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[1] Bourdon, P. C., Cardinale, M., Murray, A., Gastin, P., Kellmann, M., Varley, M. C., … & Cable, N. T. (2017). Monitoring athlete training loads: consensus statement. International journal of sports physiology and performance, 12(s2), S2–161.BourdonP. C.CardinaleM.MurrayA.GastinP.KellmannM.VarleyM. C.CableN. T. (2017). Monitoring athlete training loads: consensus statement. International journal of sports physiology and performance, 12(s2), S2–161.Search in Google Scholar
[2] Schapschröer, M., Lemez, S., Baker, J., & Schorer, J. (2016). Physical load affects perceptual-cognitive performance of skilled athletes: a systematic review. Sports medicine-open, 2, 1–16.SchapschröerM.LemezS.BakerJ.SchorerJ. (2016). Physical load affects perceptual-cognitive performance of skilled athletes: a systematic review. Sports medicine-open, 2, 1–16.Search in Google Scholar
[3] Bashkatova, Y. V., Filatov, M. A., & Shakirova, L. S. (2020). STATE OF ATHLETES’ CARDIOVASCULAR SYSTEM UNDER PHYSICAL LOAD IN THE RUSSIAN NORTH. Ekologiya cheloveka (Human Ecology), 27(6), 41–45.BashkatovaY. V.FilatovM. A.ShakirovaL. S. (2020). STATE OF ATHLETES’ CARDIOVASCULAR SYSTEM UNDER PHYSICAL LOAD IN THE RUSSIAN NORTH. Ekologiya cheloveka (Human Ecology), 27(6), 41–45.Search in Google Scholar
[4] West, S. W., Clubb, J., Torres-Ronda, L., Howells, D., Leng, E., Vescovi, J. D., … & Windt, J. (2021). More than a metric: how training load is used in elite sport for athlete management. International journal of sports medicine, 42(04), 300–306.WestS. W.ClubbJ.Torres-RondaL.HowellsD.LengE.VescoviJ. D.WindtJ. (2021). More than a metric: how training load is used in elite sport for athlete management. International journal of sports medicine, 42(04), 300–306.Search in Google Scholar
[5] Lima-Alves, A., Claudino, J., Boullosa, D., Couto, C. R., Teixeira-Coelho, F., & Pimenta, E. M. (2022). The relationship between internal and external loads as a tool to monitor physical fitness status of team sport athletes: a systematic review. Biology of Sport, 39(3), 629–638.Lima-AlvesA.ClaudinoJ.BoullosaD.CoutoC. R.Teixeira-CoelhoF.PimentaE. M. (2022). The relationship between internal and external loads as a tool to monitor physical fitness status of team sport athletes: a systematic review. Biology of Sport, 39(3), 629–638.Search in Google Scholar
[6] Connor, M., Beato, M., & O’Neill, M. (2022). Adaptive athlete training plan generation: An intelligent control systems approach. Journal of Science and Medicine in Sport, 25(4), 351–355.ConnorM.BeatoM.O’NeillM. (2022). Adaptive athlete training plan generation: An intelligent control systems approach. Journal of Science and Medicine in Sport, 25(4), 351–355.Search in Google Scholar
[7] Menaspà, M. J., Menaspà, P., Clark, S. A., & Fanchini, M. (2018). Validity of the online athlete management system to assess training load. International journal of sports physiology and performance, 13(6), 750–754.MenaspàM. J.MenaspàP.ClarkS. A.FanchiniM. (2018). Validity of the online athlete management system to assess training load. International journal of sports physiology and performance, 13(6), 750–754.Search in Google Scholar
[8] Eckard, T. G., Padua, D. A., Hearn, D. W., Pexa, B. S., & Frank, B. S. (2018). The relationship between training load and injury in athletes: a systematic review. Sports medicine, 48, 1929–1961.EckardT. G.PaduaD. A.HearnD. W.PexaB. S.FrankB. S. (2018). The relationship between training load and injury in athletes: a systematic review. Sports medicine, 48, 1929–1961.Search in Google Scholar
[9] Impellizzeri, F. M., Menaspà, P., Coutts, A. J., Kalkhoven, J., & Menaspà, M. J. (2020). Training load and its role in injury prevention, part I: back to the future. Journal of athletic training, 55(9), 885–892.ImpellizzeriF. M.MenaspàP.CouttsA. J.KalkhovenJ.MenaspàM. J. (2020). Training load and its role in injury prevention, part I: back to the future. Journal of athletic training, 55(9), 885–892.Search in Google Scholar
[10] Akenhead, R., & Nassis, G. P. (2016). Training load and player monitoring in high-level football: current practice and perceptions. International journal of sports physiology and performance, 11(5), 587–593.AkenheadR.NassisG. P. (2016). Training load and player monitoring in high-level football: current practice and perceptions. International journal of sports physiology and performance, 11(5), 587–593.Search in Google Scholar
[11] Rago, V., Brito, J., Figueiredo, P., Costa, J., Barreira, D., Krustrup, P., & Rebelo, A. (2020). Methods to collect and interpret external training load using microtechnology incorporating GPS in professional football: a systematic review. Research in Sports Medicine, 28(3), 437–458.RagoV.BritoJ.FigueiredoP.CostaJ.BarreiraD.KrustrupP.RebeloA. (2020). Methods to collect and interpret external training load using microtechnology incorporating GPS in professional football: a systematic review. Research in Sports Medicine, 28(3), 437–458.Search in Google Scholar
[12] Teixeira, J. E., Forte, P., Ferraz, R., Leal, M., Ribeiro, J., Silva, A. J., … & Monteiro, A. M. (2021). Monitoring accumulated training and match load in football: A systematic review. International Journal of Environmental Research and Public Health, 18(8), 3906.TeixeiraJ. E.ForteP.FerrazR.LealM.RibeiroJ.SilvaA. J.MonteiroA. M. (2021). Monitoring accumulated training and match load in football: A systematic review. International Journal of Environmental Research and Public Health, 18(8), 3906.Search in Google Scholar
[13] Halson, S. L. (2014). Monitoring training load to understand fatigue in athletes. Sports medicine, 44(Suppl 2), 139–147.HalsonS. L. (2014). Monitoring training load to understand fatigue in athletes. Sports medicine, 44(suppl 2), 139–147.Search in Google Scholar
[14] Haddad, M., Stylianides, G., Djaoui, L., Dellal, A., & Chamari, K. (2017). Session-RPE method for training load monitoring: validity, ecological usefulness, and influencing factors. Frontiers in neuroscience, 11, 612.HaddadM.StylianidesG.DjaouiL.DellalA.ChamariK. (2017). Session-RPE method for training load monitoring: validity, ecological usefulness, and influencing factors. Frontiers in neuroscience, 11, 612.Search in Google Scholar
[15] Vanrenterghem, J., Nedergaard, N. J., Robinson, M. A., & Drust, B. (2017). Training load monitoring in team sports: a novel framework separating physiological and biomechanical load-adaptation pathways. Sports medicine, 47, 2135–2142.VanrenterghemJ.NedergaardN. J.RobinsonM. A.DrustB. (2017). Training load monitoring in team sports: a novel framework separating physiological and biomechanical load-adaptation pathways. Sports medicine, 47, 2135–2142.Search in Google Scholar
[16] Foster, C., Rodriguez-Marroyo, J. A., & De Koning, J. J. (2017). Monitoring training loads: the past, the present, and the future. International journal of sports physiology and performance, 12(s2), S2–2.FosterC.Rodriguez-MarroyoJ. A.De KoningJ. J. (2017). Monitoring training loads: the past, the present, and the future. International journal of sports physiology and performance, 12(s2), S2–2.Search in Google Scholar
[17] Williams, S., Trewartha, G., Cross, M. J., Kemp, S. P., & Stokes, K. A. (2017). Monitoring what matters: a systematic process for selecting training-load measures. International journal of sports physiology and performance, 12(s2), S2–101.WilliamsS.TrewarthaG.CrossM. J.KempS. P.StokesK. A. (2017). Monitoring what matters: a systematic process for selecting training-load measures. International journal of sports physiology and performance, 12(s2), S2–101.Search in Google Scholar
[18] Burgess, D. J. (2017). The research doesn’t always apply: practical solutions to evidence-based training-load monitoring in elite team sports. International journal of sports physiology and performance, 12(s2), S2–136.BurgessD. J. (2017). The research doesn’t always apply: practical solutions to evidence-based training-load monitoring in elite team sports. International journal of sports physiology and performance, 12(s2), S2–136.Search in Google Scholar
[19] Coyne, J. O., Coutts, A. J., Newton, R. U., & Haff, G. G. (2022). The current state of subjective training load monitoring: follow-up and future directions. Sports Medicine-Open, 8(1), 53.CoyneJ. O.CouttsA. J.NewtonR. U.HaffG. G. (2022). The current state of subjective training load monitoring: follow-up and future directions. Sports Medicine-Open, 8(1), 53.Search in Google Scholar
[20] Pind, R., & Mäestu, J. (2017). Monitoring training load: necessity, methods and applications. Acta Kinesiologiae Universitatis Tartuensis, 23, 7–18.PindR.MäestuJ. (2017). Monitoring training load: necessity, methods and applications. Acta Kinesiologiae Universitatis Tartuensis, 23, 7–18.Search in Google Scholar
[21] Andreas Kårström, Mikael Swarén & Glenn Björklund. (2024). Discrepancies in internal and external training load measurements during low-intensity biathlon training. Frontiers in Sports and Active Living1455900–1455900.KårströmAndreasSwarénMikaelBjörklundGlenn (2024). Discrepancies in internal and external training load measurements during low-intensity biathlon training. Frontiers in Sports and Active Living1455900–1455900.Search in Google Scholar
[22] Theodoros Tsilimigkras, Ioannis Kakkos, George K Matsopoulos & Gregory C Bogdanis. (2024). Enhancing Sports Injury Risk Assessment in Soccer Through Machine Learning and Training Load Analysis. Journal of sports science & medicine(1),537–547.TsilimigkrasTheodorosKakkosIoannisMatsopoulosGeorge KBogdanisGregory C (2024). Enhancing Sports Injury Risk Assessment in Soccer Through Machine Learning and Training Load Analysis. Journal of sports science & medicine(1),537–547.Search in Google Scholar
[23] Pierpaolo Sansone, Feng Li, Elia Confessore & Antonio Tessitore. (2024). Monitoring training load and perceived recovery indicators during the preseason and in-season phases in professional female basketball players. The Journal of sports medicine and physical fitness.SansonePierpaoloLiFengConfessoreEliaTessitoreAntonio (2024). Monitoring training load and perceived recovery indicators during the preseason and in-season phases in professional female basketball players. The Journal of sports medicine and physical fitness.Search in Google Scholar
[24] Michael A Carron, Aaron T Scanlan & Thomas M Doering. (2024). Quantifying the Training Loads and Corresponding Changes in Physical Qualities among Adolescent, Schoolboy Rugby League Players. Sports (Basel, Switzerland)(9),251–251.CarronMichael AScanlanAaron TDoeringThomas M (2024). Quantifying the Training Loads and Corresponding Changes in Physical Qualities among Adolescent, Schoolboy Rugby League Players. Sports (Basel, Switzerland)(9),251–251.Search in Google Scholar
[25] Lazaros Vardakis, Marianthi Koutsokosta, Yiannis Michailidis, Charalambos Zelenitsas, Panagiotis Topalidis & Thomas I. Metaxas. (2024). Correlation between Perceived Exertion, Wellness Scores, and Training Load in Professional Football across Microcycle Durations. Applied Sciences(15),6767–6767.VardakisLazarosKoutsokostaMarianthiMichailidisYiannisZelenitsasCharalambosTopalidisPanagiotisMetaxasThomas I. (2024). Correlation between Perceived Exertion, Wellness Scores, and Training Load in Professional Football across Microcycle Durations. Applied Sciences(15),6767–6767.Search in Google Scholar