References

  • Alexander, S. E., Pollock, A. C., & Lamon, S. (2022). The effect of sex hormones on skeletal muscle adaptation in females. European Journal of Sport Science, 22(7), 1035-1045.
  • Ansdell, P., Thomas, K., Hicks, K. M., Hunter, S. K., Howatson, G., & Goodall, S. (2020). Physiological sex differences affect the integrative response to exercise: acute and chronic implications. Experimental Physiology, 105(12), 2007-2021.
  • Armour, M., Parry, K. A., Steel, K., & Smith, C. A. (2020). Australian female athlete perceptions of the challenges associated with training and competing when menstrual symptoms are present. International Journal of Sports Science & Coaching, 15(3), 316-323.
  • Bambaeichi, E., Reilly, T., Cable, N. T., & Giacomoni, M. (2004). The isolated and combined effects of menstrual cycle phase and time-of-day on muscle strength of eumenorrheic females. Chronobiology International, 21(4-5), 645-660.
  • Bishop, P. A., Jones, E., & Woods, A. K. (2008). Recovery from training: a brief review: brief review. The Journal of Strength & Conditioning Research, 22(3), 1015-1024.
  • Blagrove, R. C., Bruinvels, G., & Pedlar, C. R. (2020). Variations in strength-related measures during the menstrual cycle in eumenorrheic women: A systematic review and meta-analysis. Journal of Science and Medicine in Sport, 23(12), 1220-1227.
  • Boisseau, N., & Isacco, L. (2022). Substrate metabolism during exercise: Sexual dimorphism and women’s specificities. European Journal of Sport Science, 22(5), 672-683.
  • Brown, N., Knight, C. J., & Forrest, L. J. (2021). Elite female athletes’ experiences and perceptions of the menstrual cycle on training and sport performance. Scandinavian Journal of Medicine & Science in Sports, 31(1), 52-69.
  • Bruinvels, G., Goldsmith, E., Blagrove, R., Simpkin, A., Lewis, N., Morton, K., ... & Pedlar, C. (2021). Prevalence and frequency of menstrual cycle symptoms are associated with availability to train and compete: a study of 6812 exercising women recruited using the Strava exercise app. British Journal of Sports Medicine, 55(8), 438-443.
  • Bruinvels, G., Hackney, A. C., & Pedlar, C. R. (2022). Menstrual cycle: the importance of both the phases and the transitions between phases on training and performance. Sports Medicine, 52(7), 1457-1460.
  • Campbell, S. E., Angus, D. J., & Febbraio, M. A. (2001). Glucose kinetics and exercise performance during phases of the menstrual cycle: effect of glucose ingestion. American Journal of Physiology-Endocrinology and Metabolism, 281(4), E817-E825.
  • Carmichael, M. A., Thomson, R. L., Moran, L. J., & Wycherley, T. P. (2021). The impact of menstrual cycle phase on athletes’ performance: a narrative review. International Journal of Environmental Research and Public Health, 18(4), 1667.
  • Casazza, G. A., Suh, S. H., Miller, B. F., Navazio, F. M., & Brooks, G. A. (2002). Effects of oral contraceptives on peak exercise capacity. Journal of Applied Physiology, 93(5), 1698-1702.
  • Chidi-Ogbolu, N., & Baar, K. (2019). Effect of estrogen on musculoskeletal performance and injury risk. Frontiers in Physiology, 9, 1834.
  • Chica-Latorre, S., Knight-Agarwal, C., McKune, A., & Minehan, M. (2025). Sport can do better: female athletes' perspectives on managing menstrual and hormonal contraceptive cycle-related symptoms. Frontiers in Sports and Active Living, 7, 1597469.
  • Colenso-Semple, L. M., D'Souza, A. C., Elliott-Sale, K. J., & Phillips, S. M. (2023). Current evidence shows no influence of women's menstrual cycle phase on acute strength performance or adaptations to resistance exercise training. Frontiers in Sports and Active Living, 5, 1054542.
  • Constantini, N. W., Dubnov, G., & Lebrun, C. M. (2005). The menstrual cycle and sport performance. Clinics in Sports Medicine, 24(2), e51-e82.
  • Cowley, E. S., Olenick, A. A., McNulty, K. L., & Ross, E. Z. (2021). “Invisible sportswomen”: the sex data gap in sport and exercise science research. Women in Sport and Physical Activity Journal, 29(2), 146-151.
  • Crawford, L., McNulty, K. L., Hicks, K. M., Hall, E., & Ansdell, P. (2025). Lessons Learned From a No-Cost Menstrual Cycle Symptom Tracking Intervention in Field Hockey: A Mixed-Methods Study. Women in Sport and Physical Activity Journal, 33(1).
  • Davis, H. C., & Hackney, A. C. (2017). The hypothalamic–pituitary–ovarian axis and oral contraceptives: Regulation and function. Cited in: Sex Hormones, Exercise & Women (pp. 1-17). Springer: United States of America.
  • De Jonge, X. J., Boot, C. R. L., Thom, J. M., Ruell, P. A., & Thompson, M. W. (2001). The influence of menstrual cycle phase on skeletal muscle contractile characteristics in humans. The Journal of Physiology, 530, 161.
  • Deloitte. (2025). Women's elite sports exceed expectations as revenues projected to surpass US$2.3 billion in 2025. Retrieved June 15, 2025, from https://www.deloitte.com/global/en/about/press-room/womens-elite-sports-exceed-expectations-as-revenues-projected-to-surpass-in-2025.html 
    Dibrezzo, R. O., Fort, I. L., & Brown, B. (1988). Dynamic strength and work variations during three stages of the menstrual cycle. Journal of Orthopaedic & Sports Physical Therapy, 10(4), 113-116.
  • Dickerson, L. M., Mazyck, P. J., & Hunter, M. H. (2003). Premenstrual syndrome. American Family Physician, 67(8), 1743-1752.
  • Ekenros, L., Hirschberg, A. L., Heijne, A., & Fridén, C. (2013). Oral contraceptives do not affect muscle strength and hop performance in active women. Clinical Journal of Sport Medicine, 23(3), 202-207.
  • Elliott, K. J., Cable, N. T., Reilly, T., & Diver, M. J. (2003). Effect of menstrual cycle phase on the concentration of bioavailable 17-β oestradiol and testosterone and muscle strength. Clinical Science, 105(6), 663-669.
  • Elliott-Sale, K. J., Minahan, C. L., de Jonge, X. A. J., Ackerman, K. E., Sipilä, S., Constantini, N. W., ... & Hackney, A. C. (2021). Methodological considerations for studies in sport and exercise science with women as participants: a working guide for standards of practice for research on women. Sports Medicine, 51(5), 843-861.
  • Elliott-Sale, K. J., Birdsey, L. P., Burden, R. J., Cable, N. T., Clausen, E., D'Souza, A. C., ... & Minahan, C. (2024). Development and evaluation of an ovarian hormone profile classification tool for female athletes: step one of a two-step process to determine ovarian hormone profiles. BMJ Open Sport & Exercise Medicine, 10(4).
  • Emmonds, S., Heyward, O., & Jones, B. (2019). The challenge of applying and undertaking research in female sport. Sports Medicine-Open, 5, 1-4.
  • Enns, D. L., & Tiidus, P. M. (2010). The influence of estrogen on skeletal muscle: sex matters. Sports Medicine, 40, 41-58.
  • Ferries-Rowe, E., Corey, E., & Archer, J. S. (2020). Primary dysmenorrhea: diagnosis and therapy. Obstetrics & Gynecology, 136(5), 1047-1058.
  • Findlay, R. J., Macrae, E. H., Whyte, I. Y., Easton, C., & Forrest, L. J. (2020). How the menstrual cycle and menstruation affect sporting performance: experiences and perceptions of elite female rugby players. British Journal of Sports Medicine, 54(18), 1108-1113.
  • Frankovich, R. J., & Lebrun, C. M. (2000). Menstrual cycle, contraception, and performance. Clinics in Sports Medicine, 19(2), 251-271.
  • Hackney, A. C., Kallman, A. L., & Ağgön, E. (2019). Female sex hormones and the recovery from exercise: Menstrual cycle phase affects responses. Biomedical Human Kinetics, 11(1), 87-89.
  • Hackney, A. C. (2021). Menstrual cycle hormonal changes and energy substrate metabolism in exercising women: a perspective. International Journal of Environmental Research and Public Health, 18(19), 10024.
  • Heather, A. K., Thorpe, H., Ogilvie, M., Sims, S. T., Beable, S., Milsom, S., ... & Hamilton, B. (2021). Biological and socio-cultural factors have the potential to influence the health and performance of elite female athletes: a cross sectional survey of 219 elite female athletes in Aotearoa New Zealand. Frontiers in Sports and Active Living, 3, 27.
  • Howe, O. R. (2024). Ethical risks of systematic menstrual tracking in sport. Journal of Bioethical Inquiry, 21(3), 543-557.
  • International Olympic Committee. (2024). #GenderEqualOlympics: Celebrating full gender parity on the field of play at Paris 2024. Retrieved June 15, 2025, from https://olympics.com/ioc/news/genderequalolympics-celebrating-full-gender-parity-on-the-field-of- play-at-paris-2024  
  • Kellmann, M., Bertollo, M., Bosquet, L., Brink, M., Coutts, A. J., Duffield, R., ... & Beckmann, J. (2018). Recovery and performance in sport: consensus statement. International Journal of Sports Physiology and Performance, 13(2), 240-245.
  • Kissow, J., Jacobsen, K. J., Gunnarsson, T. P., Jessen, S., & Hostrup, M. (2022). Effects of follicular and luteal phase-based menstrual cycle resistance training on muscle strength and mass. Sports Medicine, 52(12), 2813-2819.
  • Knowles, O. E., Aisbett, B., Main, L. C., Drinkwater, E. J., Orellana, L., & Lamon, S. (2019). Resistance training and skeletal muscle protein metabolism in eumenorrheic females: implications for researchers and practitioners. Sports Medicine, 49, 1637-1650.
  • Kolić, P., Ives, B., O’Hanlon, R., Murphy, R. and Morse, C.I., 2024. Stigma, menstrual etiquette, and identity work: examining female exercisers’ experiences during menstruation. Sport, Education and Society, pp.1-13.
  • Lowe, D. A., Baltgalvis, K. A., & Greising, S. M. (2010). Mechanisms behind estrogens’ beneficial effect on muscle strength in females. Exercise and Sport Sciences Reviews, 38(2), 61. 
  • Martin, D., Sale, C., Cooper, S. B., & Elliott-Sale, K. J. (2018). Period prevalence and perceived side effects of hormonal contraceptive use and the menstrual cycle in elite athletes. International Journal of Sports Pphysiology and Performance, 13(7), 926-932.
  • McNulty, K. L., Elliott-Sale, K. J., Dolan, E., Swinton, P. A., Ansdell, P., Goodall, S., ... & Hicks, K. M. (2020). The effects of menstrual cycle phase on exercise performance in eumenorrheic women: a systematic review and meta-analysis. Sports Medicine, 50, 1813-1827.
  • McNulty, K. L., Hicks, K. M., & Ansdell, P. (2021). Variation in physiological function within and between menstrual cycles: uncovering the contributing factors. Experimental Physiology, 106(7), 1405-1406.
  • McNulty, K. L., Ansdell, P., Goodall, S., Thomas, K., Elliott-Sale, K. J., Howatson, G., & Hicks, K. M. (2023). The symptoms experienced by naturally menstruating women and oral contraceptive pill users and their perceived effects on exercise performance and recovery time posttraining. Women in Sport and Physical Activity Journal, 1(aop), 1-13.
  • McNulty, K. L., Taim, B. C., Freemas, J. A., Hassan, A., Brantner, C. L., Oleka, C. T., ... & Bruinvels, G. (2024). Research across the female life cycle: Reframing the narrative for health and performance in athletic females and showcasing solutions to drive advancements in research and translation. Women in Sport and Physical Activity Journal, 32(1).
  • Minahan, C., Joyce, S., Bulmer, A. C., Cronin, N., & Sabapathy, S. (2015). The influence of estradiol on muscle damage and leg strength after intense eccentric exercise. European Journal of Applied Physiology, 115, 1493-1500.
  • Nolan, D., Elliott-Sale, K. J., & Egan, B. (2023). Prevalence of hormonal contraceptive use and reported side effects of the menstrual cycle and hormonal contraceptive use in powerlifting and rugby. The Physician and Sportsmedicine, 51(3), 217-222.
  • Oosthuyse, T., Bosch, A. N., & Jackson, S. (2005). Cycling time trial performance during different phases of the menstrual cycle. European Journal of Applied Physiology, 94, 268-276.
  • Pallavi, L. C., SoUza, U. J. D., & Shivaprakash, G. (2017). Assessment of musculoskeletal strength and levels of fatigue during different phases of menstrual cycle in young adults. Journal of Clinical and Diagnostic Research, 11(2), CC11. 
  • Reis, E., Frick, U., & Schmidtbleicher, D. (1995). Frequency variations of strength training sessions triggered by the phases of the menstrual cycle. International Journal of Sports Medicine, 16(08), 545-550.
  • Romero-Parra, N., Alfaro-Magallanes, V. M., Rael, B., Cupeiro, R., Rojo-Tirado, M. A., Benito, P. J., & Peinado, A. B. (2020). Indirect markers of muscle damage throughout the menstrual cycle. International Journal of Sports Physiology and Performance, 16(2), 190-198.
  • Romero-Parra, N., Barba-Moreno, L., Rael, B., Alfaro-Magallanes, V. M., Cupeiro, R., Díaz, Á. E., ... & Peinado, A. B. (2020). Influence of the menstrual cycle on blood markers of muscle damage and inflammation following eccentric exercise. International Journal of Environmental Research and Public Health, 17(5), 1618.
  • Romero-Parra, N., Cupeiro, R., Alfaro-Magallanes, V. M., Rael, B., Rubio-Arias, J. Á., Peinado, A. B., & Benito, P. J. (2021). Exercise-induced muscle damage during the menstrual cycle: a systematic review and meta-analysis. The Journal of Strength & Conditioning Research, 35(2), 549-561.
  • Solli, G. S., Sandbakk, S. B., Noordhof, D. A., Ihalainen, J. K., & Sandbakk, Ø. (2020). Changes in self-reported physical fitness, performance, and side effects across the phases of the menstrual cycle among competitive endurance athletes. International Journal of Sports Physiology and Performance, 15(9), 1324-1333.
  • Sung, E., Han, A., Hinrichs, T., Vorgerd, M., Manchado, C., & Platen, P. (2014). Effects of follicular versus luteal phase-based strength training in young women. Springerplus, 3(1), 1-10.
  • Tenan, M. S., Hackney, A. C., & Griffin, L. (2016). Maximal force and tremor changes across the menstrual cycle. European Journal of Applied Physiology, 116, 153-160.
  • Tiidus, P. M. (2003). Influence of estrogen on skeletal muscle damage, inflammation, and repair. Exercise and Sport Sciences Reviews, 31(1), 40-44.
  • Tiidus, P. M. (2005). Can oestrogen influence skeletal muscle damage, inflammation, and repair?. British Journal of Sports Medicine, 39(5), 251-253.
  • Vaiksaar, S., Jürimäe, J., Mäestu, J., Purge, P., Kalytka, S., Shakhlina, L., & Jürimäe, T. (2011). No effect of menstrual cycle phase and oral contraceptive use on endurance performance in rowers. The Journal of Strength & Conditioning Research, 25(6), 1571-1578.
  • Vargas-Molina, S., Petro, J. L., Romance, R., Bonilla, D. A., Schoenfeld, B. J., Kreider, R. B., & Benítez-Porres, J. (2022). Menstrual cycle-based undulating periodized program effects on body composition and strength in trained women: A pilot study. Science & Sports, 37(8), 753-761.
  • Wikström-Frisén, L., Boraxbekk, C. J., & Henriksson-Larsen, K. (2017). Effects on power, strength and lean body mass of menstrual/oral contraceptive cycle based resistance training. Journal of Sports Medicine and Physical Fitness, 57(1-2), 43-52.
  • Yonkers, K. A., O'Brien, P. S., & Eriksson, E. (2008). Premenstrual syndrome. The Lancet, 371(9619), 1200-1210.