Weekly Training Load Differences between Starting and Non-Starting Soccer Players

. 2024 Jan ; 90 () : 125-135. [epub] 20231128

Status PubMed-not-MEDLINE Jazyk angličtina Země Polsko Médium electronic-ecollection

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid38380307

The aim of this study was to examine the differences in the weekly training load between starters and non-starters classified based on the match starting line-up, with respect to the playing position and a training day. Notably, 31 young adult soccer players (age: 18.79 ± 1.04 years) competing in the 3rd Czech division were monitored across the season. The weekly training load was measured using a GPS system as follows: total distance covered (TD), high-speed running distance (HSR), sprint running distance (SR), and acceleration and deceleration distance (ACDC). We found higher values in three out of four observed variables (HSR, SR, and ACDC, excluding TD) for starters compared to non-starters (p < 0.05), with small to moderate effect sizes (d = 0.40-0.49). Differences were observed especially in players who were fullbacks, offensive midfielders, and forwards. Moreover, the largest differences were found in training prior to a match day for HSR, SR, and ACDC (p < 0.05). Non-starters experienced lower weekly external loads in offensive player positions, predominantly in high-intensity variables, which are essential for their physical performance. It seems that non-starters may experience potential under-loading in the training process. Coaches and practitioners should be aware of this potential risk and find an appropriate method to compensate for load discrepancies, particularly in terms of high-intensity activities.

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Akenhead, R., Harley, J. A., & Tweddle, S. P. (2016). Examining the External Training Load of an English Premier League Football Team With Special Reference to Acceleration. Journal of Strength & Conditioning Research, 30(9), 2424–2432. 10.1519/JSC.0000000000001343 PubMed DOI

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. 10.1123/ijspp.2015-0331 PubMed DOI

Alijanpour, N., Nobari, H., Bolboli, L., Afroundeh, R., & Garcia-Ramos, A. (2022). Using Global Positioning System to Compare Training Monotony and Training Strain of Starters and Non-Starters across of Full-Season in Professional Soccer Players. Sustainability, 14(6), 3560. 10.3390/su14063560 DOI

Anderson, L., Orme, P., Di Michele, R., Close, G., Morgans, R., Drust, B., & Morton, J. (2015). Quantification of training load during one-, two-and three-game week schedules in professional soccer players from the English Premier League: Implications for carbohydrate periodisation. Journal of Sports Sciences, 34(13), 1–10. 10.1080/02640414.2015.1106574 PubMed DOI

Anderson, L., Orme, P., Michele, R. D., Close, G. L., Milsom, J., Morgans, R., Drust, B., & Morton, J. P. (2016). Quantification of Seasonal-Long Physical Load in Soccer Players With Different Starting Status From the English Premier League: Implications for Maintaining Squad Physical Fitness. International Journal of Sports Physiology and Performance, 11(8), 1038–1046. 10.1123/ijspp.2015-0672 PubMed DOI

Buchheit, M. (2019). Managing high-speed running load in professional soccer players: The benefit of high-intensity interval training supplementation. Science Performance and Science Reports, 53, 1–5.

Bujnovsky, D., Maly, T., Ford, K. R., Sugimoto, D., Kunzmann, E., Hank, M., & Zahalka, F. (2019). Physical Fitness Characteristics of High-level Youth Football Players: Influence of Playing Position. Sports, 7(2), 46. 10.3390/sports7020046 PubMed DOI PMC

Bush, M., Barnes, C., Archer, D. T., Hogg, B., & Bradley, P. S. (2015). Evolution of match performance parameters for various playing positions in the English Premier League. Human Movement Science, 39, 1–11. 10.1016/j.humov.2014.10.003 PubMed DOI

Calderon-Pellegrino, G., Gallardo, L., Garcia-Unanue, J., Luis Felipe, J., Hernandez-Martin, A., Paredes-Hernandez, V., & Sanchez-Sanchez, J. (2022). Physical Demands during the Game and Compensatory Training Session (MD+1) in Elite Football Players Using Global Positioning System Device. Sensors, 22(10), 3872. 10.3390/s22103872 PubMed DOI PMC

Callanan, D., Rankin, P., & Fitzpatrick, P. (2021). An Analysis of the Game Movement Demands of Women’s Interprovincial Rugby Union. Journal of Strength & Conditioning Research, 35(S12), 20–25. 10.1519/JSC.0000000000004065 PubMed DOI

Casamichana, D., Martin-Garcia, A., Gomez Diaz, A., Bradley, P. S., & Castellano, J. (2022). Accumulative weekly load in a professional football team: With special reference to match playing time and game position. Biology of Sport, 39(1), 115–124. 10.5114/biolsport.2021.102924 PubMed DOI PMC

Cohen, J. (1992). A power primer. Psychological Bulletin, 112(1), 155–159. 10.1037/0033-2909.112.1.155 PubMed DOI

Dalen, T., & Lorås, H. (2019). Monitoring Training and Match Physical Load in Junior Soccer Players: Starters versus Substitutes. Sports, 7(3), 70. 10.3390/sports7030070 PubMed DOI PMC

Dolański, B., Rompa, P., Hongyou, L., Wasielewski, K., & Szwarc, A. (2018). Time-motion characteristics of match-play in elite Polish youth soccer players of various playing positions. Balt J Health PhysActiv, 10(3), 115-123. 10.29359/BJHPA.10.3.13 DOI

Doyle, B., Browne, D., & Horan, D. (2022). Quantification of internal and external training load during a training camp in senior international female footballers. Science and Medicine in Football, 6(1), 7–14. 10.1080/24733938.2021.1886320 PubMed DOI

Gabbett, T. J. (2016). The training—injury prevention paradox: Should athletes be training smarter and harder? British Journal of Sports Medicine, 50(5), 273–280. 10.1136/bjsports-2015-095788 PubMed DOI PMC

Hills, S. P., Barrett, S., Busby, M., Kilduff, L. P., Barwood, M. J., Radcliffe, J. N., Cooke, C. B., & Russell, M. (2020a). Profiling the Post-match Top-up Conditioning Practices of Professional Soccer Substitutes: An Analysis of Contextual Influences. Journal of Strength and Conditioning Research, 34(10), 2805–2814. 10.1519/JSC.0000000000003721 PubMed DOI

Hills, S. P., Radcliffe, J. N., Barwood, M. J., Arent, S. M., Cooke, C. B., & Russell, M. (2020b). Practitioner perceptions regarding the practices of soccer substitutes. PLOS ONE, 15(2), e0228790. 10.1371/journal.pone.0228790 PubMed DOI PMC

Lago-Peñas, C., Lorenzo-Martinez, M., López-Del Campo, R., Resta, R., & Rey, E. (2022). Evolution of physical and technical parameters in the Spanish LaLiga 2012-2019. Science and Medicine in Football, 7(1), 41–46. 10.1080/24733938.2022.2049980 PubMed DOI

Magrini, M. A., Colquhoun, R. J., Sellers, J. H., Conchola, E. C., Hester, G. M., Thiele, R. M., Pope, Z. K., & Smith, D. B. (2018). Can Squat Jump Performance Differentiate Starters vs. Nonstarters in Division I Female Soccer Players? Journal of Strength & Conditioning Research, 32(8), 2348–2355. 10.1519/JSC.0000000000002053 PubMed DOI

Malone, J., Di Michele, R., Morgans, R., Burgess, D., Morton, J., & Drust, B. (2014). Seasonal Training-Load Quantification in Elite English Premier League Soccer Players. International Journal of Sports Physiology and Performance, 10(4), 489–497. 10.1123/ijspp.2014-0352 PubMed DOI

Manson, S. A., Brughelli, M., & Harris, N. K. (2014). Physiological Characteristics of International Female Soccer Players. Journal of Strength & Conditioning Research, 28(2), 308–318. 10.1519/JSC.0b013e31829b56b1 PubMed DOI

Marques, M. C., Izquierdo, M., Gabbett, T. J., Travassos, B., Branquinho, L., & van den Tillaar, R. (2016). Physical fitness profile of competitive young soccer players: Determination of positional differences. International Journal of Sports Science & Coaching, 11(5), 693–701. 10.1177/1747954116667107 DOI

Martín-García, A., Gómez Díaz, A., Bradley, P. S., Morera, F., & Casamichana, D. (2018). Quantification of a Professional Football Team’s External Load Using a Microcycle Structure. Journal of Strength & Conditioning Research, 32(12), 3511–3518. 10.1519/JSC.0000000000002816 PubMed DOI

Nobari, H., Oliveira, R., Clemente, F. M., Adsuar, J. C., Pérez-Gómez, J., Carlos-Vivas, J., & Brito, J. P. (2020). Comparisons of Accelerometer Variables Training Monotony and Strain of Starters and Non-Starters: A Full-Season Study in Professional Soccer Players. International Journal of Environmental Research and Public Health, 17(18), 6547. 10.3390/ijerph17186547 PubMed DOI PMC

Plakias, S. (2023). An integrative review of the game model in soccer: definition, misconceptions, and practical significance. TRENDS in Sport Sciences, 30(3), 85-92. 10.23829/TSS.2023.30.3-1 DOI

Radzimiński, Ł., & Jastrzębski, Z. (2021). Evolution of physical performance in professional soccer across four consecutive seasons. Balt J Health PhysActiv, 13(3), 79-85. 10.29359/BJHPA.13.3.10 DOI

Rampinini, E., Alberti, G., Fiorenza, M., Riggio, M., Sassi, R., Borges, T. O., & Coutts, A. J. (2015). Accuracy of GPS Devices for Measuring High-intensity Running in Field-based Team Sports. International Journal of Sports Medicine, 36(1), 49–53. 10.1055/s-0034-1385866 PubMed DOI

Sams, M. L., Wagle, J. P., Sato, K., DeWeese, B. H., Sayers, A. L., & Stone, M. H. (2020). Using the Session Rating of Perceived Exertion to Quantify Training Load in a Men’s College Soccer Team. Journal of Strength and Conditioning Research, 34(10), 2793–2799. 10.1519/JSC.0000000000003793 PubMed DOI

Stevens, T. G. A., de Ruiter, C. J., Twisk, J. W. R., Savelsbergh, G. J. P., & Beek, P. J. (2017). Quantification of in-season training load relative to match load in professional Dutch Eredivisie football players. Science and Medicine in Football, 1(2), 117–125. 10.1080/24733938.2017.1282163 DOI

Swallow, W. E., Skidmore, N., Page, R. M., & Malone, J. J. (2021). An examination of in-season external training load in semi-professional soccer players: Considerations of one and two match weekly microcycles. International Journal of Sports Science & Coaching, 16(1), 192–199. 10.1177/1747954120951762 DOI

Teixeira, J. E., Forte, P., Ferraz, R., Leal, M., Ribeiro, J., Silva, A. J., Barbosa, T. M., & 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. 10.3390/ijerph18083906 PubMed DOI PMC

Tierney, P. J., Young, A., Clarke, N. D., & Duncan, M. J. (2016). Match play demands of 11 versus 11 professional football using Global Positioning, System tracking: Variations across common playing formations. Human Movement Science, 49, 1–8. 10.1016/j.humov.2016.05.007 PubMed DOI

Vieira, L. H. P., Carling, C., Barbieri, F. A., Aquino, R., & Santiago, P. P. R. (2019). Match Running Performance in Young Soccer Players: A Systematic Review. Sports Medicine, 49(2), 289–318. 10.1007/s40279-018-01048-8 PubMed DOI

Zanetti, V., Aoki, M. S., Bradley, P. S., Moreira, A. (2022). External and Internal Training Loads for Intensive and Extensive Tactical-Conditioning in Soccer Small Sided Games. Journal of Human Kinetics, 83, 165–173. 10.2478/hukin-2022-0083. PubMed DOI PMC

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