TY - JOUR
T1 - The relationship between the 1200 m shuttle test and 40 m sprint test performance and distances covered in English Premier League matches
T2 - A retrospective two season study
AU - Kavanagh, Ronan
AU - Matteotti, Matteo
AU - Oliveira, Rafael
AU - McDaid, Kevin
AU - Alexander, Jill
AU - Harper, Damian
AU - Zmijewski, Piotr
AU - Rhodes, David
AU - Morgans, Ryland
N1 - Publisher Copyright:
© Institute of Sport – National Research Institute.
PY - 2024/10/2
Y1 - 2024/10/2
N2 - To identify a relationship between the 1200 m shuttle test and 40 m sprint test performance with distances covered at varying intensities in English Premier League (EPL) matches. A squad (n = 21) of full-time professional 1st team male football players (age 29.8±3.4 years; height 183.7±5.2 cm; weight 83.7±6.9 kg) participated in this study. League match data from the 2019–20 and 2020–21 seasons were recorded and analysed via an Optical Tracking System (OTS) (Second Spectrum®, Los Angeles, USA) to report physical match performance data. Average velocity during the 1200 m shuttle test (V1.2ST) was calculated, while Peak sprinting speed (PSS) was estimated using a 40 m maximal sprint. ASR1.2ST was established by subtracting V1.2ST from PSS. The relationship between V1.2ST, 30%ASR1.2ST and distances covered at varying intensities in EPL matches was assessed by a series of independent Linear Mixed Effects (LME) models. Although not statistically significant, for every unit increase in V1.2ST, there was an increase of 1032 m in distance covered, (p = 0.07). A single unit increase in 30%ASR1.2ST is associated with a significant increase of 495 m in high-speed running distance (> 5.5 m·s−1) (p = 0.02). While for each unit increase in 30%ASR1.2ST, sprint distance (> 7 m·s−1) covered significantly increased by 209 m (p = 0.02). In conclusion, high levels of physical fitness such as V1.2ST and 30%ASR1.2ST derived from the 1200 m shuttle and 40 m sprint tests can improve match running performance in elite soccer. Knowledge of this information allows practitioners to tailor training load based on each players individual characteristics, potentially increasing performance.
AB - To identify a relationship between the 1200 m shuttle test and 40 m sprint test performance with distances covered at varying intensities in English Premier League (EPL) matches. A squad (n = 21) of full-time professional 1st team male football players (age 29.8±3.4 years; height 183.7±5.2 cm; weight 83.7±6.9 kg) participated in this study. League match data from the 2019–20 and 2020–21 seasons were recorded and analysed via an Optical Tracking System (OTS) (Second Spectrum®, Los Angeles, USA) to report physical match performance data. Average velocity during the 1200 m shuttle test (V1.2ST) was calculated, while Peak sprinting speed (PSS) was estimated using a 40 m maximal sprint. ASR1.2ST was established by subtracting V1.2ST from PSS. The relationship between V1.2ST, 30%ASR1.2ST and distances covered at varying intensities in EPL matches was assessed by a series of independent Linear Mixed Effects (LME) models. Although not statistically significant, for every unit increase in V1.2ST, there was an increase of 1032 m in distance covered, (p = 0.07). A single unit increase in 30%ASR1.2ST is associated with a significant increase of 495 m in high-speed running distance (> 5.5 m·s−1) (p = 0.02). While for each unit increase in 30%ASR1.2ST, sprint distance (> 7 m·s−1) covered significantly increased by 209 m (p = 0.02). In conclusion, high levels of physical fitness such as V1.2ST and 30%ASR1.2ST derived from the 1200 m shuttle and 40 m sprint tests can improve match running performance in elite soccer. Knowledge of this information allows practitioners to tailor training load based on each players individual characteristics, potentially increasing performance.
KW - Anaerobic speed reserve
KW - English Premier League players
KW - Maximal aerobic speed
KW - Soccer
KW - Training
UR - http://www.scopus.com/inward/record.url?scp=105001736884&partnerID=8YFLogxK
U2 - 10.5114/biolsport.2025.142641
DO - 10.5114/biolsport.2025.142641
M3 - Article
AN - SCOPUS:105001736884
SN - 0860-021X
VL - 42
SP - 105
EP - 111
JO - Biology of Sport
JF - Biology of Sport
IS - 2
ER -