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March 29, 2026Experimental Physiology1 citationsOpen Access

Menstrual cycle effects on sex differences in motor control during dynamic balance perturbations

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SNSamuli NevanperäRMRitva S. MikkonenSWSimon Walker

Key Points

  • The study aims to explore how menstrual cycle phases affect sex differences in neuromuscular responses during balance tasks.
  • Measured responses of twenty-seven young adults (17 males, 10 females) during dynamic balance perturbations.
  • Females were assessed during early-follicular and mid-luteal phases; males were measured twice with a 7-14 day interval.
  • Evaluated H-reflex and V-wave responses as indicators of neural drive during balance tasks and isometric contractions.
  • No significant sex differences in H-reflex or V-wave responses during balance tasks at early-follicular phase.
  • A significant sex difference in H-reflex and V-wave responses during balance tasks at mid-luteal phase was found (P = 0.029 and P = 0.049, respectively).
  • During isometric maximal voluntary contractions, no difference was observed at early-follicular phase, but a significant difference at mid-luteal phase (P = 0.024).

Abstract

Abstract This study investigated sex differences in neuromuscular responses during dynamic balance perturbations and isometric maximal voluntary contractions (IMVCs) by examining if menstrual cycle (MC) phase and the fluctuations in endogenous hormones influence the observation of sex differences. Twenty‐seven young adults (17 males: 28.5 ± 6.4 years; 10 females: 31.2 ± 6.5 years) were measured twice: females were measured at the early‐follicular (EF) phase, that is 2–4 days after onset of bleeding, and at the mid‐luteal phase (LUT), coinciding with peak levels of progesterone. Males were measured twice with 7–14 days between measurements. During dynamic balance perturbations, H‐reflex and V‐wave (neural drive) responses were recorded from the posterior perturbations at four latencies (40 ms, 70 ms, 100 ms, and 130 ms) coinciding with short‐ (SLR), medium‐ (MLR), and long‐ (LLR) latency responses and voluntary activation. Further, IMVC and its associated neural drive were assessed. Sex differences in either the H‐reflex ( P = 0.217) or the V‐wave ( P = 0.475) were not observed during balance perturbation tasks when females at EF were compared to males. However, when the measurements were conducted at LUT, a significant sex difference was revealed in both H‐reflex ( P = 0.029) and V‐wave ( P = 0.049) responses. Similarly, in neural drive during IMVC, no sex differences were observed at EF ( P = 0.440), but a significant sex difference at LUT was observed ( P = 0.024). Our results suggest that hormonal fluctuation in two distinct MC phases lead to females having lower neural responses during dynamic balance and voluntary force generation tasks at LUT compared to males.

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Cite This Study

Nevanperä et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2b8de0f0f753b39d153https://doi.org/10.1113/ep093608
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Also Consider

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

  1. 1Balance and lower limb strength in young female athletes at different phases of the menstrual cycle: A causal-comparative descriptive study2026
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