ZERO WORLD RESEARCHLiterature database on amino acids & organic acids

Caffeine ingestion improves morning neuromuscular performance to evening levels in healthy females.

PloS one2026Singh A, Hesketh SJ
Study designOther primary literature
SubjectHuman

Record checks

Study design
Other primary literature
Subject
Human
Publication year
2026
Source
doi.org
Abstract display
Shown here
Publication status
Active
Status checked
17 Aug 2026
Collected
3 Aug 2026
Freshness
Current
Review stage
Automated
Record status
Published

Abstract

Purpose: To investigate whether caffeine ingestion offsets the circadian-related decline in morning neuromuscular performance in females.Methods: Thirteen healthy females completed three experimental trials: i) evening placebo (PMPLAC), ii) morning placebo (AMPLAC), and iii) morning caffeine ingestion (6 mg·kg⁻¹; AMCAFF). A within-subject, repeated-measures, crossover, single-blind placebo design was used, with all subjects serving as their own controls. Each trial consisted of a maximal voluntary isometric contraction (MVIC) of the knee extensors, followed by intermittent isometric contractions (6 s contraction, 4 s rest) until task failure, and a post-fatigue MVIC. Time to exhaustion, torque and peak force, surface electromyography (RMS amplitude, MDF frequency), rate of perceived exertion, and tympanic temperature were all recorded across conditions.Results: During PMPLAC, peak force and time to exhaustion were significantly greater (p < 0.05) than for AMPLAC. Peak force was higher (p < 0.01) in AMCAFF in both pre- (+33%) and post- (+45%) fatigue MVIC trials compared to PMPLAC. Similarly, RMS was higher (p < 0.01) during both AMCAFF and PMPLAC compared to AMPLAC, whereas MDF did not change (p > 0.05) across trials. AMCAFF also improved (p < 0.01) time to exhaustion by 43% compared to AMPLAC, and significantly reduced (p < 0.01) rate of perceived exertion, but without any change (p > 0.05) in temperature.Conclusions: Morning ingestion of 6 mg·kg⁻¹ of caffeine effectively reverses diurnal reductions in neuromuscular performance of females by enhancing peak force and time to exhaustion to evening levels. No change in MDF, but an increased RMS suggests a central rather than peripheral mechanism for caffeine's ergogenic effects.

MeSH

AdultCaffeineCircadian RhythmCross-Over StudiesElectromyographyFemaleHumansIsometric ContractionMuscle FatigueMuscle, SkeletalSingle-Blind MethodYoung Adult

DOI 10.1371/journal.pone.0336199

PMID 42096438

View source →