Cardiorespiratory coordination reveals training-specific physiological adaptations
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[1] R. Hristovski,et al. Physiological- and performance-related effects of acute olive oil supplementation at moderate exercise intensity , 2019, Journal of the International Society of Sports Nutrition.
[2] D. Bishop,et al. Training-Induced Changes in Mitochondrial Content and Respiratory Function in Human Skeletal Muscle , 2018, Sports Medicine.
[3] T. Astorino,et al. Change in VO2max and time trial performance in response to high-intensity interval training prescribed using ventilatory threshold , 2018, European Journal of Applied Physiology.
[4] R. Ramírez-Campillo,et al. Can We Draw General Conclusions from Interval Training Studies? , 2018, Sports Medicine.
[5] K. Howells,et al. Endurance capacity and neuromuscular fatigue following high‐ vs moderate‐intensity endurance training: A randomized trial , 2017, Scandinavian journal of medicine & science in sports.
[6] J. Collett,et al. High but not moderate-intensity endurance training increases pain tolerance: a randomised trial , 2017, European Journal of Applied Physiology.
[7] R. Hristovski,et al. Cardiorespiratory Coordination in Repeated Maximal Exercise , 2017, Front. Physiol..
[8] A. Harrison,et al. HIIT enhances endurance performance and aerobic characteristics more than high-volume training in trained rowers , 2017, Journal of sports sciences.
[9] C. Lavie,et al. High-intensity intermittent training versus moderate-intensity intermittent training: is it a matter of intensity or intermittent efforts? , 2017, British Journal of Sports Medicine.
[10] R. Graham,et al. Inter-Individual Variability in the Adaptive Responses to Endurance and Sprint Interval Training: A Randomized Crossover Study , 2016, PloS one.
[11] Kang K. L. Liu,et al. Focus on the emerging new fields of network physiology and network medicine , 2016, New journal of physics.
[12] J. Zelt,et al. Incidence of nonresponse and individual patterns of response following sprint interval training. , 2016, Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme.
[13] R. Hristovski,et al. Cardiorespiratory Coordination after Training and Detraining. A Principal Component Analysis Approach , 2016, Front. Physiol..
[14] Kang K. L. Liu,et al. Network Physiology: How Organ Systems Dynamically Interact , 2015, PloS one.
[15] K Khunti,et al. The effects of high‐intensity interval training on glucose regulation and insulin resistance: a meta‐analysis , 2015, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[16] J. Coombes,et al. The Impact of High-Intensity Interval Training Versus Moderate-Intensity Continuous Training on Vascular Function: a Systematic Review and Meta-Analysis , 2015, Sports Medicine.
[17] Plamen Ch. Ivanov,et al. Three independent forms of cardio-respiratory coupling: transitions across sleep stages , 2014, Computing in Cardiology 2014.
[18] T. Astorino,et al. Individual Responses to Completion of Short-Term and Chronic Interval Training: A Retrospective Study , 2014, PloS one.
[19] D. Bishop,et al. Can we optimise the exercise training prescription to maximise improvements in mitochondria function and content? , 2014, Biochimica et biophysica acta.
[20] Andreas Voss,et al. Cardiovascular and cardiorespiratory coupling analyses: a review , 2013, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[21] Martin Buchheit,et al. High-Intensity Interval Training, Solutions to the Programming Puzzle , 2013, Sports Medicine.
[22] M. Gayda,et al. High-Intensity Aerobic Interval Exercise in Chronic Heart Failure , 2013, Current Heart Failure Reports.
[23] Mikhail Prokopenko,et al. Information and Self-Organization: A Macroscopic Approach to Complex Systems, (3rd enlarged ed.). H. Haken. (2006, Springer.) 79.95 (hardcover), 262 pages. ISBN: 978-3-540-33021-9 , 2009, Artificial Life.
[24] A. Cohen-Solal,et al. Methodological approach to the first and second lactate threshold in incremental cardiopulmonary exercise testing , 2008, European journal of cardiovascular prevention and rehabilitation : official journal of the European Society of Cardiology, Working Groups on Epidemiology & Prevention and Cardiac Rehabilitation and Exercise Physiology.
[25] Andrés Hernández,et al. Blood Lactate Measurements and Analysis during Exercise: A Guide for Clinicians , 2007, Journal of diabetes science and technology.
[26] Silke Lange,et al. A quantitative comparison of different methods to detect cardiorespiratory coordination during night-time sleep , 2004, Biomedical engineering online.
[27] T. Barstow,et al. Oxygen Uptake Kinetics in Treadmill Running and Cycle Ergometry: A Comparison. , 2000, Journal of applied physiology.
[28] Gregor Schöner,et al. The uncontrolled manifold concept: identifying control variables for a functional task , 1999, Experimental Brain Research.
[29] T. Noakes,et al. Skeletal muscle buffering capacity and endurance performance after high-intensity interval training by well-trained cyclists , 1996, European Journal of Applied Physiology and Occupational Physiology.
[30] Heng Tao Shen,et al. Principal Component Analysis , 2009, Encyclopedia of Biometrics.
[31] Remco Polman,et al. Criteria for Determination of Maximal Oxygen Uptake , 2007, Sports medicine.
[32] D. Bishop,et al. The effects of training intensity on muscle buffer capacity in females , 2005, European Journal of Applied Physiology.
[33] U Leder,et al. [Cardiorespiratory desynchronization after acute myocardial infarct]. , 2000, Zeitschrift fur Kardiologie.