Duration-specific running intensities of Australian Football match-play.
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Jace A. Delaney | Grant M. Duthie | Jace A Delaney | Heidi R Thornton | Darren J Burgess | Ben J Dascombe | Grant M Duthie | G. Duthie | B. Dascombe | D. Burgess | H. Thornton | J. Delaney
[1] Clint R. Bellenger,et al. Predicting maximal aerobic speed through set distance time-trials , 2015, European Journal of Applied Physiology.
[2] Martin Buchheit,et al. Monitoring accelerations with GPS in football: time to slow down? , 2014, International journal of sports physiology and performance.
[3] Riccardo Bernardini,et al. Energy cost and metabolic power in elite soccer: a new match analysis approach. , 2010, Medicine and science in sports and exercise.
[4] Dan B Dwyer,et al. Influence of field position and phase of play on the physical demands of match-play in professional rugby league forwards. , 2014, Journal of science and medicine in sport.
[5] C. Castagna,et al. Match running performance in elite Australian Rules Football. , 2010, Journal of science and medicine in sport.
[6] J Cassirame,et al. Monitoring Locomotor Load in Soccer: Is Metabolic Power, Powerful? , 2015, International Journal of Sports Medicine.
[7] Damian Farrow,et al. Skill and Physiological Demands of Open and Closed Training Drills in Australian Football , 2008 .
[8] T. Gabbett,et al. Running-Intensity Fluctuations in Elite Rugby Sevens Performance. , 2015, International journal of sports physiology and performance.
[9] Aaron J Coutts,et al. Do physical capacity and interchange rest periods influence match exercise-intensity profile in Australian football? , 2013, International journal of sports physiology and performance.
[10] Ermanno Rampinini,et al. Metabolic power demands of rugby league match play. , 2015, International journal of sports physiology and performance.
[11] Ben Wisbey,et al. The Effect of Interchange Rotation Period and Number on Australian Football Running Performance. , 2016, Journal of strength and conditioning research.
[12] Stephen J Kelly,et al. Validity and Interunit Reliability of 10 Hz and 15 Hz GPS Units for Assessing Athlete Movement Demands , 2014, Journal of strength and conditioning research.
[13] Will G. Hopkins,et al. A spreadsheet for deriving a confidence interval, mechanistic inference and clinical inference from a P value , 2007 .
[14] Ermanno Rampinini,et al. Metabolic power and energetic costs of professional Australian Football match-play. , 2015, Journal of science and medicine in sport.
[15] R. Aughey. Australian football player work rate: evidence of fatigue and pacing? , 2010, International journal of sports physiology and performance.
[16] P. D. di Prampero,et al. Sprint running: a new energetic approach , 2005, Journal of Experimental Biology.
[17] S. Marshall,et al. Progressive statistics for studies in sports medicine and exercise science. , 2009, Medicine and science in sports and exercise.
[18] Aaron J Coutts,et al. Between match variation in professional rugby league competition. , 2014, Journal of science and medicine in sport.
[19] Georgia M. Black,et al. The effect of intense exercise periods on physical and technical performance during elite Australian Football match-play: A comparison of experienced and less experienced players. , 2016, Journal of science and medicine in sport.
[20] Robert J Aughey,et al. Applications of GPS technologies to field sports. , 2011, International journal of sports physiology and performance.
[21] Tim Gabbett,et al. Activity profiles of professional soccer, rugby league and Australian football match play , 2014, Journal of sports sciences.
[22] Jace A. Delaney,et al. Acceleration-Based Running Intensities of Professional Rugby League Match Play. , 2016, International journal of sports physiology and performance.
[23] C. Twist,et al. The Unsuitability of Energy Expenditure Derived From Microtechnology for Assessing Internal Load in Collision-Based Activities. , 2017, International journal of sports physiology and performance.
[24] Paul B Gastin,et al. Metabolic Power Method: Underestimation of Energy Expenditure in Field-Sport Movements Using a Global Positioning System Tracking System. , 2016, International journal of sports physiology and performance.
[25] Jace A. Delaney,et al. Establishing Duration-Specific Running Intensities From Match-Play Analysis in Rugby League. , 2015, International journal of sports physiology and performance.
[26] Mark Waldron,et al. Fatigue and Pacing in High-Intensity Intermittent Team Sport: An Update , 2014, Sports Medicine.
[27] Matthew C Varley,et al. Current match-analysis techniques' underestimation of intense periods of high-velocity running. , 2012, International journal of sports physiology and performance.
[28] Robert G Lockie,et al. Factors That Differentiate Acceleration Ability in Field Sport Athletes , 2011, Journal of strength and conditioning research.
[29] E. Rampinini,et al. Accuracy of GPS Devices for Measuring High-intensity Running in Field-based Team Sports , 2014, International Journal of Sports Medicine.