0000000000135321

AUTHOR

Carmelo Bosco

showing 13 related works from this author

The effect of fatigue on store and re-use of elastic energy in slow and fast types of human skeletal muscle

1986

Stretch-shortening exercises are characterized by enhancement of performance when compared to the work output performed in shortening conditions. There is evidence that fast subjects are unable to re-use great amounts of elastic energy during stretch-shortening cycles performed with slow stretching speed and large stretching length. In the present study, 14 subjects possessing different fibre types in m. vastus lateralis performed vertical jumps with and without preliminary countermovement and with large angular displacement and slow stretching speed The jumping tests were executed before and immediately after fatigue induced by short intense exercises (60 s of continuous rebound jumping). …

AdultMaleWork outputMaterials scienceMuscle fatiguePhysiologyPhysical ExertionElastic energySkeletal muscleAnatomyElastic Tissuemedicine.disease_causeSarcomereStretch shortening cycleBiomechanical PhenomenaJumpingmedicine.anatomical_structuremedicineHumansmedicine.symptomMechanoreceptorsMuscle ContractionMuscle contractionBiomedical engineeringActa Physiologica Scandinavica
researchProduct

Potentiation of the mechanical behavior of the human skeletal muscle through prestretching

1979

Force-velocity and power-velocity curves in a vertical jump involving movements around several joints were derived from vertical ground reaction forces and knee angular velocities. The jumps were performed with weights from 10 to 160 kg added on the shoulders. The obtained curves from a semi-squatting static starting position resembled those reported for isolated muscles or single muscle groups. Vertical jumps were also performed in the conditions where the shortening of the leg extensors was preceded by prestretching of the active muscles either through a preparatory counter-movement or dropping down on the force-platform from the various heights ranging from 20 to 100 cm. Prestretching mo…

AdultMalePhysiologyChemistryMusclesElastic energySkeletal muscleLong-term potentiationMuscle activationAnatomyElasticityVertical jumpmedicine.anatomical_structureReflexmedicineHumansGround reaction forceMechanical energyBiomedical engineeringActa Physiologica Scandinavica
researchProduct

Influence of aging on the mechanical behavior of leg extensor muscles.

1980

Age dependence of the mechanical behavior of leg extensor muscle was investigated using vertical jumps with and without a stretch-shortening cycle on the force-platform. A total 226 subjects (113 females and 113 males) ranging in age from 4--73 years were examined. The results indicated in general that performance in males was better than that in females. This difference was reduced when body weight was taken into consideration. The peak performance of the various parameters, such as average force, height of rise of center of gravity, net impulse, and also the average power output, was reached in both sexes between the ages of 20 and 30 years. For example, the average vertical force in squa…

AdultMaleAgingAdolescentPhysiologyConcentricBiologyBody weightStretch shortening cycleSex FactorsPhysiology (medical)medicineHumansOrthopedics and Sports MedicinePower outputChildAgedOrthodonticsMusclesPublic Health Environmental and Occupational HealthGeneral MedicineAnatomyMiddle AgedElasticityVertical forceChild PreschoolReflexSquatting positionFemalemedicine.symptomMathematicsMuscle contractionMuscle ContractionEuropean journal of applied physiology and occupational physiology
researchProduct

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
researchProduct

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
researchProduct

Influence of stretch-shortening cycle on mechanical behaviour of triceps surae during hopping.

1992

Six subjects performed a first series of vertical plantar flexions and a second series of vertical rebounds, both involving muscle triceps surae exclusively. Vertical displacements, vertical forces and ankle angles were recorded during the entire work period of 60 seconds per series. In addition, expired gases were collected during the test and recovery for determination of the energy expenditure. Triceps surae was mechanically modelled with a contractile component and with an elastic component. Mechanical behaviour and work of the different muscle components were determined in both series. The net muscular efficiency calculated from the work performed by the centre of gravity was 17.5 +/- …

AdultMaleMaterials sciencePhysiologyWork (physics)BiomechanicsElastic energyBody movementMechanicsAnatomymedicine.disease_causeModels BiologicalStretch shortening cycleElasticityBiomechanical PhenomenaJumpingmedicine.anatomical_structureTriceps surae musclemedicineHumansAnkleExerciseAnkle JointLocomotionMuscle ContractionActa physiologica Scandinavica
researchProduct

Store and recoil of elastic energy in slow and fast types of human skeletal muscles.

1982

Stretch-shortening cycle refers to the mechanical condition in which store and recoil of elastic energy occur in the skeletal muscle. This leads to a greater work output when compared to a simple shortening contraction. The subjects performed vertical jumps with and without preliminary counter-movement and with small and large knee angular displacement. The results indicated that those subjects who had more fast twitch (FT) fibers benefited more from the stretching phase performed with high speed and short angular displacement. The amounts of elastic energy stored in this phase were 30 and 26 N X kgBW-1, respectively, for FT and slow twitch (ST) type subjects. The recoil of elastic energy w…

AdultMaleMaterials scienceWork outputAdolescentPhysiologyIsometric exerciseSports MedicineSarcomereModels BiologicalStretch shortening cycleRecoilCrossBridgeIsometric ContractionmedicineHumansMusclesElastic energyMechanicsAnatomyElastic TissueFemalemedicine.symptomEnergy MetabolismMuscle contractionMuscle ContractionActa physiologica Scandinavica
researchProduct

Combined effect of elastic energy and myoelectrical potentiation during stretch-shortening cycle exercise.

1982

In addition to the utilization of muscle's elastic energy enhancement of performance in exercise involving stretch-shortening cycle might be also due to simultaneous increase of myoelectrical activity. This hypothesis was tested by examining three athletes during jumping exercise on force-platform. Vertical jumps were performed with and without preliminary counter-movement, and the jumps were called counter-movement jump (CMJ) and squatting jump (SJ), respectively. In both conditions several jumps were performed also with extra loads on the shoulders (15–220% of b. wt.). Additional droppingjumps (DJ) were executed from different heights (20–100 cm). During jumping exercise myoelectrical act…

Adultmedicine.medical_specialtyPhysiologyPhysical ExertionAction PotentialsElectromyographyConcentricmedicine.disease_causeStretch shortening cycleJumpingmedicineEccentricHumansmedicine.diagnostic_testElectromyographyMusclesWork (physics)ElasticityElectrophysiologyReflexPhysical therapymedicine.symptomMathematicsMuscle contractionBiomedical engineeringMuscle ContractionActa physiologica Scandinavica
researchProduct

Adaptive response of human skeletal muscle to simulated hypergravity condition

1985

The mechanical behaviour of leg extensor muscles of five international-level athletes was evaluated during 13 months training period. Drop jumps, average mechanical power during 15 S continuous jump, and vertical jumps performed with and without extra weights were used to measure explosive power characteristics. The data recorded in vertical jumps was utilized for construction of force-velocity relationship (F-V curve). The athletes did not show improvement in any of the variables studied after 12 months of intensive systematic training programme. It was assumed that the subjects already had reached their upper limit of performance. However, after that the athletes underwent a simulated 3 w…

AdultMalemedicine.medical_specialtyHypergravityEveningPhysiologyMusclesPhysical ExertionAnatomyAdaptation PhysiologicalBiomechanical PhenomenaVertical jumpPhysical medicine and rehabilitationmedicineJumpHumansVESTConditioningmedicine.symptomGravitationMuscle ContractionMathematicsMorningMuscle contractionActa Physiologica Scandinavica
researchProduct

Prestretch potentiation of human skeletal muscle during ballistic movement

1981

The conditions associated prior to and during the transition from prestretch to shortening may have considerable influence on the final performance of muscle. In the present study male subjects of good physical condition performed vertical jumps on the force-platform with and without preliminary counter movement. In the counter movement jump (CMJ) the amplitude of the knee bending, velocity of the prestretch and the force attained at end of prestretch were the primary parameters of interest. In addition the coupling time indicating the transition from the eccentric (prestretch) phase to the concentric phase was recorded from the angular displacement and reaction force curves. In the final c…

AdultMaleMaterials sciencePhysiologyAngular displacementMovementMusclesBallistic movementAnatomyMechanicsConcentricElasticityStretch shortening cyclemedicine.anatomical_structureReactionmedicineHumansEccentricmedicine.symptomMechanical energyMuscle ContractionMuscle contractionActa Physiologica Scandinavica
researchProduct

Neuromuscular function and mechanical efficiency of human leg extensor muscles during jumping exercises

1982

The influence of prestretch amplitude on the mechanical efficiency was examined with 5 subjects, who performed 5 different series of vertical jumps, each of which differed with respect to the mechanics of the knee joint action during the prestretch (eccentric) phase of the contact on the floor. Electromyographic activity was recorded from the major extensor muscles during the entire work period of 1 min per series. In addition, expired air was collected during the test and recovery for determination of energy expenditure. Mechanical work was calculated from the vertical displacement of the body during the jumps. The results indicated that high net efficiency of 38.7% was observed in conditi…

AdultLegMaterials sciencemedicine.diagnostic_testElectromyographyPhysiologyMusclesPhysical ExertionWork (physics)Neuromuscular JunctionAnatomyElectromyographyConcentricmedicine.disease_causeElasticityStretch shortening cycleOxygen ConsumptionJumpingmedicineHumansEccentricHuman legVertical displacementBiomedical engineeringActa Physiologica Scandinavica
researchProduct

Mechanical power test and fiber composition of human leg extensor muscles.

1983

The present study was undertaken to assess the relationship between the mechanical power developed during new anaerobic power test and muscular fiber distribution. Ten track and field male athletes were used as subjects, whose muscle fiber composition (m. vastus lateralis) varied from 25 to 58 fast twitch (FT) fibers. The test consisted of measuring the flight time with a special timer during 60 s continuous jumping. A formula was derived to allow the calculation of mechanical power during a certain period of time (e.g., in the present study every 15 s during 60 s of jumping performance). The relationship between the mechanical power for the first 15 s period correlated best with fast twitc…

AdultTime FactorsPhysiologymedicine.disease_causeSports MedicineJumpingPhysiology (medical)medicineHumansOrthopedics and Sports MedicineHuman legFiberMechanical energyMathematicsLegMusclesWork (physics)Public Health Environmental and Occupational HealthSkeletal muscleGeneral MedicineAnatomyBiomechanical Phenomenamedicine.anatomical_structureFiber compositionAnaerobic exerciseBiomedical engineeringEuropean journal of applied physiology and occupational physiology
researchProduct

A simple method for measurement of mechanical power in jumping.

1983

A simple test for the measurement of mechanical power during a vertical rebound jump series has been devised. The test consists of measuring the flight time with a digital timer (+/- 0.001 s) and counting the number of jumps performed during a certain period of time (e.g., 15-60 s). Formulae for calculation of mechanical power from the measured parameters were derived. The relationship between this mechanical power and a modification of the Wingate test (r = 0.87, n = 12 males) and 60 m dash (r = 0.84, n = 12 males) were very close. The mechanical power in a 60 s jumping test demonstrated higher values (20 W X kgBW-1) than the power in a modified (60 s) Wingate test (7 W X kgBW-1) and a Mar…

ReproducibilityLegWorkSeries (mathematics)PhysiologyMusclesWork (physics)Mathematical analysisPublic Health Environmental and Occupational HealthGeneral Medicinemedicine.disease_causePower (physics)Biomechanical PhenomenaJumpingPhysiology (medical)JumpmedicineExercise TestHumansOrthopedics and Sports MedicineMechanical energyWingate testMathematicsEuropean journal of applied physiology and occupational physiology
researchProduct