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Influence of Caffeine Consumption on Maximal Strength Performance in Resistance-Trained Females During Various Menstrual Cycle Phases: A Double-Blind Placebo-Controlled Crossover Study.

Ghenaatpishe Senani F, Nemati J, Niknam A, Koushkie Jahromi M. · Research quarterly for exercise and sport · 2026

This study tested whether caffeine's strength-boosting effects differ depending on where women are in their menstrual cycle, using 16 resistance-trained women who performed leg strength tests after taking either caffeine or placebo during their follicular and luteal phases. Caffeine increased knee extensor peak power across both cycle phases, but the benefit was greater during the follicular phase, suggesting menstrual cycle timing may influence how much caffeine helps with strength performance.
Takeaway: Consider taking caffeine during your follicular phase if you're timing supplementation around your menstrual cycle for maximum strength gains.
Abstract (source)

Caffeine is widely used to enhance neuromuscular performance; however, whether its ergogenic effects vary across menstrual cycle phases remains unclear. This study investigated the acute effects of caffeine on isokinetic and isometric strength performance during the follicular and luteal phases in resistance-trained females. Sixteen resistance-trained females (26.4 ± 3.9 years) completed a randomized, double-blind, placebo-controlled crossover trial. Participants ingested caffeine (6 mg·kg -1 ) or placebo during both menstrual cycle phases under standardized experimental conditions. Outcomes included isokinetic peak torque (PT) at 60°·s -1 and 180°·s -1 , average rate of force development, time to peak torque, and maximal voluntary isometric contraction. Data were analyzed using linear mixed-effects models. Caffeine significantly increased knee extensor absolute and relative PT at 60°·s -1 ( p = .009, ηp 2 = 0.146; p = .005, ηp 2 = 0.166) and 180°·s -1 (both p 2 = 0.293 and 0.310, respectively). Significant Phase × Condition interactions were observed for knee extensor absolute and relative PT at 60°·s -1 ( p = .016, ηp 2 = 0.125 and 0.126, respectively) and 180°·s -1 ( p = .025, ηp 2 = 0.109; p = .022, ηp 2 = 0.114). For knee flexors, the interaction was not significant for absolute PT at 180°·s -1 ( p = .069, ηp 2 = 0.073) but was significant for relative PT ( p = .050, ηp 2 = 0.085). No significant interactions were observed for other neuromuscular outcomes (all p > .05). These

Findings: suggest that menstrual cycle phase may modify the ergogenic effects of caffeine, particularly for knee extensor PT, with greater benefits during the follicular phase.

Randomized controlled trialWomen's & Youth Athletics
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