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Get Free AccessThere is evidence from human twin and family studies as well as mouse and rat selection experiments that there are considerable interindividual differences in the response of cardiorespiratory fitness (CRF) and other cardiometabolic traits to a given exercise programme dose. We developed this consensus statement on exercise response variability following a symposium dedicated to this topic. There is strong evidence from both animal and human studies that exercise training doses lead to variable responses. A genetic component contributes to exercise training response variability. In this consensus statement, we (1) briefly review the literature on exercise response variability and the various sources of variations in CRF response to an exercise programme, (2) introduce the key research designs and corresponding statistical models with an emphasis on randomised controlled designs with or without multiple pretests and post-tests, crossover designs and repeated measures designs, (3) discuss advantages and disadvantages of multiple methods of categorising exercise response levels—a topic that is of particular interest for personalised exercise medicine and (4) outline approaches that may identify determinants and modifiers of CRF exercise response. We also summarise gaps in knowledge and recommend future research to better understand exercise response variability.
Robert Ross, Bret H. Goodpaster, Lauren G. Koch, Mark A. Sarzynski, Wendy M. Kohrt, Neil M. Johannsen, James S. Skinner, Alex Castro, Brian A. Irving, Robert C. Noland, Lauren M. Sparks, Guillaume Spielmann, Andrew G. Day, Werner Pitsch, Will G. Hopkins, Claude Bouchard (2019). Precision exercise medicine: understanding exercise response variability. British Journal of Sports Medicine, 53(18), pp. 1141-1153, DOI: 10.1136/bjsports-2018-100328.
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Type
Article
Year
2019
Authors
16
Datasets
0
Total Files
0
Language
English
Journal
British Journal of Sports Medicine
DOI
10.1136/bjsports-2018-100328
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