Álvarez C., Ramírez-Campillo R., Ramírez-Vélez R., Izquierdo M. (2017) Effects of 6-weeks high-intensity interval training in schoolchildren with insulin resistance: influence of biological maturation on metabolic, body composition, cardiovascular and performance non-responses. Frontiers in Physiology 8, 444. |
Álvarez C., Ramírez Vélez R., Ramírez Campillo R., Ito S., Celis Morales C., García Hermoso A., Izquierdo M. (2018) Interindividual responses to different exercise stimuli among insulin, resistant women. Scandinavian Journal of Medicine and Science in Sports 28, 2052-2065. |
Arazi H., Keihaniyan A., Eatemady-Brooujeni A., Oftade A., Takhsha A., Asadi A., Ramirez-Campillo R. (2017) Effects of heart rate vs. speed based high intensity interval training on aerobic and anaerobic capacity of female soccer players. Sports 57, 1-8. |
Asadi A., Ramirez-Compillo R., Arazi H., Seaz de Villarreal E. (2018) The effects of maturation on jumping ability and sprint adaptations to plyometric training in youth soccer players. Journal of Sport Sciences 36, 2405-2411. |
Bayati M., Farzad B., Gharakhanlou R., Agha-Alinejad H. (2011) A practical model of low-volume high-intensity interval training induces performance and metabolic adaptations that resemble ‘all-out’ sprint interval training. Journal of Sports Science and Medicine 10, 571-576. |
Benítez-Flores S., Castro F. A. D. S., Cadore E. L., Astorino T. A. (2023) Sprint interval training attenuates neuromuscular function and vagal reactivity compared with high-intensity functional training in real-world circumstances. Journal of Strength and Conditioning Research 37, 1070-1078. |
Bernardi M., Guerra E., Rodio A., Dante D., Castellani V., Peluso I., Schena F., Bhambhani Y. (2020) Assessment of Exercise Stroke Volume and Its Prediction from Oxygen Pulse in Paralympic Athletes with Locomotor Impairments: Cardiac Long-Term Adaptations Are Possible. Frontiers in Physiology 10, 1451. |
Boullosa D., Deagutinovic B., Feuerbacher J.F., Benitez-Flores S., Coyle E.F., Schumann M. (2022) Effects of short sprint interval training on aerobic and anaerobic indices: A systematic review and meta-analysis. Scandinavian Journal of Medicine and Science in Sports 32, 810-820. |
Buchheit M., Laursen P.B. (2013) High-intensity interval training, solutions to the programming puzzle-part I. Sports Medicine 43, 313-338. |
Burgess D. J., Naughton G., Norton K. I. (2006) Profile of movement demands of national football players in Australia. Journal of Science and Medicine in Sport 9, 334-341. |
Chu, D.A. (1998) Jumping into plyometric. Human Kinetics. |
Dai L., Xie B. (2023) Adaptations to Optimized Interval Training in Soccer Players: A Comparative Analysis of Standardized Methods for Individualizing Interval Interventions. Journal of Sports Science & Medicine 22, 760-768. |
Dolci F., Hart N. H., Kilding A. E., Chivers P., Piggott B., Spiteri T. (2020) Physical and energetic demand of soccer: a brief review. Strength and Conditioning Journal 42, 70-77. |
Ducrocq G. P., Hureau T. J., Meste O., Blain G. M. (2020) Similar cardioventilatory but greater neuromuscular stimuli with interval drop jump than with interval running. International Journal of Sports Physiology and Performance 15, 330-339. |
Estes R. R., Malinowski A. M. Y., Piacentini M., Thrush D., Salley E., Losey C., Hayes E. (2017) The effect of high intensity interval run training on cross-sectional area of the vastus lateralis in untrained college students. International Journal of Exercise Science 10, 137. |
Fereshtian S., Sheykhlouvand M., Forbes S., Agha-Alinejad H., Gharaat M. (2017) Physiological and performance responses to high-intensity interval training in female inline speed skaters. Apunts. Medicina de l’Esport 52, 131-138. |
Gharaat M. A., Sheykhlouvand M., Eidi L. A. (2020) Performance and recovery: effects of caffeine on a 2000-m rowing ergometer. Sport Sciences for Health 16, 531-542. |
Hopkins W.G., Marshall S.W., Batterham A.M., Hanin J. (2009) Progressive statistics for studies in sports medicine and exercise science. Medicine and Science in Sports and Exercise 41, 3-13. |
Julian V., Thivel D., Costes F., Touron J., Pereira B., Duclos M., Richard R. (2018) Eccentric training improves body composition by inducing mechanical and metabolic adaptations: a promising approach for overweight and obese individuals. Frontiers in Physiology 9, 352104. |
Kons R. L., Orssatto L. B., Ache-Dias J., De Pauw K., Meeusen R., Trajano G. S., Detanico D. (2023) Effects of plyometric training on physical performance: An umbrella review. Sports Medicine-Open 9, 4. |
Krustrup P., Mohr M., Amstrup T., Rysgaard T., Johansen J., Steensberg A., Pedersen P., Jens B. (2003) The yo-yo intermittent recovery test: physiological response, reliability, and validity. Medicine and Science in Sports and Exercise 35, 697-705. |
Kunz P., Engel F.A., Holmberg H.S., Sperlich B. (2019) A meta-comparison of the effects of high-intensity interval training to those of small-side games and other training protocols on parameters related to the physiology and performance of youth soccer players. Sports Medicine-Open 5, 1-13. |
Langley J.G., Chetlin R.D. (2017) Test re-test reliability of four versions of the 3-cone test in non-athletic men. Journal of Sports Science and Medicine 16, 44-52. |
LaStayo P. C., Pierotti D. J., Pifer J., Hoppeler H., Lindstedt S. L. (2000) Eccentric ergometry: increases in locomotor muscle size and strength at low training intensities. American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 278, 1282-1288. |
Laursen, P.B. and Buchheit, M. (2019) Science and Application of HighIntensity Interval Training, 1st Edn, Champaign: Human Kinetics. |
Lewis E. J., Stucky F., Radonic P. W., Metherel A. H., Wolever T. M., Wells G. D. (2017) Neuromuscular adaptations to sprint interval training and the effect of mammalian omega-3 fatty acid supplementation. European Journal of Applied Physiology 117, 469-482. |
Ma D., Silva R. M., Xu Q., Wang K., Zhao Z. (2024) Jumping interval training: An effective training method for enhancing anaerobic, aerobic and jumping performance in aerobic gymnastics. Journal of Sports Science and Medicine 23, 410-417. |
Masuda K., Kikuhara N., Demura S., Katsuta S., Yamanaka K. (2005) Relationship between muscle strength in various isokinetic movements and kick performance among soccer players. Journal of Sports Medicine and Physical Fitness 45, 44-52. |
McConnell, A. (2013) Respiratory Muscle Training; Theory and Practice. 1st Edition., Champaign, IL: Elsevier. |
Meyer K., Steiner R., Lastayo P., Lippuner K., Allemann Y., Eberli F., Hoppeler H. (2003) Eccentric exercise in coronary patients: central hemodynamic and metabolic responses. Medicine and Science in Sports and Exercise 35, 1076-1082. |
Miller M.G., Herniman T.J., Ricard M.D., Cheatham C.C., Michael T.J. (2006) The effects of a 6-week plyometric training program on agility. Journal of Sport Science and Medicine 5, 459-465. |
Mohr M., Ermidis G., Jamurtas A.Z., Vigh-Larsen J.F., Poulios A., Draganidis D., Papanikolaou K., Tsimeas P., Batsilas D., Loules G., Batrakoulis A. (2023) Extended match time exacerbates fatigue and impacts physiological responses in male soccer players. Medicine and Science in Sports and Exercise 55, 80-90. |
Moran J., Blagrove R.C., Drury B., Fernandes J.F., Paxton K., Chaabane H., Ramirez-Campillo R. (2019) Effects of small-sided games vs. conventional endurance training on endurance performance in male youth soccer players: A meta-analytical comparison. Sports Medicine 49, 731-742. |
Nikolaidis M. G., Jamurtas A. Z., Paschalis V., Fatouros I. G., Koutedakis Y., Kouretas D. (2008) The effect of muscle-damaging exercise on blood and skeletal muscle oxidative stress: magnitude and time-course considerations. Sports Medicine 38, 579-606. |
Nyberg M., Fiorenza M., Lund A., Christensen M., Rømer T., Piil P., Hostrup M., Christensen P.M., Holbek S., Ravnholt T., Gunnarsson T.P. (2016) Adaptations to speed endurance training in highly trained soccer players. Medicine and Science in Sports and Exercise 48, 1355-1364. |
Penailillo L., Blazevich A., Numazawa H., Nosaka K. (2015) Rate of force development as a measure of muscle damage. Scandinavian Journal of Medicine and Science in Sports 25, 417-427. |
Ramirez-Campillo R., Alvarez C., Gentil P., Moran J., García-Pinillos F., Alonso-Martínez A. M., Izquierdo M. (2018) Inter-individual variability in responses to 7 weeks of plyometric jump training in male youth soccer players. Frontiers in Physiology 9, 1156. |
Ramirez-Campillo R., Andrade D.C., Alvarez C., Henriquez-Olguin C., Martinez C., Baez-SanMartin E., Silva-Urra J., Burgos C., Izquierdo M. (2014) The effects of interset rest on adaptation to 7 weeks of explosive training in young soccer players. Journal of Sports Science and Medicine 13, 287-296. |
Ramírez-Campillo R., Gallardo F., Henriquez-Olguín C., Meylan C. M., Martínez C., Álvarez C., Izquierdo M. (2015) Effect of vertical, horizontal, and combined plyometric training on explosive, balance, and endurance performance of young soccer players. The Journal of Strength and Conditioning Research 29, 1784-1795. |
Ramirez-Campillo R., Moran J., Oliver J.L., Pedley J.S., Lloyd R.S., Granacher U. (2022) Programming plyometric-jump training in soccer: a review. Sports 10, 94. |
Rampinini E., Bosio A., Ferraresi I., Petruolo A., Morelli A., Sassi A. (2011) Match-related fatigue in soccer players. Medicine and Science in Sports and Exercise 43, 2161-2170. |
Rasouli Mojez M., Gaeini A. A., Choobineh S., Sheykhlouvand M. (2021) Hippocampal oxidative stress induced by radiofrequency electromagnetic radiation and the neuroprotective effects of aerobic exercise in rats: a randomized control trial. Journal of Physical Activity and Health 18, 1532-1538. |
Sedano S., Matheu A., Redondo J. C., Cuadrado G. (2011) Effects of plyometric training on explosive strength, acceleration capacity and kicking speed in young elite soccer players. Journal of sports medicine and physical fitness 51, 50. |
Seitz L.B., Reyes A., Tran T.T., de Villarreal E.S., Haff G.G. (2014) Increases in lower-body strength transfer positively to sprint performance: a systematic review with meta-analysis. Sports Medicine 44, 1693-1702. |
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 31, 283-289. |
Sheykhlouvand M., Khalili E., Gharaat M., Arazi H., Khalafi M., Tarverdizadeh B. (2018a) Practical model of low-volume paddling-based sprint interval training improves aerobic and anaerobic performances in professional female canoe polo athletes. Journal of Strength and Conditioning Research 32, 2375-2382. |
Sheykhlouvand M., Gharaat M., Khalili E., Agha-Alinejad H., Rahmaninia F., Arazi H. (2018b) Low-volume high-intensity interval versus continuous endurance training: Effects on hematological and cardiorespiratory system adaptations in professional canoe polo athletes. The Journal of Strength & Conditioning Research 32, 1852-1860. |
Sheykhlouvand M., Arazi H., Astorino T.A., Suzuki K. (2022) Effects of a New Form of Resistance-Type High-Intensity Interval Training on Cardiac Structure, Hemodynamics, and Physiological and Performance Adaptations in Well-Trained Kayak Sprint Athletes. Frontiers in Physiology 13, 850768. |
Sheykhlouvand M., Gharaat M. (2024) Optimal homeostatic stress to maximize the homogeneity of adaptations to interval interventions in soccer players. Frontiers in Physiology 15. |
Song T., Deng Y. (2023) Physiological and biochemical adaptations to a sport-specific sprint interval training in male basketball athletes. Journal of Sports Science and Medicine 22, 605-613. |
Stojmenovi? D., Stojmenovi? T. (2023) Physiological parameters of professional football players in teams of various levels. Pedagogy of Physical Culture and Sports 27, 361-367. |
Stølen T., Chamari K., Castagna C., Wisløff U. (2005) Physiology of soccer: an update. Sports Medicine 35, 501-536. |
Strudwick, T. (2016) Soccer science. Champaign: Human Kinetics. |
Touron J., Costes F., Coudeyre E. (2021) Aerobic metabolic adaptations in endurance eccentric exercise and training: from whole body to mitochondria. Frontiers in Physiology 11, 596351. |
Venegas-Carro M., Herring J. T., Riehle S., Kramer A. (2023) Jumping vs. running: Effects of exercise modality on aerobic capacity and neuromuscular performance after a six-week high-intensity interval training. Plos One 18, e0281737. |
Wahl P., Güldner M., Mester J. (2014) Effects and sustainability of a 13-day high-intensity shock microcycle in soccer. Journal of Sports Science and Medicine 13, 259-265. |
Wong P. L., Chaouachi A., Chamari K., Dellal A., Wisloff U. (2010) Effect of preseason concurrent muscular strength and high-intensity interval training in professional soccer players. Journal of Strength and Conditioning Research 24, 653-660. |
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