Systematic review of sprint training on acceleration and maximum speed in soccer players
), Ikhwanul Arifan(2), (1) Universitas Negeri Padang 
(2) Universitas Negeri Padang 
Corresponding Author
DOI : https://doi.org/10.32698/03172
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References
Alonso-Callejo, A., García-Unanue, J., Guitart-Trench, M., Majano, C., Gallardo, L., & Felipe, J. L. (2024). Validity and Reliability of the Acceleration-Speed Profile for Assessing Running Kinematics' Variables Derived from the Force-Velocity Profile in Professional Soccer Players. Journal of Strength and Conditioning Research, 38(3), 563–570. https://doi.org/10.1519/JSC.0000000000004637
Aquino, R., Gonçalves, L. G., Galgaro, M., Maria, T. S., Rostaiser, E., Pastor, A., Nobari, H., Garcia, G. R., Moraes-Neto, M. V., & Nakamura, F. Y. (2021). Match running performance in Brazilian professional soccer players: comparisons between successful and unsuccessful teams. BMC Sports Science, Medicine and Rehabilitation, 13(1), Article 93. https://doi.org/10.1186/s13102-021-00324-x
Baena-Raya, A., Robles-Ruiz, J., Pérez-Castilla, A., Pareja-Blanco, F., & Rodrguez-Pérez, M. A. (2025). Effects of Light Versus Very Heavy Resisted Sprint Training on Multidirectional Speed in Semi-professional Soccer Players. Journal of Strength and Conditioning Research, 39(2), e155–e161. https://doi.org/10.1519/JSC.0000000000004993
Bailey, L. S., Phillips, J., Farrell, G., McQuilliam, S. J., & Erskine, R. M. (2025). Effect of Six Weeks’ Isometric Strength Training Compared to Traditional Strength Training on Gains in Strength, Power, and Speed in Male Academy Soccer Players. Research Quarterly for Exercise and Sport, 96(4), 689–696. https://doi.org/10.1080/02701367.2025.2488843
Beato, M., & Drust, B. (2021). Acceleration intensity is an important contributor to the external and internal training load demands of repeated sprint exercises in soccer players. Research in Sports Medicine, 29(1), 67–76. https://doi.org/10.1080/15438627.2020.1743993
Bishop, C., Read, P., Brazier, J., Jarvis, P., Chavda, S., Bromley, T., & Turner, A. (2021). Effects of interlimb asymmetries on acceleration and change of direction speed: A between-sport comparison of professional soccer and cricket athletes. Journal of Strength and Conditioning Research, 35(8), 2095–2101. https://doi.org/10.1519/JSC.0000000000003135
Caldbeck, P., & Dos’Santos, T. (2022). A classification of specific movement skills and patterns during sprinting in English Premier League soccer. PLoS ONE, 17(11 November), Article e0277326. https://doi.org/10.1371/journal.pone.0277326
Carranza-García, L. E., Cervantes-Hernández, N., Domínguez-Sosa, M., Alanís-Flores, M., López-García, R., Vasquez-Bonilla, A., & Flores, L. A. (2024). Somatic Maturity and Physical Performance in Male Youth Players from a Professional Soccer Academy. International Journal of Morphology, 42(2), 429–436. https://doi.org/10.4067/S0717-95022024000200429
Castaño-Zambudio, A., Repullo, C., & Jiménez-Reyes, P. (2024). Enhancing Acceleration Capabilities in Professional Women’s Football Players: A Comparative Analysis of Game-Based Versus Resisted Sprint Trainings. Applied Sciences (Switzerland), 14(22), Article 10327. https://doi.org/10.3390/app142210327
Chaalali, A., Bouriel, K., Rouissi, M., Chtara, M., Mkaouer, B., Cronin, J., Chaouachi, A., & Chamari, K. (2022). Resisted sprint training with partner towing improves explosive force and sprint performance in young soccer players – A pilot study. Biology of Sport, 39(2), 379–387. https://doi.org/10.5114/BIOLSPORT.2022.103574
Cusano, P., Giardullo, G., Di Lascio, G., Kaçurri, A., & Kasa, A. (2025). The impact of the new technological tool Sprint Resister on the training of young footballers: an 8-week experimental study. Slobozhanskyi Herald of Science and Sport, 29(1), 52–59. https://doi.org/10.15391/snsv.2025-1.05
Derakhti, M., Bremec, D., Kambic, T., Siethoff, L. T., & Psilander, N. (2022). Four Weeks of Power Optimized Sprint Training Improves Sprint Performance in Adolescent Soccer Players. International Journal of Sports Physiology and Performance, 17(9), 1343–1351. https://doi.org/10.1123/ijspp.2020-0959
Devismes, M., Aeles, J., Philips, J., & Vanwanseele, B. (2021). Sprint force-velocity profiles in soccer players: impact of sex and playing level. Sports Biomechanics, 20(8), 947–957. https://doi.org/10.1080/14763141.2019.1618900
Díez, A., Lozano, D., Arjol-Serrano, J. L., Mainer-Pardos, E., Castillo, D., Torrontegui-Duarte, M., Nobari, H., Jaén-Carrillo, D., & Lampre, M. (2021). Influence of contextual factors on physical demands and technical-tactical actions regarding playing position in professional soccer players. BMC Sports Science, Medicine and Rehabilitation, 13(1), Article 157. https://doi.org/10.1186/s13102-021-00386-x
Edouard, P., Lahti, J., Nagahara, R., Samozino, P., Navarro, L., Guex, K., Rossi, J., Brughelli, M., Mendiguchia, J., & Morin, J. -B. (2021). Low horizontal force production capacity during sprinting as a potential risk factor of hamstring injury in football. International Journal of Environmental Research and Public Health, 18(15), Article 7827. https://doi.org/10.3390/ijerph18157827
Fernández-Galván, L. M., Jiménez-Reyes, P., Cuadrado-Peñafiel, V., & Casado, A. (2022). Sprint Performance and Mechanical Force-Velocity Profile among Different Maturational Stages in Young Soccer Players. International Journal of Environmental Research and Public Health, 19(3), Article 1412. https://doi.org/10.3390/ijerph19031412
Fernández-Jávega, G., Javaloyes, A., Moya-Ramón, M., & Peña-González, I. (2025). Influence of Biological Maturation on Training Load and Physical Performance Adaptations After a Running-Based HIIT Program in Youth Football. Applied Sciences (Switzerland), 15(13), Article 6974. https://doi.org/10.3390/app15136974
Ferrini, M., Asian-Clemente, J., Bagattini, G., & Suarez-Arrones, L. (2025). Effects of Maturation Status on Physical Performance Adaptations Following a Combined 7-Week Strength and Power Training Program in Elite Male Youth Soccer Players. Applied Sciences (Switzerland), 15(21), Article 11505. https://doi.org/10.3390/app152111505
García-Ceberino, J. M., Cantonero-Cobos, J. M., Conde, C., & Fernández-Ozcorta, E. J. (2024). Variations in External and Internal Intensities and Impact of Maturational Age on Soccer Training Tasks. Sensors, 24(17), Article 5656. https://doi.org/10.3390/s24175656
Gonçalves, L., Clemente, F. M., Barrera, J. I., Sarmento, H., González-Fernández, F. T., Vieira, L. H. P., Figueiredo, A. J., Clark, C. C. T., & Carral, J. M. C. (2021). Relationships between fitness status and match running performance in adult women soccer players: A cohort study. Medicina (Lithuania), 57(6), Article 617. https://doi.org/10.3390/medicina57060617
Griffin, J., Newans, T., Horan, S., Keogh, J., Andreatta, M., & Minahan, C. (2021). Acceleration and High-Speed Running Profiles of Women's International and Domestic Football Matches. Frontiers in Sports and Active Living, 3, Article 604605. https://doi.org/10.3389/fspor.2021.604605
Hong, Q. N., Pluye, P., Fàbregues, S., Bartlett, G., Boardman, F., Cargo, M., … Vedel, I. (2018). Mixed Methods Appraisal Tool (MMAT), version 2018. Registration of Copyright (#1148552), Canadian Intellectual Property Office, Industry Canada.
Jimenez-Reyes, P., Garcia-Ramos, A., Parraga-Montilla, J. A., Morcillo-Losa, J. A., Cuadrado-Penafiel, V., Castano-Zambudio, A., Samozino, P., & Morin, J. -B. (2022). Seasonal Changes in the Sprint Acceleration Force- Velocity Profile of Elite Male Soccer Players. Journal of Strength and Conditioning Research, 36(1), 70–74. https://doi.org/10.1519/JSC.0000000000003513
Jung, D., & Hong, J. (2024). Effects of Short-Rest Interval Time on Resisted Sprint Performance and Sprint Mechanical Variables in Elite Youth Soccer Players. Applied Sciences (Switzerland), 14(12), Article 5082. https://doi.org/10.3390/app14125082
Krawczyk, M., Pociecha, M., Tallent, J., & Dimma Ehiogu, U. (2024). EFFECTS OF VERTICAL AND HORIZONTAL STRENGTH EXERCISES ON SPRINT PERFORMANCE AND SPRINT MECHANICAL OUTPUTS IN AMATEUR SOCCER PLAYERS. Journal of Kinesiology and Exercise Sciences, 34(105), 60–67. https://doi.org/10.5604/01.3001.0054.3294
Krzysztofik, M., Jarosz, J., Urbański, R., Aschenbrenner, P., & Stastny, P. (2025). Effects of 6 weeks of complex training on athletic performance and post-activation performance enhancement effect magnitude in soccer players: a cross-sectional randomized study. Biology of Sport, 42(1), 211–221. https://doi.org/10.5114/biolsport.2025.139849
Lee, Y. -S., Lee, D., & Ahn, N. Y. (2024). SAQ training on sprint, change-of-direction speed, and agility in U-20 female football players. PLoS ONE, 19(3 March), Article e0299204. https://doi.org/10.1371/journal.pone.0299204
Liberati, A., Altman, D. G., Tetzlaff, J., Mulrow, C., Gøtzsche, P. C., Ioannidis, J. P. A., … Moher, D. (2009). The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate health care interventions. PLoS Medicine, 6(7), e1000100. https://doi.org/10.1371/journal.pmed.1000100
Liu, G., Wang, X., & Xu, Q. (2024). Microdosing Plyometric Training Enhances Jumping Performance, Reactive Strength Index, and Acceleration among Youth Soccer Players: A Randomized Controlled Study Design. Journal of Sports Science and Medicine, 23(2), 342–350. https://doi.org/10.52082/jssm.2024.342
Marqués-Jiménez, D., Calleja-González, J., Arratibel-Imaz, I., & Terrados, N. (2022). Match Loads May Predict Neuromuscular Fatigue and Intermittent-Running Endurance Capacity Decrement after a Soccer Match. International Journal of Environmental Research and Public Health, 19(22), Article 15390. https://doi.org/10.3390/ijerph192215390
Muñoz, C. L., Campillo, R. R., Gil, P. T., & de Villarreal Sáez, E. S. (2024). Effects of combined plyometric, strength, speed and change of direction training on youth male soccer players on physical performance: A randomised controlled trial. Retos, 56, 577–587. https://doi.org/10.47197/retos.v56.104520
Nobari, H., Silva, A. F., Clemente, F. M., Siahkouhian, M., García-Gordillo, M. Á., Adsuar, J. C., & Pérez-Gómez, J. (2021). Analysis of Fitness Status Variations of Under-16 Soccer Players Over a Season and Their Relationships With Maturational Status and Training Load. Frontiers in Physiology, 11, Article 597697. https://doi.org/10.3389/fphys.2020.597697
Page, M. J., McKenzie, J. E., Bossuyt, P. M., Boutron, I., Hoffmann, T. C., Mulrow, C. D., … Moher, D. (2021). The PRISMA 2020 statement: An updated guideline for reporting systematic reviews. BMJ, 372, n71. https://doi.org/10.1136/bmj.n71
Panduro, J., Ermidis, G., Røddik, L., Vigh-Larsen, J. F., Madsen, E. E., Larsen, M. N., Pettersen, S. A., Krustrup, P., & Randers, M. B. (2022). Physical performance and loading for six playing positions in elite female football: full-game, end-game, and peak periods. Scandinavian Journal of Medicine and Science in Sports, 32(S1), 115–126. https://doi.org/10.1111/sms.13877
Pereira, L. A., Nunes, R. F. H., Freitas, T. T., Paes, C. A., Conde, J. H. S., Novack, L. F., Kosloski, T., Silva, R. L. P., Azevedo, P. H. S. M., & Loturco, I. (2023). Sand and grass surfaces are equally effective in promoting positive adaptations in the sprint performance of elite young soccer players. Biology of Sport, 40(4), 993–1001. https://doi.org/10.5114/BIOLSPORT.2023.123324
Rey, E., Carrera, S., Padrón-Cabo, A., & Costa, P. B. (2024). Effectiveness of short vs. long-distance sprint training on sprinting and agility performance in young soccer players. Biology of Sport, 41(1), 87–93. https://doi.org/10.5114/biolsport.2024.127384
Reynolds, J., Connor, M., Jamil, M., & Beato, M. (2021). Quantifying and Comparing the Match Demands of U18, U23, and 1ST Team English Professional Soccer Players. Frontiers in Physiology, 12, Article 706451. https://doi.org/10.3389/fphys.2021.706451
Riboli, A., Olthof, S. B. H., Esposito, F., & Coratella, G. (2022). Training elite youth soccer players: Area per player in small-sided games to replicate the match demands. Biology of Sport, 39(3), 579–598. https://doi.org/10.5114/biolsport.2022.106388
Riboli, A., Semeria, M., Coratella, G., & Esposito, F. (2021). Effect of formation, ball in play and ball possession on peak demands in elite soccer. Biology of Sport, 38(2), 195–205. https://doi.org/10.5114/BIOLSPORT.2020.98450
Sellami, M., Makni, E., Moalla, W., Tarwneh, R., & Elloumi, M. (2024). Effect of maturation level on normative specific-agility performance metrics and their fitness predictors in soccer players aged 11–18 years. BMC Sports Science, Medicine and Rehabilitation, 16(1), Article 61. https://doi.org/10.1186/s13102-024-00855-z
Selmi, M. A., Ceylan, H. I., Hammami, R., Sassi, R. H., González-Fernández, F. T., Morgans, R., & Bragazzi, N. L. (2024). Repeated-sprint sets test: a new method for evaluating and forecasting fitness in elite young male soccer players. Scientific Reports, 14(1), Article 8542. https://doi.org/10.1038/s41598-024-58974-z
Solleiro-Duran, D., Cidre-Fuentes, P., Rey, E., Baena-Raya, A., Filter, A., & Padrón-Cabo, A. (2025). Effects of linear versus curvilinear sprint training on multidirectional speed in young soccer players: a randomized parallel-group trial. Biology of Sport, 42(1), 89–97. https://doi.org/10.5114/biolsport.2025.139084
Teixeira, J. E., Leal, M., Ferraz, R., Ribeiro, J., Cachada, J. M., Barbosa, T. M., Monteiro, A. M., & Forte, P. (2021). Effects of match location, quality of opposition and match outcome on match running performance in a portuguese professional football team. Entropy, 23(8), Article 973. https://doi.org/10.3390/e23080973
Thomas, J., & Harden, A. (2008). Methods for the thematic synthesis of qualitative research in systematic reviews. BMC Medical Research Methodology, 8, 45. https://doi.org/10.1186/1471-2288-8-45
Tranfield, D., Denyer, D., & Smart, P. (2003). Towards a methodology for developing evidence-informed management knowledge by means of systematic review. British Journal of Management, 14(3), 207–222. https://doi.org/10.1111/1467-8551.00375
Tvrdý, M., Holienka, M., & Babic, M. (2022). Effectiveness of repeated sprint ability (RSA) development in youth soccer players. Journal of Physical Education and Sport, 22(10), 2530–2538. https://doi.org/10.7752/jpes.2022.10321
Vescovi, J. D., & Jovanović, M. (2021). Sprint Mechanical Characteristics of Female Soccer Players: A Retrospective Pilot Study to Examine a Novel Approach for Correction of Timing Gate Starts. Frontiers in Sports and Active Living, 3, Article 629694. https://doi.org/10.3389/fspor.2021.629694
Vázquez Romero, J., Núñez-González, J. L., Valenzuela Barrero, C., Hernández Abad, F., & Núñez, F. J. (2024). The Effects of Flywheel Training with a Portable Device on Physical Performance in Soccer Players. Applied Sciences (Switzerland), 14(24), Article 11857. https://doi.org/10.3390/app142411857
Zhang, Q., Dellal, A., Chamari, K., Igonin, P. -H., Martin, C., & Hautier, C. (2022). The influence of short sprint performance, acceleration, and deceleration mechanical properties on change of direction ability in soccer players-A cross-sectional study. Frontiers in Physiology, 13, Article 1027811. https://doi.org/10.3389/fphys.2022.1027811
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