Prediction of Aerobic and Anaerobic Capacity From Selected Oxidative Stress Parameters, Muscle Damage Indices and Inflammatory Markers in Soccer and Hockey Players
Manna I., Khanna K.L., Dhara P.C. (2016). Effect of training on body composition, physiological and biochemical variables of field hockey players. Advances in Applied Physiology 1(2), 31-37. DOI: 10.11648/j.aap.20160102.13Ouvrir le DOISearch in Google Scholar
Dey S.K., Jana S., Bandopadhyay A. (2015). Effect of training on various anthropometric and physiological profiles of Indian national women soccer players. European Journal of Sports ---amp--- Exercise Science 4(1), 1-9.Search in Google Scholar
Sarkar S., Chatterjee S., Dey S.K. (2019). Effect of 8 weeks high intensity interval training on maximum oxygen uptake capacity and related cardio-respiratory parameters at anaerobic threshold level of Indian male field hockey players. European Journal of Physical Education and Sport Science 5, 106-16, DOI: 10.46827/ejpe.v0i0.2279Ouvrir le DOISearch in Google Scholar
Bogdanis G.C., Stavrinou P., Fatouros I.G., Philippou A., Chatzinikolaou A., Dragnidis D. et al. (2013). Short-term high-intensity interval exercise training attenuates oxidative stress response and improves antioxidant status in healthy humans. Food and Chemical Toxicology 61, 171-7. DOI: 10.1016/j.fct.2013.05.046Ouvrir le DOISearch in Google Scholar
De Araujo G.G., Papoti M., dos Reis I.G.M., de Mello M.A.R., Gobatto C.A. (2016). Short- and long-term effects of high--intensity interval training on hormones, metabolites, antioxidant system, glycogen concentration and aerobic performance adaptations in rats. Frontiers in Physiology 7, 505. DOI: 10.3389/fphys.2016.00505Ouvrir le DOISearch in Google Scholar
Thirupathi A., Wang M., Lin J.K., Fekete G., István B. et al. (2021). Effect of different exercise modalities on oxidative stress: A systematic review. BioMed Research International, 947928; 1-10. DOI: 10.1155/2021/1947928Ouvrir le DOISearch in Google Scholar
Brown E.C., Hew-Butler T., Marks C.R.C., Butcher S.J., Choi M.D. (2018). The impact of different high-intensity interval training protocols on body composition and physical fitness in healthy young adult females. Biores Open Access 7(1), 177-185. DOI: 10.1089/biores.2018.0032Ouvrir le DOISearch in Google Scholar
Sarkar S., Debnath M., Das M., Bandyopadhyay A., Dey S.K., Datta G. (2021). Effect of high intensity interval training on antioxidant status, inflammatory response and muscle damage indices in endurance team game players. Apunts Sports Medicine 56, 1-11. DOI: 10.1016/j.apunsm.2021.100352Ouvrir le DOISearch in Google Scholar
Callegari G.A., Novaes J.S., Neto G.R., Dias I., Garrido N.D., Dani C. (2017). Creatine kinase and lactate dehydrogenase responses after different resistance and aerobic exercise protocols. Journal of Human Kinetics 58(1), 65-72. DOI: 10.1515/hukin-2017-0071Ouvrir le DOISearch in Google Scholar
Dokumaci B., Akdogan E., Cerrah A.O., Cakir-Atabek H. (2018). Relationship between oxidative stress indices and aerobic/anaerobic capacity in U17 soccer players. Fresenius Environmental Bulletin 27(4), 2449-55.Search in Google Scholar
Sarkar S., Chatterjee S., Dey S.K. (2019). Effect of 8 weeks high intensity interval training on maximum oxygen uptake capacity and related cardio-respiratory parameters at anaerobic threshold level of Indian male field hockey players. European Journal of Physical Education and Sport Science 5, 106-16, DOI: 10.5281/zenodo.821824.Ouvrir le DOISearch in Google Scholar
Brozek J., Grande F., Anderson J.T., Keys A. (1963). Densito-metric analysis of body composition: revision of some quantitative assumptions. Annals of the New York Academy of Sciences 110, 113-40.Search in Google Scholar
Kuyumcu F., Aycan A. (2018). Evaluation of oxidative stress levels and antioxidant enzyme activities in burst fractures. Medical Science Monitor 24, 225-34, DOI: 10.12659/MSM.908312Ouvrir le DOISearch in Google Scholar
Santos Silva Lopes J., Monteiro de Magalhães Neto A., Oliveira Goncalves L.C., Lourenco Alves P.R., Castilho de Almeida A., Marlise Balbinotti Andrade C. (2019). Kinetics of muscle damage biomarkers at moments subsequent to a fight in Brazilian Jiu-Jitsu practice by disabled athletes. Frontiers in Physiology 10, 1055. DOI: 10.3389/fphys.2019.01055Ouvrir le DOISearch in Google Scholar
Watts N.B., Tindall G.T. (1988). Rapid assessment of corticotrophin reserve after pituitary surgery. Journal of American Medical Association 259(5), 708-712. DOI: 10.1001/jama.1988.03720050044021Ouvrir le DOISearch in Google Scholar
Sarir H., Emdadifard G., Farhangfar H., Taheri Chadorne-shin H. (2015). Effect of vitamin E succinate on inflammatory cytokines induced by high-intensity interval training. Journal of Research in Medical Sciences 20, 1177-81. DOI: 10.4103/1735-1995.172986Ouvrir le DOISearch in Google Scholar
Sheykhlouvand M., Gharaat M., Khalili E., Agha-Alinejad H. (2016). The effect of high-intensity interval training on ventilatory threshold and aerobic power in well-trained canoe polo athletes. Science and Sports 1-7. DOI: 10.1016/j.scispo.2016.02.007.Ouvrir le DOISearch in Google Scholar
Draper N., Whyte G. (1997). Here’s a new running-based test of anaerobic performance for which you need only a stopwatch and a calculator. Peak Performance 97, 3-5.Search in Google Scholar
Baygutalp F., Buzdagli Y., Ozan M., Koz M., Baygutalp N.K., Atasever G. (2021). Impacts of different intensities of exercise on inflammation and hypoxia markers in low altitude. BMC Sports Science, Medicine and Rehabilitation 13, 145. DOI: 10.1186/s13102-021-00375-0Ouvrir le DOISearch in Google Scholar
Rosa T.S., Neves R.V.P., Deus L.A., Sousa C.V., da Silva Aguiar S., de Souza M.K. et al. (2020). Sprint and endurance training in relation to redox balance, inflammatory status and biomarkers of aging in master athletes. Nitric Oxide 102, 42-51. DOI: 10.1016/j.niox.2020.05.004Ouvrir le DOISearch in Google Scholar