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Menstrual cycle hormonal fluctuations show weak and variable impacts on athletic performance and injury riskHormonal Fluctuations and Athletic Performance in Female Athletes

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Key Takeaway
Avoid universal menstrual cycle-based training rules; prioritize individual monitoring of symptoms and training load.

This narrative review synthesizes evidence regarding the impact of menstrual cycle (MC) hormonal fluctuations, including estradiol, progesterone, and relaxin, on athletic performance and injury susceptibility in female athletes. The review evaluates both physiological and biomechanical mechanisms and their implications for training, nutrition, and recovery.

Findings indicate that associations between MC phases and objective performance outcomes are generally weak, variable, and highly individual. Regarding musculoskeletal injuries, such as anterior cruciate ligament tears and muscle strains, the authors note that observational evidence linking specific phases to injury is limited and heterogeneous. Consequently, the review states that current data cannot confirm direct causal links between menstrual phases and injury risk.

Several limitations are noted, including small sample sizes, inconsistent phase classification, and inadequate control for variables like training load, energy availability, and hormonal contraceptive use. Because evidence for performance outcomes is weak and much of the data is derived from laboratory surrogate outcomes rather than prospective clinical injury data, the authors advise against universal phase-based training rules. Clinical practice should instead focus on individual monitoring of symptoms, perceived readiness, and training load.

This review looked at how hormonal changes during the menstrual cycle, such as fluctuations in estradiol and progesterone, affect the performance and safety of female athletes. The researchers examined whether specific phases of the cycle make athletes more prone to injuries like muscle strains or ligament tears.

The findings show that the link between menstrual phases and athletic performance is generally weak and varies greatly between individuals. Because results are so specific to the type of task and the person performing it, no single phase of the cycle can be labeled as universally better or worse for training. Additionally, there is currently limited evidence to prove that specific menstrual phases cause musculoskeletal injuries.

Because of these findings, experts suggest that athletes should not follow rigid training rules based solely on their cycle phase. Instead, athletes should focus on personal monitoring. This includes tracking their own symptoms, recovery, nutrition, and training load to make informed decisions about their training and injury prevention.

What this means for you:
Evidence shows that menstrual cycle impacts on performance are highly individual and not currently used for universal rules.

Common questions

Does my menstrual cycle affect my athletic performance?

The evidence shows that the link between menstrual cycle phases and athletic performance is generally weak, variable, and task-specific. Because results are highly individual, no specific phase of the cycle can be considered universally advantageous or disadvantageous for your performance. Training decisions should be based on your personal symptoms and recovery.

Does my menstrual cycle increase my risk of injury?

Current evidence is limited and inconsistent regarding whether specific menstrual phases cause musculoskeletal injuries like muscle strains or ligament tears. Because the data is not conclusive, experts do not recommend using cycle phases to label specific risks. You should focus on monitoring your own training load and recovery.

Should I change my training based on my cycle?

Current evidence does not support rigid or universal training rules based on your cycle phase. Instead of following a set rule, you should base your training on individual monitoring of your symptoms, perceived readiness, nutrition, and recovery. Talk to a professional to help create a plan based on your personal needs.

Study Details

Study typeSystematic review
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
The menstrual cycle (MC) is characterized by periodic fluctuations in estradiol and progesterone that may influence exercise metabolism, neuromuscular function, connective-tissue properties, menstrual symptom burden, recovery, and musculoskeletal injury susceptibility in female athletes. However, inconsistent findings and substantial inter- and intraindividual variability have prevented the development of universally applicable practical guidance. This narrative review aimed to synthesize current evidence on the associations of MC-related hormonal fluctuations with athletic performance and injury susceptibility; examine the underlying physiological, biomechanical, and psychological mechanisms; and evaluate the practical implications for training, nutrition, recovery, and injury prevention. The available evidence indicates that associations between the MC phase and objective performance outcomes are generally weak, variable, task-specific, and highly individual. Some studies have reported phase-related differences in selected measures of muscle strength, explosive performance, endurance strain, or training adaptation, whereas other studies have found no meaningful differences. Therefore, no MC phase can currently be considered universally advantageous or disadvantageous for athletic performance. Estradiol, progesterone, and relaxin provide biologically plausible pathways through which connective tissue metabolism, joint laxity, neural excitability, sensorimotor processing, and muscle-activation strategies might be modified. However, much of the supporting evidence is derived from experimental laboratory surrogate outcomes rather than prospectively recorded clinical injury data. Observational evidence linking distinct menstrual phases to anterior cruciate ligament tears, muscle strains, and other musculoskeletal injuries remains limited, heterogeneous, and unable to confirm direct causal links. Interpretation of the evidence is constrained by small sample sizes; inaccurate or inconsistent phase classification; limited hormonal verification; inadequate control of training load; energy availability, sleep, and hormonal contraceptive use; and substantial between- and within-individual variability. Current evidence does not support rigid or universally applied phase-based training rules, nor arbitrary risk/performance labeling of MC phases. MC status should be considered contextual information rather than an independent basis for training prescription. Training and injury-prevention decisions should be guided primarily by repeated individual monitoring of menstrual symptoms, perceived readiness, recovery, nutritional intake, objective performance, training load, environmental stressors, and previous injury. Established neuromuscular injury-prevention and workload-management strategies should be implemented throughout the cycle rather than restricted to presumed vulnerable phases.
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