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Effects of Strength Training on Cognitive Function, Brain-Derived Neurotrophic Factor and Insulin-Like Growth Factor 1 in Highly-Trained Young Female Soccer Players.

Bousselmi M, Zouhal H, Darragi M, Karamti HM, Ben Hmid A, Zamali I et al. · Sports medicine - open · 2026

This study tested whether 12 weeks of twice-weekly strength training improved physical fitness, soccer performance, and cognitive function in 22 highly-trained teenage female soccer players. The strength training group showed gains in muscle strength, better soccer passing test scores, and improved performance on a cognitive test, though blood markers of brain growth factors (BDNF and IGF-1) did not change significantly.
Takeaway: Add two strength training sessions per week to your soccer training to improve your strength, sport-specific performance, and mental focus.
Abstract (source)

Background: Female soccer continues to gain global popularity. Selected components of physical fitness (e.g., muscle power, change-of-direction [CoD] speed) and cognitive function (e.g., attentional demand, training-induced) play an important role in soccer performance and should, therefore, be systematically developed.

Objectives: In this study, we examined the effects of 12 weeks of strength training (ST) on selected measures of physical fitness, soccer performance, cognitive function, and selected markers of neuroplasticity in young female soccer players.

Methods: Twenty-two highly-trained female soccer players with Tier 3 training and performance caliber aged 14.9±0.8 years were randomly assigned to a strength training group (SG: n = 11) or an active control group (CG: n = 11). During the training period, SG performed two weekly upper and lower body ST sessions (3 sets, 12 repetitions per set) at an intensity of 60-80% of the one-repetition-maximum (1-RM) and three soccer-specific training sessions (tactical-technical drills). Players from CG continued their regular soccer-specific training routine consisting of five weekly sessions. Training volumes were similar between groups. Pre- and post-training tests were conducted for the assessment of body composition (e.g., body mass, skinfold site measurements), muscle strength (1-RM bench press/Lat pull-down/leg press),the Loughborough Soccer Passing Test (LSPT), cognitive function (Stroop test), and selected markers of blood neurotrophins, such as basal brain-derived neurotrophic factor (BDNF) and insulin-like growth factor 1 (IGF-1) serum concentrations.

Results: The following

Findings: from post hoc analyses are based on significant (p p 2 =0.41), lat pull-down (p p 2 =0.43), and leg press (p p 2 =0.36) and improvements in soccer-specific performance for the LSPT in the SG (p =0.007; η p 2 =0.22). Post hoc tests indicated improved cognitive function (Stroop test) in the SG (p p 2 =0.56) but not in the CG. There were no significant group-by-time interactions for neuroplasticity markers, such as BDNF and IGF-1 basal serum concentrations (p>0.05; η p 2 =0.00-0.04).

Conclusions: A 12-week in-season ST program with two weekly sessions improved measures of physical fitness, soccer-specific performance, and cognitive function but not biomarkers of neuroplasticity in young highly-trained female soccer players. Accordingly, we recommend ST should be implemented to improve physical fitness and cognitive function of young female soccer athletes.

Primary studyOpen accessResistance Training & Hypertrophy
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