Search results for "Oxygen uptake kinetics"

showing 2 items of 2 documents

Effect of the pacing strategy during half-duration resistance test on the mechanic, metabolic and cardio-respiratory response

2017

Objective: Changes in pacing rhythm are translated into functional and metabolic changes that can be significantly reflected in the final results of an athlete. Method: Ten male subjects, with moderate performance level (age: 25.2 ± 2.2 years; VO2max: 56.9 ± 5.7 ml kgâ1 minâ1), performed four 5-min races with different pacing strategies: constant-pace (CP), record-pace (RP), kicker-pace (KP), incremental-pace (IP). Results: The cardio-respiratory response did not show statistically significant. There were statistically significant differences (p â¤Â 0.05) in the energetic efficiency among the protocols CP vs. RP, CP vs. KP and RP vs. IP. When results were analyzed by partials (1-m…

Respuesta mecánicaResposta mecânicamedicine.medical_specialtyRespuesta cardiorespiratoriaRespuesta metabólicaResposta metabólicalcsh:Special situations and conditionslcsh:Medicine030204 cardiovascular system & hematologyResistance testOxygen uptake kineticsTest de resistencia03 medical and health sciences0302 clinical medicineTeste de resistênciaInternal medicinePhysiology (medical)medicineBlood lactateOrthopedics and Sports Medicinelcsh:Sports medicineStudentsResistance testResposta cardiorrespiratóriabusiness.industrylcsh:RC952-1245lcsh:RMetabolic responseCardiorespiratory fitness030229 sport sciencesOxygen deficitFunctional systemMechanic responseCardio-respiratory responseEstudiantesDuration (music)CardiologyEstudantesbusinesslcsh:RC1200-1245Anaerobic exerciseRevista Andaluza de Medicina del Deporte
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Oxygen uptake kinetics and energy system's contribution around maximal lactate steady state swimming intensity

2017

Made available in DSpace on 2018-11-26T17:20:55Z (GMT). No. of bitstreams: 0 Previous issue date: 2017-02-28 Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) Ministry of Education of Brazil The purpose of this study was to examine the oxygen uptake ((V) over dotO(2)) kinetics and the energy systems' contribution at 97.5, 100 and 102.5% of the maximal lactate steady state (MLSS) swimming intensity. Ten elite female swimmers performed three-to-five 30 min submaximal constant swimming bouts at imposed paces for the determination of the swimming velocity (v) at 100% MLSS based on a 7 x 200 m intermittent incremental protocol until voluntary exhaustion to find the v associated…

Time FactorsAnaerobic ThresholdPhysiologyVelocitylcsh:MedicinePathology and Laboratory MedicineOxygenBiochemistryOxygen uptake kinetics0302 clinical medicineMedicine and Health SciencesPublic and Occupational Healthlcsh:ScienceFatigueMultidisciplinaryChemistryPhysicsTime constantClassical Mechanics16. Peace & justiceSports ScienceBody FluidsChemistryvVO2maxBloodPhysical SciencesLactatesFemaleAnatomyAnaerobic exerciseResearch ArticleChemical ElementsSportsAdolescentchemistry.chemical_elementBioenergetics03 medical and health sciencesYoung AdultMotionAnimal scienceOxygen ConsumptionSigns and SymptomsDiagnostic MedicineHumansLactic AcidSports and Exercise MedicineEnergy systemExerciseSwimmingBehaviorBiological Locomotionlcsh:RBiology and Life Sciences030229 sport sciencesPhysical ActivityIntensity (physics)OxygenKineticsAthletesPhysical FitnessExercise TestPhysical EnduranceRecreationlcsh:QSteady state (chemistry)Energy Metabolism030217 neurology & neurosurgery
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