2025
Lower Extremity Flow Quantification Using Dynamic 82Rb PET: a Preclinical Investigation
Guo L, Thorn S, de Rubio Cruz P, Liu Z, Gallezot J, Liu Q, Moulton E, Carson R, Sinusas A, Liu C. Lower Extremity Flow Quantification Using Dynamic 82Rb PET: a Preclinical Investigation. IEEE Transactions On Radiation And Plasma Medical Sciences 2025, PP: 1-1. DOI: 10.1109/trpms.2025.3542729.Peer-Reviewed Original Research
2007
Mechanical Behaviors of Thigh Muscles During Walking and Running
Craelius W, Yungher D, Wininger M, Barr J, Threlkeld A. Mechanical Behaviors of Thigh Muscles During Walking and Running. The FASEB Journal 2007, 21: a85-a85. DOI: 10.1096/fasebj.21.5.a85.Peer-Reviewed Original ResearchIntraclass correlation coefficientThigh muscle activityMuscle electromyographic activityForce productionElectromyographic activityIsometric contractionKnee extensionMuscle activityThigh musclesEMGGait cycleActivity onsetMuscleSkin surfaceGaitForce MyographySuccessive stridesLegPeak amplitudeOnset timingAmbulationHamstringsQuadricepsMyographyDynamic activity
2003
Validity of compressive leg checking in measuring artificial leg-length inequality
Cooperstein R, Morschhauser E, Lisi A, Nick T. Validity of compressive leg checking in measuring artificial leg-length inequality. Journal Of Manipulative And Physiological Therapeutics 2003, 26: 557-566. PMID: 14673405, DOI: 10.1016/j.jmpt.2003.08.002.Peer-Reviewed Original ResearchConceptsArtificial leg-length inequalityLeg length inequalityIntraclass correlation coefficientConcordance correlation coefficientLimits of agreementTest-retest reliabilityResearch clinicBlinded examinersBland-Altman limitsSurgical bootLin's concordance correlation coefficientConfidence intervalsConcurrent validityReference standardLeg lengthCorrelation coefficientLegSubjectsSingle subjectLinear regression statisticsClinic
1997
Transcapillary escape rate of albumin in humans during exercise-induced hypervolemia
Haskell A, Nadel E, Stachenfeld N, Nagashima K, Mack G. Transcapillary escape rate of albumin in humans during exercise-induced hypervolemia. Journal Of Applied Physiology 1997, 83: 407-413. PMID: 9262434, DOI: 10.1152/jappl.1997.83.2.407.Peer-Reviewed Original ResearchConceptsCapillary filtration coefficientTranscapillary escape rateLeg musclesUpright cycle ergometer exerciseVascular spaceTranscapillary forcesInterstitial fluid hydrostatic pressureCycle ergometer exercisePlasma albumin concentrationPlasma colloid osmotic pressureExercise-induced hypervolemiaColloid osmotic pressureErgometer exerciseIntense exerciseTotal protein concentrationFluid hydrostatic pressureAlbumin concentrationTERalbMuscleFiltration coefficientExerciseActive tissuesAlbuminLegProtein concentration
1991
13C-NMR measurements of muscle glycogen during low-intensity exercise
Price T, Rothman D, Avison M, Buonamico P, Shulman R. 13C-NMR measurements of muscle glycogen during low-intensity exercise. Journal Of Applied Physiology 1991, 70: 1836-1844. PMID: 2055862, DOI: 10.1152/jappl.1991.70.4.1836.Peer-Reviewed Original ResearchConceptsLow-intensity exerciseMuscle glycogenLight exerciseProtocol 1Blood velocityHours of exerciseMaximum voluntary contractionMin of onsetExercised legNonexercised legFemoral arteryVoluntary contractionGlycogen repletionHeavy exercisePlantar flexionGastrocnemius muscleFemale subjectsGlycogen levelsGlycogen metabolismFive minutesExerciseGlycogenSubjectsMagnetic resonance spectroscopyLeg
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