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◆ Journal of sports science & medicine2026-09-01

Game Density Modulates External Load During Small-Sided Games in Elite U17 Soccer Players.

Martin Bejbl, Jakub Kokstejn, Miroslav Grobar, Jindrich Vampola

原始摘要(英文原文)· Original abstract
Evidence regarding the influence of relative area per player (ApP), and playing position, on locomotor- and mechanical- external load during small-sided games in elite youth soccer players remains limited. This study aimed to examine associations between continuous ApP and external load during training-based small-sided games in elite U17 soccer players, and to explore whether playing position modified these responses. Twenty-two elite U17 soccer players (16.6 ± 0.47 years) were monitored during small-sided games, using mostly formats such as 4v4, 5v5, and 8v8-using observations derived from individual player responses across SSG bouts under three-game-density conditions. External load variables included total distance (TD); high-speed running distance (HSR); sprint distance (SPRINT); number of sprints (NSPRINTS); accelerations (ACC); decelerations (DEC); high metabolic load distance (HMLD); and, maximal-speed exposure (%MSPEED). Linear mixed-effects models were used to examine associations between continuous ApP and each external load variable, while accounting for repeated observations, including players and session-level clustering. Larger ApP values were positively associated with HSR, SPRINT, NSPRINTS, HMLD, and %MSPEED. In contrast, no significant associations were observed between ApP and TD; ACC; or DEC. No significant main effects of playing position or ApP × position interactions were identified. Supplementary player-level effect-size analyses indicated recurring exploratory positional patterns, particularly for high-speed and sprint-related variables. These findings suggest that ApP is a practical programming variable for scaling high-intensity locomotor and metabolically-demanding external load in elite youth soccer, whereas additional task constraints may be required to specifically target acceleration- and deceleration-based demands.
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Game Density Modulates External Load During Small-Sided Games in Elite U17 Soccer Players. — 科研速览 Science Skim