Schlagwörter
endurance athletes, Leistungsdiagnostik, high intensity, Feuchtmuskelmasse, PCr stores, Skelettmuskulatur, Wingate Anaerobic Test, Trainingsspezialisierung, metabolische Energie, phosphocreatine resynthesis, reliability, physiologische Variabilität, Glykolyse, Anforderungsprofil, Gesamtenergie, Beanspruchung, Reliabilität, skeletal muscles, training parameters, anaerob-laktazid, wet muscle mass, intermittierend, Stoffwechselwege, PCr-Speicher, energetic pathways, intensity increment, hochintensiv-anaerob, external load, muscle contractions, anaerobic lactic, Muskelkontraktionen, energetic demand, respiration, mitochondriale Respiration, physiological variability, intermittent, Belastungsnormative, ATP-PCr-System, energetics, Belastungs-Pausenverhältnis, Energiebreitstellungswege, Yo-Yo Intermittent Recovery Test 2, metabolic energy, Ausdauersportler, team sport, Phosphokreatin Resynthese, Energetik, aerober Energieanteil, Atmung, work rest ratio, 30s Continuous Jumping Test, Teamsport, glycolysis, PCr-LA-O2 method, kontinuierlicher Test, aerobic energy share, anaerob-alaktazid, Lokomotionsform, anaerobic alactic, energetische Anforderungen, metabolic pathways, performance diagnostics, form of locomotion, PCr-LA-O2 Methode, Intensitätssteigerung, total energy, reproducibility, energetic profiles, mitochondrial respiration, Reproduzierbarkeit, Yo-Yo Intermittent Recovery Test 1, Nachbelastungssauerstofaufnahme, Intermittent Fitness Test, inter-effort recovery ability, Intermittent Fitness Test, training specialization, continuous test, Dreikomponentenmethode, three-component method, ATP-PCr-system, Belastung