (EE) increased linearly up t…

AdultMaleMuscle Fibers SkeletalMuscle ProteinsPhysical Therapy Sports Therapy and RehabilitationAnatomyContractile proteinStatistics NonparametricRunningOxygen ConsumptionMyosinMuscle strengthRunning economyHumansConnectinElectrophoresis Polyacrylamide GelOrthopedics and Sports MedicineMuscle fibreEnergy MetabolismMuscle SkeletalPsychologyProtein KinasesMedicine & Science in Sports & Exercise
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Aging, muscle fiber type, and contractile function in sprint-trained athletes

2006

Biopsy samples were taken from the vastus lateralis of 18- to 84-yr-old male sprinters ( n = 91). Fiber-type distribution, cross-sectional area, and myosin heavy chain (MHC) isoform content were identified using ATPase histochemistry and SDS-PAGE. Specific tension and maximum shortening velocity ( Vo) were determined in 144 single skinned fibers from younger (18–33 yr, n = 8) and older (53–77 yr, n = 9) runners. Force-time characteristics of the knee extensors were determined by using isometric contraction. The cross-sectional area of type I fibers was unchanged with age, whereas that of type II fibers was reduced ( P < 0.001). With age there was an increased MHC I ( P < 0.01) and re…

AdultMaleSenescenceAgingmedicine.medical_specialtyAdolescentPhysiologyPhysical exerciseBiologyRunningIsometric ContractionPhysiology (medical)Internal medicineMyosinBiopsymedicineHumansMuscle fibreMuscle SkeletalAgedAged 80 and overmedicine.diagnostic_testExtramuralAthletesAge FactorsAnatomyMiddle Agedbiology.organism_classificationAdaptation PhysiologicalEndocrinologySprintMuscle Fibers Fast-TwitchJournal of Applied Physiology
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EMG frequency spectrum, muscle structure, and fatigue during dynamic contractions in man

1979

Fatigue of the vastus lateralis muscle was studied in healthy well-conditioned students, who differed considerable regarding their muscle fibre type distribution. Muscle force decline during repeated maximum voluntary knee extensions at a constant angular velocity (180 degree X s-1 or rad X s-1), using isokinetic equipment, was taken as the criterion for the degree of fatigue. In an attempt to study quantitative as well as qualitative changes in the EMG pattern, integrated EMG (IEMG) and the frequency of the mean power (MPF), computed from the power spectral density function (PSDF), were analysed. It was found that individuals with muscles made up of a high proportion of fast twitch (FT) mu…

AdultMalemedicine.medical_specialtyDynamic contractionsPhysiologyVastus lateralis musclePhysical ExertionAction PotentialsElectromyographyPhysiology (medical)Internal medicinemedicineHumansOrthopedics and Sports MedicineMuscle fibreFatigueMuscle fatiguemedicine.diagnostic_testElectromyographyChemistryMusclesPublic Health Environmental and Occupational HealthGeneral MedicineAnatomyFrequency spectrumMotor unit recruitmentCardiologymedicine.symptomMuscle ContractionMuscle contractionEuropean Journal of Applied Physiology and Occupational Physiology
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Effects of fatigue on isometric force- and relaxation-time characteristics in human muscle

1981

Effects of intermittent one leg isometric fatigue on maximal isometric force, force production, relaxation and blood lactate were studied using 29 male students as subjects. The relative changes of variables during fatigue and recovery were intercorrelated together with muscle structure variables, which were determined using needle biopsy technique. Maximal force decreased, force production and relaxation became slower and muscle lactate increased during fatigue. Change of maximal force, force production and lactate during fatigue as well as recovery of maximal force and lactate after fatigue were correlated significantly to muscle fiber distribution. Fatiguability of the force-time charact…

AdultMalemedicine.medical_specialtyTime FactorsPhysiologyChemistryMuscle RelaxationMusclesRelaxation (NMR)Isometric exerciseMuscle relaxationPhysical medicine and rehabilitationHuman muscleIsometric ContractionLactatesmedicineBlood lactateHumansFatiguabilitymedicine.symptomMuscle fibreFatigueMuscle ContractionBiomedical engineeringMuscle contractionActa Physiologica Scandinavica
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Effect of explosive type strength training on isometric force- and relaxation-time, electromyographic and muscle fibre characteristics of leg extenso…

1985

Eleven male subjects (20-32 years) accustomed to strength training went through progressive, high-load strength training for 24 weeks with intensities ranging variably between 70 and 120% during each month. This training was also followed by a 12-week detraining period. An increase of 26.8% (P less than 0.001) in maximal isometric strength took place during the training. The increase in strength correlated (P less than 0.05) with significant (P less than 0.05-0.01) increases in the neural activation (IEMG) of the leg extensor muscles during the most intensive training months. During the lower-intensity training, maximum IEMG decreased (P less than 0.05). Enlargements of muscle-fibre areas, …

AdultMalemedicine.medical_specialtyTime FactorsWeight LiftingPhysiologyStrength trainingMuscle RelaxationeducationNeuromuscular JunctionIsometric exerciseElectromyographyMuscle hypertrophyPhysical medicine and rehabilitationInternal medicineIsometric ContractionmedicineHumansMuscle fibreLegPhysical Education and Trainingmedicine.diagnostic_testbusiness.industryElectromyographyMusclesSkeletal muscleMuscle relaxationmedicine.anatomical_structureCardiologymedicine.symptombusinessMuscle contractionMuscle ContractionActa physiologica Scandinavica
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Effects of strength and endurance training on muscle fibrecharacteristics in elderly women

1997

The effects of 18 weeks' intensive strength and endurance training on fibre characteristics of the vastus lateralis muscle were studied in 76- to 78-year-old women. Type I and type IIa fibres constituted over 90% of the cell population and were almost equally represented. No changes were observed in the proportions of the different fibre types. When comparing the baseline and the 18-week measurements within the groups, the strength group showed a mean increase of 34% (P = 0.028) in mean type I fibre area. The frequency histograms showed an increased proportion of larger type I fibres after strength training and a decreased proportion of smaller type IIa fibres after endurance training. In t…

Agingmedicine.medical_specialtyPhysiologyStrength trainingVastus lateralis muscleMuscle Fibers SkeletalPopulationMuscle hypertrophyAnimal scienceEndurance trainingmedicineHumansMuscle fibreeducationAgededucation.field_of_studybusiness.industryHypertrophyGeneral MedicineControl subjectsExercise TherapyMuscular AtrophyMuscle Fibers Slow-TwitchAgeingMuscle Fibers Fast-TwitchPhysical EndurancePhysical therapyFemalebusinessClinical Physiology
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Diagnostic immunohistochemistry in neuromuscular disorders.

2005

Most neuromuscular disorders display only non-specific myopathological features in routine histological preparations. However, a number of proteins, including sarcolemmal, sarcomeric, and nuclear proteins as well as enzymes with defects responsible for neuromuscular disorders, have been identified during the past two decades, allowing a more specific and firm diagnosis of muscle diseases. Identification of protein defects relies predominantly on immunohistochemical preparations and on Western blot analysis. While immunohistochemistry is very useful in identifying abnormal expression of primary protein abnormalities in recessive conditions, it is less helpful in detecting primary defects in …

Denervationmedicine.medical_specialtyPathologyHistologymedicine.diagnostic_testCell adhesion moleculeBlotting WesternMuscle Fibers SkeletalMuscle ProteinsAnatomical pathologyGeneral MedicineNeuromuscular DiseasesBiologyImmunohistochemistryPathology and Forensic MedicineBlotWestern blotmedicineImmunohistochemistryAnimalsHumansMuscle fibreNuclear proteinForecastingHistopathology
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