Search results for "Twitch force"

showing 4 items of 4 documents

Neuromuscular fatigue induced by an isotonic heavy-resistance loading protocol in knee extensors.

2009

Abstract The main aim of this study was to assess neuromuscular fatigue during a typical high-load, low-repetition loading protocol. Muscle stimulations were used to assess maximum voluntary contraction, resting single- and double-pulse twitch characteristics, and superimposed double-pulse twitch force (used to calculate voluntary activation) before and after an acute knee extension loading protocol. In our participants, who had previous resistance training experience, the mean voluntary activation level was 96.2% in an unfatigued state. Maximum voluntary contraction (−11.8%), resting double-pulse twitch force (−10.6%), and voluntary activation (−2.1%) were markedly decreased as a consequen…

AdultMalemedicine.medical_specialtyKnee JointMaximum voluntary contractionPhysical Therapy Sports Therapy and RehabilitationKnee extensionYoung AdultPhysical medicine and rehabilitationIsotonicMedicineHumansOrthopedics and Sports MedicineTwitch forceMuscle SkeletalKnee extensorsbusiness.industryResistance trainingResistance TrainingPeripheralNeuromuscular fatigueAnesthesiaMuscle FatigueExercise TestPhysical EndurancebusinessMuscle ContractionJournal of sports sciences
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Neuromuscular responses to different resistance loading protocols using pneumatic and weight stack devices

2013

The purpose of this study was to examine single repetition characteristics and acute neuromuscular responses to typical hypertrophic (HL), maximal strength (MSL), and power (PL) loadings performed with two of the most common resistance modes; pneumatic and weight stack. Acute responses were assessed by measuring maximal voluntary contraction (MVC), corresponding quadriceps-EMG and resting and superimposed twitch torques. Activation level was calculated from the twitch torques. Decreases in MVC were greater during HL and MSL than during PL. During HL, resting twitch force decreased 8% (P < 0.05) more on the weight stack than on the pneumatic device. Furthermore, loading using the weight stac…

AdultMaleMaterials sciencePhysical ExertionBiophysicsNeuroscience (miscellaneous)Young AdultVoluntary contractionStack (abstract data type)Maximal strengthmedicineHumansContraction velocityTwitch forceMuscle SkeletalMuscle fatigueResistance trainingResistance TrainingTorquePhysical FitnessMuscle FatiguePhysical EnduranceNeurology (clinical)medicine.symptomMuscle ContractionBiomedical engineeringMuscle contractionJournal of Electromyography and Kinesiology
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Neuromuscular Differences Between Endurance-Trained, Power-Trained, and Sedentary Subjects

2003

This study tested the hypothesis that neuromuscular characteristics of plantar flexor (PF) and knee extensor (KE) muscles explain differences of both performance in vertical jump and maximal voluntary isometric contraction (MVC) between endurance-trained (END, n = 9), power-trained (POW, n = 8), and sedentary subjects (SED, n = 8). Evoked twitch characteristics of PF and KE were measured. MVC, maximal voluntary activation (%VA) of KE, and performance in vertical jump were also measured. POW have higher maximal rate of twitch force development (MRFD) than SED and END for both PF (p < 0.05) and KE (p < 0.01); %VA and MVC were higher for POW and END than SED (p < 0.01). Higher performances wer…

AdultMalemedicine.medical_specialtyKnee Joint[SDV]Life Sciences [q-bio]Neuromuscular JunctionPhysical Therapy Sports Therapy and RehabilitationIsometric exercisePlantar flexionVertical jumpSquat jumpIsometric ContractionInternal medicine[SDV.MHEP.PHY]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]medicineHumansOrthopedics and Sports MedicineMaximal rateTwitch forcecomputer.programming_languageAnalysis of VariancePhysical Education and TrainingKnee extensorsElectromyographyFootbusiness.industrysedGeneral Medicinemusculoskeletal systemElectric Stimulationbody regionsCross-Sectional StudiesCardiologybusinesscomputerThe Journal of Strength and Conditioning Research
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Perimenopausal women show modulation of excitatory and inhibitory neuromuscular mechanisms.

2021

Background Menopausal transition exposes women to an early decline in muscle force and motor function. Changes in muscle quality and function, especially in lower limbs, are crucial, as they expose individuals to increased risk of falls. To elucidate some of the related neuromuscular mechanisms, we investigated cortical inhibition and peripheral muscle twitch force potentiation in women during the early and late stages of perimenopause. Methods Participants were 63 women aged 48–55 years categorized as early (EP, n = 25) or late (LP, n = 38) perimenopausal according to serum follicle-stimulating hormone (FSH) levels and menstrual diaries. EP women had an irregular menstrual cycle and FSH  2…

vaihdevuodetlcsh:Public aspects of medicinemenopauselcsh:RA1-1270follikkelia stimuloiva hormoniEvoked Potentials MotorTMS silent periodlcsh:Gynecology and obstetricsTranscranial Magnetic StimulationPerimenopauseikääntyminenhermo-lihastoimintamotor cortextwitch force potentiationHumansMotor cortexFemalefollicle-stimulating hormoneMenopauseMuscle SkeletalFollicle-stimulating hormoneTwitch force potentiationlcsh:RG1-991lihasvoimaResearch ArticleBMC women's health
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