Search results for "Maximum voluntary contraction"

showing 5 items of 5 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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Microvascular blood flow changes of the abductor pollicis brevi muscle during sustained static exercise

2020

ABSTRACTA practical assessment of the health of the palm muscle, abductor pollicis brevis (APB), is important for diagnosis of different conditions. Here we have developed a protocol and a probe to utilize diffuse correlation spectroscopy (DCS) to characterize microvascular blood flow changes in the APB during and after sustained isometric exercise, during and after thumb abduction at at 55% of maximum voluntary contraction (MVC). Blood flow in the APB decreased during exercise in the subjects (n=13) with high MVC (n=7) and stayed constant in the ones with low MVC (n=6) suggesting that the mechanical occlusion due to increased intramuscular pressure exceeded the vasodilation elicited by the…

medicine.medical_specialtybusiness.industryMaximum voluntary contractionVasodilationIsometric exerciseBlood flowDiffuse correlation spectroscopyThumbbody regionsmedicine.anatomical_structureInternal medicineOcclusionmedicineCardiologysense organsStatic Exercisebusiness
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Corticospinal and intracortical excitability is modulated in the knee extensors after acute strength training.

2021

The corticospinal responses to high-intensity and low-intensity strength-training of the upper limb are modulated in an intensity-dependent manner. Whether an intensity-dependent threshold occurs following acute strength training of the knee extensors (KE) remains unclear. We assessed the corticospinal responses following high-intensity (85% of maximal strength) or low-intensity (30% of maximal strength) KE strength-training with measures taken during an isometric KE task at baseline, post-5, 30 and 60-min. Twenty-eight volunteers (23 ± 3 years) were randomized to high-intensity (n = 11), low-intensity (n = 10) or to a control group (n = 7). Corticospinal responses were evoked with transcra…

medicine.medical_specialtyStrength trainingMaximum voluntary contractionmedicine.medical_treatmentPyramidal TractsPhysical Therapy Sports Therapy and RehabilitationIsometric exercisePhysical medicine and rehabilitationIsometric ContractionMaximal strengthmedicineHumansOrthopedics and Sports MedicineMuscle SkeletalKnee extensorsbusiness.industryElectromyographyMotor CortexResistance TrainingEvoked Potentials MotorTranscranial magnetic stimulationmedicine.anatomical_structureLower ExtremityUpper limbCortical inhibitionbusinessJournal of sports sciences
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Aging and strength training influence knee extensor intermuscular coherence during low- and high-force isometric contractions

2019

Aging is associated with reduced maximum force production and force steadiness during low-force tasks, but both can be improved by training. Intermuscular coherence measures coupling between two peripheral surface electromyography (EMG) signals in the frequency domain. It is thought to represent the presence of common input to alpha-motoneurons, but the functional meaning of intermuscular coherence, particularly regarding aging and training, remain unclear. This study investigated knee extensor intermuscular coherence in previously sedentary young (18–30 years) and older (67–73 years) subjects before and after a 14-week strength training intervention. YOUNG and OLDER groups performed maximu…

medicine.medical_specialtyStrength trainingPhysiologyMaximum voluntary contractionBeta-bandIsometric exerciseElectromyographyta3112lcsh:Physiology03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationalpha-motoneuronMotor controlPhysiology (medical)Piper rhythmmotor controlMedicineta315Original Research030304 developmental biologymotoriikka0303 health sciencesvoluntary contractionKnee extensorsmedicine.diagnostic_testlcsh:QP1-981business.industryreidetMotor controlBeta-BandLower-limbmusculoskeletal systembody regionsikääntyminenAlpha-motoneuronFunctional significancevoimaharjoittelupiper rhythmbusinessMaximum torqueVoluntary contraction030217 neurology & neurosurgerylower-limblihasvoimaFrontiers in Physiology
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Force Control and Motor Unit Firing Behavior Following Mental Fatigue in Young Female and Male Adults

2020

Purpose: The neuromuscular mechanisms leading to impaired motor performance in the presence of mental fatigue remain unclear. It is also unknown if mental fatigue differentially impacts motor performance in males and females. The purpose of this study was to assess the impact of mental fatigue on force production and motor unit (MU) firing behavior in males and females. Methods: Nineteen participants performed 10-s isometric dorsiflexion (DF) contractions at 20 and 50% maximum voluntary contraction (MVC) before, during, and after completing 22 min of the psychomotor vigilance task (PVT), to induce mental fatigue. The DF force and indwelling MU firing behavior of the tibialis anterior (TA) w…

medicine.medical_specialtyCognitive NeuroscienceMaximum voluntary contractionMental fatigueIsometric exerciselcsh:RC346-429050105 experimental psychologylcsh:RC321-571force steadiness03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinePhysical medicine and rehabilitationneuromuscular controlMedicine0501 psychology and cognitive sciencesYoung femalelcsh:Neurosciences. Biological psychiatry. Neuropsychiatrylcsh:Neurology. Diseases of the nervous systemOriginal Researchmotor unit firing ratebusiness.industry05 social sciencesPsychomotor vigilance taskforce controlSensory Systemsmental fatigueMotor unitMotor unit firing rateNeuromuscular controlbusinesshuman activities030217 neurology & neurosurgeryNeuroscienceFrontiers in Integrative Neuroscience
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