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March 1, 20260 citationsOpen Access

The EEG-Indexed Impacts of Caffeine on Auditory Novelty Processing Across Phases of the Human Menstrual Cycle.

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EPEsther E. PuirasJBJenna N. BissonnetteAMAlexandra O. MacNeil

Key Points

  • The study aims to investigate how caffeine affects EEG markers of auditory change detection across different menstrual cycle phases.
  • Randomized, double-blinded design
  • Participants assigned to menstrual, follicular, or luteal phase
  • Each participant received either 200 mg caffeine or placebo
  • Auditory tone detection assessed using a novelty oddball task
  • EEG data collected to measure neural responses
  • Caffeine significantly enhanced target detection at neural and behavioral levels
  • Effects were most pronounced during the menstrual phase
  • P3a and P3b amplitudes varied by menstrual phase under placebo, not under caffeine
  • ERP activity showed significant differences across menstrual phases for both conditions

Abstract

Caffeine, the most used global stimulant, can impact neurocognition. Hormonal fluctuations occurring across the human menstrual cycle affect similar cognitive domains. Research is needed to identify whether the purported cognitive-enhancing effects of caffeine vary across menstrual cycle phase. The objective of this study was to examine the impact of caffeine on EEG-derived markers of auditory change detection and novelty processing (MMN, P3a, P3b and RON) across phases of the menstrual cycle in naturally cycling females. Participants were randomly assigned to complete the experiment while in their menstrual (n = 31), follicular (n = 26) or luteal (n = 29) phase, completing two sessions wherein they were administered either a caffeine pill (200 mg, oral) or a placebo in a counterbalanced order using a randomized, double-blinded procedure. Auditory tone detection was assessed via a novelty oddball task while EEG data were collected. Caffeine significantly enhanced target detection at both the neural (P3b, MMN and RON) and behavioural levels, with effects most prominent in the menstrual phase. Additionally, P3a and P3b amplitudes differed significantly between phase groups under placebo conditions but not under caffeine conditions. Caffeine significantly enhanced target detection at both the electrophysiological and behavioural levels, with these effects mostly limited to the menstrual phase. Additionally, there were significant differences in ERP activity between all menstrual phases under both placebo and caffeine conditions. Our results suggest that caffeine enhances auditory novelty processing, particularly during the menstrual phase, though future research is needed to further explore the intersection of caffeine and the HMC.

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Cite This Study

Puiras et al. (2026) studied this question.

synapsesocial.com/papers/69a3d6eaec16d51705d2da4fhttps://doi.org/10.1111/ejn.70440
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The EEG‐indexed impacts of caffeine on auditory novelty processing across phases of the human menstrual cycle2026
  2. 2Effects of Caffeine Supplementation on Cognitive Function and Neuromuscular Performance Across Menstrual Cycle Phases in Eumenorrheic Female Athletes: A Randomized, Double-Blind Placebo-Controlled Pilot Trial2026
  3. 3EEG alpha indices depending on the menstrual cycle phase and salivary progesterone level2014 · 33 citations
  4. 4The Caffeinated Brain Part 1: The Effects of Caffeine on Event-Related Potentials (ERPs)—A Systematic and Mechanistic Review2026
  5. 5The Effect of Sex Differences on Long-Latency of Auditory and Somatosensory Evoked Potentials2026