Fatigue and Pacing in High-Intensity Intermittent Team Sport: An Update
暂无分享,去创建一个
[1] T. Noakes,et al. Previous experience influences pacing during 20 km time trial cycling , 2009, British Journal of Sports Medicine.
[2] John P. Porcari,et al. Regulation of Pacing Strategy during Athletic Competition , 2011, PloS one.
[3] T D Noakes,et al. Complex systems model of fatigue: integrative homoeostatic control of peripheral physiological systems during exercise in humans , 2004, British Journal of Sports Medicine.
[4] A. St. Clair Gibson,et al. Pacing strategy in schoolchildren differs with age and cognitive development. , 2012, Medicine and science in sports and exercise.
[5] Joanne Lampen,et al. Pattern of energy expenditure during simulated competition. , 2003, Medicine and science in sports and exercise.
[6] A. Coutts,et al. Hearth rate, blood lactate concetration and estimated energy expediture in a semi-profesional rugby league team during a match: case study , 2003, Journal of sports sciences.
[7] M F Bobbert,et al. Determination of optimal pacing strategy in track cycling with an energy flow model. , 1999, Journal of science and medicine in sport.
[8] T D Noakes,et al. Evidence for complex system integration and dynamic neural regulation of skeletal muscle recruitment during exercise in humans , 2004, British Journal of Sports Medicine.
[9] Michael E. Mann,et al. Influence of moderate dehydration on soccer performance: physiological responses to 45 min of outdoor match-play and the immediate subsequent performance of sport-specific and mental concentration tests , 2007, British Journal of Sports Medicine.
[10] K I Norton,et al. Profile of movement demands of national football players in Australia. , 2006, Journal of science and medicine in sport.
[11] T D Noakes,et al. Exercising with reserve: exercise regulation by perceived exertion in relation to duration of exercise and knowledge of endpoint , 2009, British Journal of Sports Medicine.
[12] H. Ulmer,et al. Concept of an extracellular regulation of muscular metabolic rate during heavy exercise in humans by psychophysiological feedback , 1996, Experientia.
[13] P. Shek,et al. The Impact of heat exposure and repeated exercise on circulating stress hormones , 1997, European Journal of Applied Physiology and Occupational Physiology.
[14] Tim J. Gabbett,et al. Match Intensity and Pacing Strategies in Rugby League: An Examination of Whole-Game and Interchanged Players, and Winning and Losing Teams , 2014, Journal of strength and conditioning research.
[15] Ross Tucker,et al. The Role of Information Processing Between the Brain and Peripheral Physiological Systems in Pacing and Perception of Effort , 2006, Sports medicine.
[16] T. Reilly. A motion analysis of work-rate in different positional roles in professional football match-play , 1976 .
[17] Mark Waldron,et al. Preliminary evidence of transient fatigue and pacing during interchanges in rugby league. , 2013, International journal of sports physiology and performance.
[18] T. Housh,et al. Is fatigue all in your head? A critical review of the central governor model , 2006, British Journal of Sports Medicine.
[19] F. Jensen,et al. Influence of body temperature on the development of fatigue during prolonged exercise in the heat. , 1999, Journal of applied physiology.
[20] Paul S. Bradley,et al. Evaluation of the Most Intense High-Intensity Running Period in English FA Premier League Soccer Matches , 2013, Journal of strength and conditioning research.
[21] T D Noakes,et al. Experimental evaluation of the power balance model of speed skating. , 2005, Journal of applied physiology.
[22] G Sjøgaard,et al. Dynamics and consequences of potassium shifts in skeletal muscle and heart during exercise. , 2000, Physiological reviews.
[23] J. Danoff,et al. Energy cost and heart rate response to static and dynamic leg exercise. , 1982, Archives of physical medicine and rehabilitation.
[24] D. Bishop,et al. Effects of induced metabolic alkalosis on prolonged intermittent-sprint performance. , 2005, Medicine and science in sports and exercise.
[25] M. Price,et al. The Effect of Sodium Bicarbonate Ingestion on High-Intensity Intermittent Running and Subsequent Performance , 2010, Journal of strength and conditioning research.
[26] Asker E Jeukendrup,et al. Oral carbohydrate sensing and exercise performance , 2010, Current opinion in clinical nutrition and metabolic care.
[27] Brian S Green,et al. Physical game demands in elite rugby union: a global positioning system analysis and possible implications for rehabilitation. , 2011, The Journal of orthopaedic and sports physical therapy.
[28] G. Wright,et al. The Effect of β-Alanine Supplementation on Power Performance During Repeated Sprint Activity , 2010, Journal of strength and conditioning research.
[29] T D Noakes,et al. Effect of anticipation during unknown or unexpected exercise duration on rating of perceived exertion, affect, and physiological function , 2005, British Journal of Sports Medicine.
[30] Timothy D Noakes,et al. Match running performance fluctuations in elite soccer: Indicative of fatigue, pacing or situational influences? , 2013, Journal of sports sciences.
[31] A. St. Clair Gibson,et al. Even between-lap pacing despite high within-lap variation during mountain biking. , 2012, International journal of sports physiology and performance.
[32] F. Billaut,et al. Repeated‐sprint performance and vastus lateralis oxygenation: Effect of limited O2 availability , 2013, Scandinavian journal of medicine & science in sports.
[33] Franco M Impellizzeri,et al. Use of RPE-based training load in soccer. , 2004, Medicine and science in sports and exercise.
[34] T. Noakes,et al. The rate of increase in rating of perceived exertion predicts the duration of exercise to fatigue at a fixed power output in different environmental conditions , 2008, European Journal of Applied Physiology.
[35] M. Spencer,et al. Repeated high-intensity running and sprinting in elite women's soccer competition. , 2013, International journal of sports physiology and performance.
[36] R. Meeusen,et al. The brain and fatigue: New opportunities for nutritional interventions? , 2006, Journal of sports sciences.
[37] L. Nybo,et al. Effect of two different intense training regimens on skeletal muscle ion transport proteins and fatigue development. , 2007, American journal of physiology. Regulatory, integrative and comparative physiology.
[38] M. U. Deutsch,et al. Time – motion analysis of professional rugby union players during match-play , 2007, Journal of sports sciences.
[39] José González-Alonso,et al. Reductions in Systemic and Skeletal Muscle Blood Flow and Oxygen Delivery Limit Maximal Aerobic Capacity in Humans , 2003, Circulation.
[40] Peter Krustrup,et al. The yo-yo intermittent recovery test: physiological response, reliability, and validity. , 2003, Medicine and science in sports and exercise.
[41] T. Noakes. The Central Governor Model in 2012: eight new papers deepen our understanding of the regulation of human exercise performance , 2011, British Journal of Sports Medicine.
[42] Matthew C Varley,et al. Lower running performance and exacerbated fatigue in soccer played at 1600 m. , 2014, International journal of sports physiology and performance.
[43] J. Brewer,et al. Applied Physiology of Female Soccer Players , 1993, Sports medicine.
[44] 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.
[45] Ian M Franks,et al. Sport competition as a dynamical self-organizing system , 2002, Journal of sports sciences.
[46] R. Duffield,et al. Effects of pre-cooling procedures on intermittent-sprint exercise performance in warm conditions , 2007, European Journal of Applied Physiology.
[47] Steven Laureys,et al. Posterior cingulate, precuneal and retrosplenial cortices: cytology and components of the neural network correlates of consciousness. , 2005, Progress in brain research.
[48] G. Trewartha,et al. The physical demands of elite English rugby union , 2008, Journal of sports sciences.
[49] J. Bangsbo,et al. Activity profile of competition soccer. , 1991, Canadian journal of sport sciences = Journal canadien des sciences du sport.
[50] B Drust,et al. Analysis of High Intensity Activity in Premier League Soccer , 2009, International journal of sports medicine.
[51] P. Krustrup,et al. High-intensity running in English FA Premier League soccer matches , 2009, Journal of sports sciences.
[52] P. Krustrup,et al. Muscle and blood metabolites during a soccer game: implications for sprint performance. , 2006, Medicine and science in sports and exercise.
[53] Stafford Murray,et al. The movement characteristics of English Premiership rugby union players , 2013, Journal of sports sciences.
[54] N. Vøllestad,et al. Biochemical correlates of fatigue. A brief review. , 1988, European journal of applied physiology and occupational physiology.
[55] P. Krustrup,et al. Potassium kinetics in human muscle interstitium during repeated intense exercise in relation to fatigue , 2004, Pflügers Archiv.
[56] P. Krustrup,et al. Physical and metabolic demands of training and match-play in the elite football player , 2006, Journal of sports sciences.
[57] P. Krustrup,et al. The Copenhagen Soccer Test: physiological response and fatigue development. , 2012, Medicine and science in sports and exercise.
[58] Lars Nybo,et al. CNS fatigue and prolonged exercise: effect of glucose supplementation. , 2003, Medicine and science in sports and exercise.
[59] C. Adreani,et al. Discharge properties of group III and IV muscle afferents. , 2002, Advances in experimental medicine and biology.
[60] B. Saltin,et al. Metabolic fundamentals in exercise. , 1973, Medicine and science in sports.
[61] Thomas B Walker,et al. ENERGY EXPENDITURE DURING BENCH PRESS AND SQUAT EXERCISES , 2007, Journal of strength and conditioning research.
[62] R. Aughey. Widening margin in activity profile between elite and sub-elite Australian football: a case study. , 2013, Journal of science and medicine in sport.
[63] Esa Peltola,et al. Application of four different football match analysis systems: A comparative study , 2010, Journal of sports sciences.
[64] Chris R Abbiss,et al. Describing and Understanding Pacing Strategies during Athletic Competition , 2008, Sports medicine.
[65] N. Vøllestad,et al. Biochemical correlates of fatigue , 1988, European Journal of Applied Physiology and Occupational Physiology.
[66] Mark Waldron,et al. The reliability of a rugby league movement-simulation protocol designed to replicate the performance of interchanged players. , 2013, International journal of sports physiology and performance.
[67] Tim J Gabbett,et al. Influence of training and match intensity on injuries in rugby league , 2004, Journal of sports sciences.
[68] P. Krustrup,et al. Fatigue in soccer: A brief review , 2005, Journal of sports sciences.
[69] C. Castagna,et al. Variation in top level soccer match performance. , 2007, International journal of sports medicine.
[70] T. Noakes,et al. From catastrophe to complexity: a novel model of integrative central neural regulation of effort and fatigue during exercise in humans: summary and conclusions , 2005, British Journal of Sports Medicine.
[71] D. Lovell,et al. Creatine Kinase and Endocrine Responses of Elite Players Pre, During, and Post Rugby League Match Play , 2010, Journal of strength and conditioning research.
[72] Aaron J Coutts,et al. A comparison of match demands between elite and semi-elite rugby league competition , 2009, Journal of sports sciences.
[73] M. Amann. Central and peripheral fatigue: interaction during cycling exercise in humans. , 2011, Medicine and science in sports and exercise.
[74] Kevin G Thompson,et al. Diminutions of acceleration and deceleration output during professional football match play. , 2013, Journal of science and medicine in sport.
[75] V. Di Salvo,et al. Performance Characteristics According to Playing Position in Elite Soccer , 2006, International journal of sports medicine.
[76] P. Bradley,et al. High-Intensity Activity Profiles of Elite Soccer Players at Different Performance Levels , 2010, Journal of strength and conditioning research.
[77] G. Trewartha,et al. The influence of playing level on the biomechanical demands experienced by rugby union forwards during machine scrummaging , 2013, Scandinavian journal of medicine & science in sports.
[78] A. Coutts,et al. Core Temperature Responses and Match Running Performance During Intermittent-Sprint Exercise Competition in Warm Conditions , 2009, Journal of strength and conditioning research.
[79] T. Noakes,et al. Dehydration , 2009, Sports medicine.
[80] Aaron J Coutts,et al. Match-related fatigue reduces physical and technical performance during elite rugby league match-play: a case study , 2013, Journal of sports sciences.
[81] Barry Drust,et al. Intensities of exercise during match-play in FA Premier League referees and players , 2011, Journal of sports sciences.
[82] R. Meeusen,et al. Amino acids and the brain: do they play a role in "central fatigue"? , 2007, International journal of sport nutrition and exercise metabolism.
[83] P. Krustrup,et al. Dietary nitrate supplementation improves team sport-specific intense intermittent exercise performance , 2013, European Journal of Applied Physiology.
[84] C. Castagna,et al. Match running performance in elite Australian Rules Football. , 2010, Journal of science and medicine in sport.
[85] Tim J Gabbett,et al. Influence of playing standard on the physical demands of professional rugby league , 2013, Journal of sports sciences.
[86] R. Aughey. Australian football player work rate: evidence of fatigue and pacing? , 2010, International journal of sports physiology and performance.
[87] Alan St Clair Gibson,et al. Neural Control of Force Output During Maximal and Submaximal Exercise , 2001, Sports medicine.
[88] Robert J Aughey,et al. Increased high-intensity activity in elite Australian football finals matches. , 2011, International journal of sports physiology and performance.
[89] L. Nybo,et al. Hyperthermia and central fatigue during prolonged exercise in humans. , 2001, Journal of applied physiology.
[90] J Dvorak,et al. Concussion sans frontières , 2009, British Journal of Sports Medicine.
[91] Ross Tucker,et al. Impaired exercise performance in the heat is associated with an anticipatory reduction in skeletal muscle recruitment , 2004, Pflügers Archiv.
[92] J. Bangsbo,et al. Caffeine intake improves intense intermittent exercise performance and reduces muscle interstitial potassium accumulation. , 2011, Journal of applied physiology.
[93] Romuald Lepers,et al. Alterations of Neuromuscular Function After Prolonged Running, Cycling and Skiing Exercises , 2004, Sports medicine.
[94] Bruce Davies,et al. An Evaluation of the Physiological Demands of Elite Rugby Union Using Global Positioning System Tracking Software , 2009, Journal of strength and conditioning research.
[95] Tim Gabbett,et al. Activity profiles of professional soccer, rugby league and Australian football match play , 2014, Journal of sports sciences.
[96] L. Nybo,et al. Muscle temperature and sprint performance during soccer matches – beneficial effect of re‐warm‐up at half‐time , 2004, Scandinavian journal of medicine & science in sports.
[97] Alan St Clair Gibson,et al. The Influence of Sensory Cues on the Perception of Exertion During Exercise and Central Regulation of Exercise Performance , 2001, Sports medicine.
[98] T. Noakes,et al. Linear relationship between the perception of effort and the duration of constant load exercise that remains. , 2004, Journal of applied physiology.
[99] K. Mileva,et al. Acute physiological and performance responses to repeated sprints in varying degrees of hypoxia. , 2014, Journal of science and medicine in sport.
[100] B. Saltin,et al. Lactate and H+ effluxes from human skeletal muscles during intense, dynamic exercise. , 1993, The Journal of physiology.
[101] D. Newham,et al. Changes in force and intracellular metabolites during fatigue of human skeletal muscle. , 1989, The Journal of physiology.
[102] J J De Koning,et al. Optimal pacing strategy: from theoretical modelling to reality in 1500-m speed skating , 2009, British Journal of Sports Medicine.
[103] C. Twist,et al. Changes in locomotive rates during senior elite rugby league matches , 2011, Journal of sports sciences.
[104] Damien Austin,et al. The physical demands of Super 14 rugby union. , 2011, Journal of science and medicine in sport.
[105] M. McKenna,et al. Greater chance of high core temperatures with modified pacing strategy during team sport in the heat. , 2014, Journal of science and medicine in sport.
[106] Jaime Sampaio,et al. The effects of situational variables on distance covered at various speeds in elite soccer , 2010 .
[107] T. Noakes,et al. Perceptual cues in the regulation of exercise performance – physical sensations of exercise and awareness of effort interact as separate cues , 2011, British Journal of Sports Medicine.
[108] Christopher Carling,et al. Work-rate of substitutes in elite soccer: a preliminary study. , 2010, Journal of science and medicine in sport.
[109] G. Trewartha,et al. Effects of carbohydrate and caffeine ingestion on performance during a rugby union simulation protocol , 2010, Journal of sports sciences.
[110] P. Reaburn,et al. Heart rate, blood lactate and kinematic data of elite colts (under-19) rugby union players during competition. , 1998, Journal of sports sciences.
[111] Aaron J Coutts,et al. A comparison of methods used for quantifying internal training load in women soccer players. , 2008, International journal of sports physiology and performance.
[112] Eva Blomstrand,et al. A role for branched-chain amino acids in reducing central fatigue. , 2006, The Journal of nutrition.
[113] Ben Wisbey,et al. Quantifying movement demands of AFL football using GPS tracking. , 2010, Journal of science and medicine in sport.
[114] M. Schrager,et al. Effect of pacing strategy on cycle time trial performance. , 1993, Medicine and science in sports and exercise.
[115] T D Noakes,et al. Logical limitations to the “catastrophe” models of fatigue during exercise in humans , 2004, British Journal of Sports Medicine.
[116] L. Nybo,et al. Physiological Responses and Physical Performance during Football in the Heat , 2012, PloS one.
[117] Ermanno Rampinini,et al. Match-related fatigue in soccer players. , 2011, Medicine and science in sports and exercise.
[118] G. Trewartha,et al. The Bath University Rugby Shuttle Test (BURST): a pilot study. , 2010, International journal of sports physiology and performance.
[119] Håkan Westerblad,et al. Muscle fatigue: lactic acid or inorganic phosphate the major cause? , 2002, News in physiological sciences : an international journal of physiology produced jointly by the International Union of Physiological Sciences and the American Physiological Society.
[120] P. Krustrup,et al. Match performance of high-standard soccer players with special reference to development of fatigue , 2003, Journal of sports sciences.
[121] Ross Tucker,et al. An analysis of pacing strategies during men's world-record performances in track athletics. , 2006, International journal of sports physiology and performance.
[122] S. Gandevia. Spinal and supraspinal factors in human muscle fatigue. , 2001, Physiological reviews.
[123] Dan J Stein,et al. Brain activity and perceived exertion during cycling exercise: an fMRI study , 2013, British Journal of Sports Medicine.
[124] Nancy N. Thompson,et al. Pacing Strategy and Athletic Performance , 1994, Sports medicine.
[125] A. Pearce,et al. Physiological responses of elite junior Australian rules footballers during match-play. , 2009, Journal of sports science & medicine.
[126] M. Waldron,et al. Movement and physiological match demands of elite rugby league using portable global positioning systems , 2011, Journal of sports sciences.
[127] Ross Tucker,et al. The rate of heat storage mediates an anticipatory reduction in exercise intensity during cycling at a fixed rating of perceived exertion , 2006, The Journal of physiology.
[128] D A McLean,et al. Analysis of the physical demands of international rugby union. , 1992, Journal of sports sciences.
[129] C. Sale,et al. Effect of sodium bicarbonate and Beta-alanine on repeated sprints during intermittent exercise performed in hypoxia. , 2014, International journal of sport nutrition and exercise metabolism.
[130] Stéphane Perrey,et al. Muscle deoxygenation and neural drive to the muscle during repeated sprint cycling. , 2007, Medicine and science in sports and exercise.
[131] T D Noakes,et al. Non-random fluctuations in power output during self-paced exercise , 2006, British Journal of Sports Medicine.
[132] G. Brooks. Lactate: link between glycolytic and oxidative metabolism. , 2007, Sports medicine.
[133] Julien Piscione,et al. A new approach to quantifying physical demand in rugby union , 2014, Journal of sports sciences.
[134] E. Nakano,et al. Peptide Glutamine Supplementation for Tolerance of Intermittent Exercise in Soccer Players , 2008, Clinics.
[135] Carlo Castagna,et al. Reduction in physical match performance at the start of the second half in elite soccer. , 2011, International journal of sports physiology and performance.
[136] M. Spencer,et al. Epinephrine inhibits insulin-mediated glycogenesis but enhances glycolysis in human skeletal muscle. , 1991, The American journal of physiology.
[137] François Billaut,et al. Influence of cerebral and muscle oxygenation on repeated-sprint ability , 2010, European Journal of Applied Physiology.
[138] C. Twist,et al. Carbohydrate-protein coingestion improves multiple-sprint running performance , 2013, Journal of sports sciences.