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The Ratio between Weekly Training and Match External Physical Loads in U17 Elite Youth Soccer Players: Implications for the Training Process

. 2024 Mar ; 23 (1) : 107-113. [epub] 20240301

Language English Country Turkey Media electronic-ecollection

Document type Journal Article, Research Support, Non-U.S. Gov't

Research on the external physical load on elite youth soccer players during the weekly training microcycle in competitive periods and official matches is limited. The aims of this study were twofold: a) investigate possible differences in external physical load (PL) across player positions in U17 elite youth soccer players during official matches; b) determine the weekly training to match physical load ratio (WTMLr) across player positions. The sample included 20 outfield players from an elite soccer academy (mean age 15.94 ± 0.25 years) playing in four positions: central defender (CD), full-back (FB), central midfielder (CM) and Striker (S). Data were collected during the spring in-season period for 17 official matches played in a 4-3-3 game format. Indicators of external physical load monitored were: total distance (TD); total distance in high-speed running (HSR; > 16.1 km.h-1); total distance in sprint running (SPR; > 21.6 km.h-1); and relative physical load intensity (%HSR). The WTMLr was calculated for TD, HSR, SPR and %HSR as the ratio of the average weekly sum of training PL to the average sum of PL in an official match for a given players' position. Collectively, the training intensity during a one-week microcycle (%HSR in WTMLr) achieved only 76 % of match demands. CD performed significantly lower in all measured indicators of external PL during the official match than all other positions (p < 0.05; g > 0.80) except for TD in S. S achieved significantly higher SPR during official matches compared to CD (p < 0.05; g > 0.80), CM, and FB (g > 0.80). In contrast, CD reported higher WTMLr (medium-large effect size) in HSR and SPR indicators than all other positions. CM performed significantly higher %HSR in WTMLr than S and FB (p < 0.05; g > 0.80). Results revealed insufficient training intensity relative to match demands and, at the same time, weekly training PL did not meet match demands (especially in HSR and SPR) for players across the different positions. Therefore, practitioners should select appropriate training methods (drills and games) to ensure sufficient training intensity (HSR and SR metrics) and consider using the WTMLr, which can be used to help optimise and individualise training PL for different player positions.

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Ammann L., Altmann S., Ruf L., Sperlich B. (2023) Seasonal analysis of match load in professional soccer players: An observational cohort study of a Swiss U18, U21 and first team. Frontiers in Physiology 13, 2645. https://doi.org/10.3389/fphys.2022.1023378 10.3389/fphys.2022.1023378 PubMed DOI PMC

Anderson L., Orme P., Di Michele R., Close G.L., Morgans R., Drust B., Morton J.P. (2016) 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, 1250-1259. https://doi.org/10.1080/02640414.2015.1106574 10.1080/02640414.2015.1106574 PubMed DOI

Atan S.A., Foskett A., Ali A. (2014) Special populations: Issues and considerations in youth soccer match analysis. International Journal of Sports Science 4, 103-114. https://doi.org/10.5923/j.sports.20140403.05 10.5923/j.sports.20140403.05 DOI

Buchheit M., Mendez-Villanueva A., Simpson B., Bourdon P. (2010) Match Running Performance and Fitness in Youth Soccer. International Journal of Sports Medicine 31, 818-825. https://doi.org/10.1055/s-0030-1262838 10.1055/s-0030-1262838 PubMed DOI

Buchheit M., Simpson B.M. (2017) Player-Tracking Technology: Half-Full or Half-Empty Glass? International Journal of Sports Physiology and Performance 12, 2-35. https://doi.org/10.1123/ijspp.2016-0499 10.1123/ijspp.2016-0499 PubMed DOI

Brydges C.R. (2019) Effect size guidelines, sample size calculations, and statistical power in gerontology. Innovation in Aging 3. https://doi.org/10.1093/geroni/igz036 10.1093/geroni/igz036 PubMed DOI PMC

Clemente F., Rabbani A., Conte D., Castillo D., Afonso J., Truman C., Nikolaidis P., Rosemann T., Knechtle B. (2019) Training/Match External Load Ratios in Professional Soccer Players: A Full-Season Study. International Journal of Environmental Research and Public Health 16, 3057. https://doi.org/10.3390/ijerph16173057 10.3390/ijerph16173057 PubMed DOI PMC

Cummins C., Orr R., O’Connor H., West C. (2013) Global Positioning Systems (GPS) and Microtechnology Sensors in Team Sports: A Systematic Review. Sports Medicine 43, 1025-1042. https://doi.org/10.1007/s40279-013-0069-2 10.1007/s40279-013-0069-2 PubMed DOI

de Dios-Álvarez V., Alkain P., Castellano J., Rey E. (2021) Accumulative weekly external and internal load relative to match load in elite male youth soccer players. Pediatric Exercise Science 34, 119-124. https://doi.org/10.1123/pes.2021-0048 10.1123/pes.2021-0048 PubMed DOI

Douchet T., Paizis C., Roche H., Babault N. (2023) Positional Differences in Absolute vs. Relative Training Loads in Elite Academy Soccer Players. Journal of Sports Science & Medicine 22, 317. https://doi.org/10.52082/jssm.2023.317 10.52082/jssm.2023.317 PubMed DOI PMC

Goto H., Saward C. (2020) The running and technical performance of U13 to U18 elite Japanese soccer players during match play. The Journal of Strength & Conditioning Research 34, 1564-1573. https://doi.org/10.1519/JSC.0000000000003300 10.1519/JSC.0000000000003300 PubMed DOI

Gualtieri A., Rampinini E., Dello Iacono A., Beato M. (2023) High-speed running and sprinting in professional adult soccer: current thresholds definition, match demands and training strategies. A systematic review. Frontiers in Sports and Active Living 5, 1116293. https://doi.org/10.3389/fspor.2023.1116293 10.3389/fspor.2023.1116293 PubMed DOI PMC

Harkness-Armstrong A., Till K., Datson N., Emmonds S. (2022) Determining age-specific velocity thresholds for elite youth female soccer players. Science and Medicine in Football 6, 581-588, https://doi.org/10.1080/24733938.2021.1991585 10.1080/24733938.2021.1991585 PubMed DOI

Iacono A.D., Martone D., Cular D., Milic M., Padulo J. (2017) Game profile–based training in soccer: A new field approach. The Journal of Strength & Conditioning Research 31, 3333-3342. https://doi.org/10.1519/JSC.0000000000001768 10.1519/JSC.0000000000001768 PubMed DOI

Lechner S., Ammar A., Boukhris O., Trabelsi K., Glenn J.M., Schwarz J., Hammouda O., Zmijewsky P., Chtourou H., Driss T., Hoekelmann A. (2023) Monitoring training load in youth soccer players: effects of a six-week preparatory training program and the associations between external and internal loads. Biology of Sport 40, 63-75. https://doi.org/10.5114/biolsport.2023.112094 10.5114/biolsport.2023.112094 PubMed DOI PMC

Malone J.J., Di Michele R., Morgans R., Burgess D., Morton J.P., Drust B. (2015) Seasonal training-load quantification in elite English premier league soccer players. International Journal of Sports Physiology and Performance 10, 489-497. https://doi.org/10.1123/ijspp.2014-0352 10.1123/ijspp.2014-0352 PubMed DOI

Martín-García A., Gómez Díaz A., Bradley S., Morera F., Casamichana D. (2018) Quantification of a Professional Football Team’s External Load Using a Microcycle Structure. Journal of Strength and Conditioning Research 32, 3511-3518. https://doi.org/10.1519/jsc.0000000000002816 10.1519/jsc.0000000000002816 PubMed DOI

Maughan P.C., MacFarlane N.G., Swinton P.A. (2021) Quantification of training and match-play load across a season in professional youth football players. International Journal of Sports Science & Coaching 16, 1169-1177. https://doi.org/10.1177/17479541211000328

McCall A., Pruna R., Van der Horst N., Dupont G., Buchheit M., Coutts A.J., Impellizzeri F.M., Fanchini M. (2020) Exercise-Based Strategies to Prevent Muscle Injury in Male Elite Footballers: An Expert-Led Delphi Survey of 21 Practitioners Belonging to 18 Teams from the Big-5 European Leagues. Sports Medicine 50, 1667-1681. https://doi.org/10.1007/s40279-020-01315-7 10.1007/s40279-020-01315-7 PubMed DOI PMC

Miguel M., Oliveira R., Loureiro N., García-Rubio J., Ibáñez J. (2021) Load Measures in Training/Match Monitoring in Soccer: A Systematic Review. International Journal of Environmental Research and Public Health 18, 2721. https://doi.org/10.3390/ijerph18052721 10.3390/ijerph18052721 PubMed DOI PMC

Modric T., Versic S., Sekulic D. (2020) Playing position specifics of associations between running performance during the training and match in male soccer players. Acta Gymnica 50, 51-60. https://doi.org/10.5507/ag.2020.006 10.5507/ag.2020.006 DOI

Modric T., Gabrilo G., Peric M. (2022) Match Outcome and Running Performance Among UEFA Champions League Soccer Players. Studia sportiva, 16(2), 24-31. https://doi.org/10.5817/StS2022-2-3 10.5817/StS2022-2-3 DOI

Morgans R., Bezuglov E., Orme P., Burns K., Rhodes D., Babraj J., Di Michele R., Oliveira R.F.S. (2022) The physical demands of match-play in academy and senior soccer players from the Scottish premiership. Sports 10, 150. https://doi.org/10.3390/sports10100150 10.3390/sports10100150 PubMed DOI PMC

Nobari H., Barjaste A., Haghighi H., Clemente F. M., Carlos-Vivas J., Pérez-Gómez J. (2021) Quantification of training and match load in elite youth soccer players: a full-season study. The Journal of Sports Medicine and Physical Fitness, 62, 448-456. https://doi.org/10.23736/s0022-4707.21.12236-4 10.23736/s0022-4707.21.12236-4 PubMed DOI

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

Pettersen A., Brenn T. (2019) Activity Profiles by Position in Youth Elite Soccer Players in Official Matches. Sports Medicine International Open 03, 19-24. https://doi.org/10.1055/a-0883-5540 10.1055/a-0883-5540 PubMed DOI PMC

Ravé G., Granacher U., Boullosa D., Hackney A.C., Zouhal H. (2020) How to use global positioning systems (gps) data to monitor training load in the “real world” of elite soccer. Frontiers in Physiology 11, 944. https://doi.org/10.3389/fphys.2020.00944 10.3389/fphys.2020.00944 PubMed DOI PMC

Rebelo A., Brito J., Seabra A., Oliveira J., Krustrup P. (2014) Physical match performance of youth football players in relation to physical capacity. European Journal of Sport Science 14, 148-156. https://doi.org/10.1080/17461391.2012.664171 10.1080/17461391.2012.664171 PubMed DOI

Saward C., Morris G., Nevill E., Nevill M., Sunderland C. (2016) Longitudinal development of match-running performance in elite male youth soccer players. Scandinavian Journal of Medicine & Science in Sports 26, 933-942. https://doi.org/10.1111/sms.12534 10.1111/sms.12534 PubMed 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, 3906. https://doi.org/10.3390/ijerph18083906 10.3390/ijerph18083906 PubMed DOI PMC

Vigh-Larsen J.F., Dalgas U., Andersen T.B. (2018) Position-specific acceleration and deceleration profiles in elite youth and senior soccer players. The Journal of Strength & Conditioning Research 32, 1114-1122. https://doi.org/10.1519/JSC.0000000000001918 10.1519/JSC.0000000000001918 PubMed DOI

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