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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. |