A Comparison of Elite and Sub-elite Match-Play Running Performance of Gaelic Football Players

Author:

Donnelly Sam1,Collins Kieran1,Burns Con2,O'Neill Cian2,Mangan Shane12

Affiliation:

1. Gaelic Sports Research Centre, Technological University Dublin, Tallaght, Dublin, Ireland; and

2. Department of Sport, Leisure & Childhood Studies, Munster Technological University, Munster, Ireland

Abstract

Abstract Donnelly, S, Collins, K, Burns, C, O’Neill, C, and Mangan, S. A comparison of elite and sub-elite match-play running performance of Gaelic football players. J Strength Cond Res 38(5): 912–923, 2024—This research aimed to examine differences in match-play running performance between elite and sub-elite Gaelic football players. Global Positioning System devices were used to record the match-play running performance of sub-elite and elite players during the 2018 and 2019 seasons, respectively. In total, 783 samples were collected from 31 sub-elite and 30 elite players, from 1 elite and 1 sub-elite team. Comparisons were made on a team and positional level. Statistical significance was accepted at p ≤ 0.05. Significant positional differences were present between all positions with varying effect sizes (ESs) and p-values. Effect size was used to determine the magnitude of statistical difference. On a team level, the elite covered significantly more relative distance (p = 0.021, ES = 0.007) and elicited significantly higher average speed (p = 0.023, ES = 0.007) in quarters 2, 3, and 4 than the sub-elite. The elite covered significantly more relative distance high-intensity running (17–21.9 km·h−1; p = 0.002, ES = 0.012) in quarter 3 and performed significantly more power events per minute (p = 0.006, ES = 0.009) in quarter 4. In quarter 1, the sub-elite performed significantly more power events per minute (p = 0.006, ES = 0.009), relative high-speed running (≥17 km·h−1; p = 0.011, ES = 0.009), and relative distance high-intensity running (17–21.9 km·h−1; p = 0.002, ES = 0.012). Power events were defined as the estimation of the number of events that depend on anaerobic processes. The present study indicates that elite players possess superior conditioning, ability to read match-play, pacing, and anaerobic capacity. Sub-elite teams may use the present study to inform their training to potentially improve conditioning, pacing, and anaerobic capacity.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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