Search results for "Muscle mechanics"

showing 10 items of 13 documents

Constant Power Solution of Hill’s Equation

2019

This book deals with constant power solution of Hill’s equation. This book covers key areas of muscle mechanics; muscle force; muscle power; force-velocity relationship; Hill’s equation; arm movement; leg movement etc. This book contains various materials suitable for students, researchers and academicians of this area.

Control theoryMovement (music)Muscle powerConstant powerMuscle mechanicsMathematicsMuscle force
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Effects of long-term training specificity on maximal strength and power of the upper and lower extremities in athletes from different sports

2002

Maximal concentric one repetition maximum half-squat (1RM(HS)), bench-press (1RM(BP)), power-load curves during concentric actions with loads ranging from 30% to 100% of 1RM(HS) and 1RM(BP)were examined in 70 male subjects divided into five groups: weightlifters (WL, n=11), handball players (HP, n=19), amateur road cyclists (RC, n=18), middle-distance runners (MDR, n=10) and age-matched control subjects (C, n=12). The 1RM(HS)values in WL, HP and RC were 50%, 29% and 28% greater, respectively, ( P<0.001-0.01) than those recorded for MDR and C. The half-squat average power outputs at all loads examined (from 30% to 100%) in WL and HP ( P<0.001 at 45% and 60% with HP) were higher ( P<0.05-0.00…

AdultMalePhysiologyConcentricSensitivity and SpecificityBench pressUpper ExtremityWeight-BearingAnimal sciencePhysiology (medical)One-repetition maximumTask Performance and AnalysisMaximal strengthHumansOrthopedics and Sports MedicinePower outputExercise physiologyMuscle SkeletalExerciseMathematicsPublic Health Environmental and Occupational HealthReproducibility of ResultsMuscle mechanicsGeneral MedicineLower ExtremityMuscle powerPhysical EnduranceSportsEuropean Journal of Applied Physiology
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Functional muscle architecture in aging

2014

fascicletrainingtendonvoimantuottoagingjoint stiffness regulationlihaksetultrasonographyneural controlmuscle mechanicsjänteetikääntyminenhermo-lihastoimintastretch-shortening cycleharjoitteluultraäänitutkimusbiomekaniikkaliikkuminenikääntyneet
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Alterations of mechanical characteristics of human skeletal muscle during strength training

1983

To investigate the influence of strength training on the mechanical characteristics of human skeletal muscle, 14 male subjects went through training of combined heavy concentric and eccentric contractions three times a week for 16 weeks. The strength training program consisted mainly of dynamic exercises for leg extensors with loads of 80 to 120% of one maximum repetition. The force-time curves produced during various vertical jumps were the basis for calculation of various mechanical parameters. In addition to a great increase (p less than 0.001) in maximal isometric force, heavy resistance strength training also caused significant (p less than 0.05-0.01) increases in heights and in variou…

AdultMaleMaterials sciencePhysiologyStrength trainingEccentric contractionsSquatIsometric exerciseConcentricSports MedicinePhysiology (medical)medicineHumansOrthopedics and Sports MedicineLegPhysical Education and TrainingForce levelMusclesPublic Health Environmental and Occupational HealthSkeletal muscleMuscle mechanicsGeneral MedicineAnatomyElasticityBiomechanical Phenomenamedicine.anatomical_structureBiomedical engineeringEuropean Journal of Applied Physiology and Occupational Physiology
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Hill's Equation in the Arm Push of Shot Put

2016

Aims: The purpose of this paper was to continue the previous study of arm rotation movement where A.V. Hill’s force-velocity relationship was transformed into a constant maximum power model consisting of three different components of power. Methodology: In the present study a new model of Hill’s equation was applied for accelerated motions. This theoretically derived model of further development of Hill’s force-velocity relationship was tested by fitting it into two arm push measurements of shot put experiments. The results of the further development of Hill’s equation for accelerated motions were compared with the mechanics of the constant power model of the previous study. Results: The an…

Engineeringta222Mechanical engineering02 engineering and technology01 natural sciencesarm push in shot putforce-velocity relationship0103 physical sciences010303 astronomy & astrophysicsta119muscle powerarm movementta114business.industryta111Muscle mechanicsGeneral MedicineMechanics021001 nanoscience & nanotechnologyShot putmuscle mechanicsHill’s equationMuscle power0210 nano-technologybusinessBritish Journal of Applied Science & Technology
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In vivo triceps surae and quadriceps femoris muscle function in a squat jump and counter movement jump

2000

An optic fibre method was used to measure in humans in vivo Achilles (ATF) and patellar tendon forces (PTF) during submaximal squat jumps (SJ) and counter movement jumps (CMJ). Normal two-legged jumps on a force plate and one-legged jumps on a sledge apparatus were made by four volunteers. Kinetics, kinematics, and muscle activity from seven muscles were recorded. The loading patterns of the tendomuscular system differed among the jumping conditions, but were similar when the jumping height was varied. Peak PTF were greater than ATF in each condition. In contrast to earlier simulation studies it was observed that tendomuscular force could continue to increase during the shortening of muscle…

poweroptic fibretendon forcemuscle-tendon interactionmuscle mechanics
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Modeling the force – velocity relationship in arm movement

2012

Modeling the force-velocity dependence of a muscle-tendon unit has been one of the most interesting objectives in the field of muscle mechanics. The so-called Hill’s equation [1,2] is widely used to describe the force-velocity relationship of muscle fibers. Hill’s equation was based on the laboratory measurements of muscle fibers and its application to the practical measurements in muscle mechanics has been problematic. Therefore, the purpose of this study was to develop a new explicit calculation method to determine the force-velocity relationship, and test its function in experimental measurements. The model was based on the motion analysis of arm movements. Experiments on forearm rotatio…

muscle powerarm movementmuscle mechanicsforce-velocity relationship
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Individual Region- and Muscle-specific Hamstring Activity at Different Running Speeds

2019

Introduction \ud Hamstring strain injuries typically occur in the proximal biceps femoris long head (BFlh) at high running speeds. Strain magnitude seems to be the primary determinant of strain injury, and may be regulated by muscle activation. In running, BFlh strain is largest in the proximal region, especially at high speeds. However, region-specific activity has not been examined. This study examined the proximal–distal and intermuscular activity of BFlh and semitendinosus (ST) as a function of increasing running speed.\ud \ud Methods \ud Thirteen participants ran at steady speeds of 4.1 (slow), 5.4 (moderate), and 6.8 m·s−1 (fast) on a treadmill. Region- and muscle-specific EMG activit…

AdultMalemedicine.medical_specialtybiceps femorisrasitusvammatQP301.H75_Physiology._Sport.Hamstring MusclesPhysical Therapy Sports Therapy and RehabilitationStrain (injury)ElectromyographyIsometric exerciseBiologyBicepsRunningjuoksuTendonsYoung Adult03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationstrain injuriesIsometric ContractionliikuntakykymedicineHumansOrthopedics and Sports MedicineTreadmillHamstring injurymedicine.diagnostic_testGV557_SportsElectromyographyproximal-distal differencesinjury mechanism030229 sport sciencesSwingmedicine.diseaseBiomechanical Phenomenamuscle mechanicslocomotionelektromyografiaSprains and StrainssemitendinosusbiomekaniikkaHamstring
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A theoretical approach to pneumatic muscle mechanics

2013

The mechanical response of pneumatic artificial muscles is analyzed assuming the inextensibility of the sheathing braids and taking into account the stress field inside the rubber bladder, which is regarded as a Mooney-Rivlin hyperelastic material. The end effects are simulated by heuristically profiling the meridian section. After estimating the constitutive parameters by traction tests on rubber specimens, the theoretical results are compared with experiments and a satisfactory accordance may be detected.

Materials sciencePneumatic actuatormedicine.medical_treatmentBio-robotics pneumatic air muscleMechanical engineeringMuscle mechanicsMechanicsTraction (orthopedics)Stress fieldPneumatic artificial musclesNatural rubbervisual_artHyperelastic materialBraidvisual_art.visual_art_mediummedicine2013 IEEE/ASME International Conference on Advanced Intelligent Mechatronics
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Doublet potentiation in the triceps surae is limited by series compliance and dynamic fascicle behavior.

2015

Activation of skeletal muscle twice in quick succession results in nonlinear force summation (i.e., doublet potentiation). The force contributed by a second activation is typically of augmented amplitude, longer in duration, and generated at a greater rate. The purpose of this study was to examine force summation in a muscle attached to a compliant tendon, where considerable internal shortening occurs during a fixed-end contraction. The triceps surae of 21 ( Experiment 1) and 9 ( Experiment 2) young adults were maximally activated with doublet stimulation of different interstimulus intervals (ISIs) (5-100 ms) at several muscle lengths. Ultrasound images acquired from lateral gastrocnemius …

MaleKnee JointPhysiologyStimulationIsometric exerciseElectromyographyAchilles TendonTendonsYoung AdultPhysiology (medical)Isometric ContractionmedicineHumansPeripheral Nervesta315Muscle Skeletalmuscle-tendon interactionUltrasonographyPhysicsAchilles tendonLegforce summationmedicine.diagnostic_testElectromyographyta1184Skeletal muscleAnatomyFascicleElectric Stimulationmuscle mechanicsTendonBiomechanical Phenomenamedicine.anatomical_structureTorquemuscle forceFemalemedicine.symptomMuscle contractionBiomedical engineeringComplianceMuscle ContractionJournal of applied physiology (Bethesda, Md. : 1985)
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