The effect of menstrual cycle on inter-joint coordination variability during roundhouse kicks in taekwondo

. 2025 Jul 03 ; 25 (1) : 294. [epub] 20250703

Jazyk angličtina Země Anglie, Velká Británie Médium electronic

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid40611200
Odkazy

PubMed 40611200
PubMed Central PMC12225083
DOI 10.1186/s12905-025-03839-4
PII: 10.1186/s12905-025-03839-4
Knihovny.cz E-zdroje

BACKGROUND: This study aimed to investigate the effect of the menstrual cycle on the coordination variability of the lower-limb joints during the taekwondo roundhouse kick in professional athletes. METHODS: Twenty professional taekwondo female athletes voluntarily participated in the study. The participants visited a laboratory thrice during their menstrual cycles' follicular, ovulation, and luteal phases. The lower-extremity kinematic data were collected during the roundhouse kick. Range of motion (ROM) and coordination variability of the lower-extremity joints in sagittal plane were calculated and compared for different menstrual cycles. FINDINGS: The results did not show significant differences in the ROM of the joints for the different menstrual cycles. Moreover, the results of a vector analysis using the repeated measures ANOVA did not show significant differences in joint coordination patterns and variability for different menstrual cycles. However, there were fluctuations in the coordination variability during the ovulation phase in the hip-ankle coupling, but this was not statistically significant. INTERPRETATION: The results suggest that female taekwondo players must be cautious of training during the ovulation phases of their menstrual cycles. However, more research is needed to better understand the effect of menstrual cycle on the coordination patterns of joints and segments.

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Pérez-Gutiérrez M, Valdes-Badilla P, Gómez-Alonso MT. Carlos Gutiérrez-García. Bibliometric analysis of Taekwondo articles published in the web of science (1989–2013). Ido Mov Cult J Martial Arts Anthropol. 2015;15:27–34.

Son M, Youm C, Woo J, Lee M, Kim Y, Kim J. Postural stability for Taekwondo athletes with repetitive ankle sprains during a single-leg stance. J Phys Ther Sci. 2018;30:405–10. PubMed PMC

Ervilha UF, Fernandes F, de Souza M, de Hamill CC. Reaction time and muscle activation patterns in elite and novice athletes performing a Taekwondo kick. Sports Biomech. 2020;19:665–77. PubMed

Barnamehi H, Kharazi M. Ap dollio chagi kick’s variability by continuous relative phase in elite taekwondo male. In: Proc 35th Conf Int Soc Biomech Sport. 2017. pp. 14–8.

Kim JW, Kwon MS, Yenuga SS, Kwon YH. The effects of target distance on Pivot hip, trunk, pelvis, and kicking leg kinematics in Taekwondo roundhouse kicks. Sports Biomech. 2010;9:98–114. PubMed

Jung T, Hyoungjin P. The effects of defensive footwork on the kinematics of Taekwondo roundhouse kicks. Eur J Hum Mov. 2018;40:78–95.

Moreira PVS, Goethel MF, Gonçalves M. Neuromuscular performance of Bandal chagui: comparison of subelite and elite Taekwondo athletes. J Electromyogr Kinesiol. 2016;30:55–65. PubMed

Pablo V-B, Mauricio BM, Rodrigo AP, Tomas H-V, Eduardo G-M, Mikel P-G, et al. Differences in the electromyography activity of a roundhouse kick between novice and advanced Taekwondo athletes. Ido Mov Cult J Martial Arts Anthropol. 2018;18:31–8.

Estevan I, Falco C, Silvernail JF, Jandacka D. Comparison of lower limb segments kinematics in a Taekwondo kick. An approach to the proximal to distal motion. J Hum Kinet. 2015;47:41–9. PubMed PMC

Kim YK, Kim YH, Im SJ. Inter-joint coordination in producing kicking velocity of Taekwondo kicks. J Sports Sci Med. 2011;10:31–8. PubMed PMC

Coral F, Alvarez O, Castillo I, Estevan I, Martos J, Mugarra F, et al. Influence of the distance in a roundhouse kick’s execution time and impact force in Taekwondo. J Biomech. 2009;42:242–8. PubMed

Monoem H. Performance optimization in taekwondo: from laboratory to field. OMICS Group eBooks; 2014.

Estivensen I, Octavio A, Coral F, Molina-García J, Castillo I. Impact force and time analysis influenced by execution distance in a roundhouse kick to the head in Taekwondo. J Strength Cond Res. 2011;25:2851–6. PubMed

Estevan I, Falco C, Álvarez O, Molina-García J. Effect of olympic weight category on performance in the roundhouse kick to the head in Taekwondo. J Hum Kinet. 2012;31:37–43. PubMed PMC

Falco C, Molina-García J, Álvarez O, Estevan I. Effects of target distance on select Biomechanical parameters in Taekwondo roundhouse kick. Sports Biomech. 2013;12:381–8. PubMed

Estevan I, Freedman Silvernail J, Daniel J, Coral F. Sagittal coupling analysis in the roundhouse kick in Taekwondo. Proc 32nd Int Conf Biomech Sports. 2014;:1–4.

Estevan I, Freedman Silvernail J, Jandacka D, Falco C. Segment coupling and coordination variability analyses of the roundhouse kick in Taekwondo relative to the initial stance position. J Sports Sci. 2016;34:1766–73. PubMed

Kharazi M, Barnamehei H. Ap dollio chagi kick’S variability by continuous relative phase in elite taekwondo male. ISBS Proceedings Archive. 2017;35:963–6.

Cheng KB, Wang YH, Kuo SY, Wang KM, Huang YC. Perform kicking with or without jumping: joint coordination and kinetic differences between Taekwondo back kicks and jumping back kicks. J Sports Sci. 2015;33:1614–21. PubMed

Abbasi A, Yazdanbakhsh F, Khaleghi Tazji M, Aghaie Ataabadi P, Svoboda Z, Nazarpour K, et al. A comparison of coordination and its variability in lower extremity segments during treadmill and overground running at different speeds. Gait Posture. 2020;79:139–44. PubMed

Alijanpour E, Abbasi A, Needham RA, Naemi R. Spine and pelvis coordination variability in rowers with and without chronic low back pain during rowing. J Biomech. 2021;120:110356. PubMed

Hamill J, van Emmerik REA, Heiderscheit BC, Li L. A dynamical systems approach to lower extremity running injuries. Clin Biomech. 1991;14:297–308. PubMed

Hamill J, Palmer C, Van Emmerik REA. Coordinative variability and overuse injury. BMC Sports Sci Med Rehabil. 2012;4:1–9. PubMed PMC

Baida SR, Gore SJ, Franklyn-Miller AD, Moran KA. Does the amount of lower extremity movement variability differ between injured and uninjured populations? A systematic review. Scand J Med Sci Sports. 2018;28:1320–38. PubMed

Bailey JP, Freedman Silvernail J, Dufek JS, Navalta J, Mercer JA. Effects of treadmill running velocity on lower extremity coordination variability in healthy runners. Hum Mov Sci. 2018;64:144–50. PubMed

Köse B. Analysis of the effect of menstrual cycle phases on Aerobic-Anaerobic capacity and muscle strength. J Educ Train Stud. 2018;6:23–8.

Frankovich RJ, Lebrun CM. Menstrual cycle, contraception, and performance. Clin Sports Med. 2000;19:251–71. PubMed

Merkle JN. The effect of phases of the menstrual cycle on frontal plane knee kinematics during landing chairperson of the committee. Texas Tech University; 2005.

Tenan MS, Hackney AC, Griffin L. Maximal force and tremor changes across the menstrual cycle. Eur J Appl Physiol. 2016;116:153–60. PubMed

Loureiro S, Dias I, Sales D, Alessi I, Simão R, Fermino RC. Effect of different phases of the menstrual cycle on the performance of muscular strength in 10RM. Rev Bras Med Esporte. 2011;17.

Park S-K, Stefanyshyn DJ, Ramage B, Hart DA, Ronsky JL. Relationship between knee joint laxity and knee joint mechanics during the menstrual cycle. Br J Sports Med. 2009;43:174–9. PubMed

Bell DR, Blackburn TJ, Hackney AC, Marshall SW, Beutler AI, Padua DA. Jump-Landing biomechanics and Knee-Laxity change across the menstrual cycle in women with anterior cruciate ligament reconstruction. J Athl Train. 2014;49:154–62. PubMed PMC

Petrofsky J, Lee H. Greater reduction of balance as a result of increased plantar fascia elasticity at ovulation during the menstrual cycle. J Athl Train. 2015;237:219–26. PubMed

Lee H, Petrofsky J. Differences between men and women in balance and tremor in relation to plantar fascia laxity during the menstrual cycle. J Athl Train. 2018;53:255–61. PubMed PMC

Smekal G, Von Duvillard SP, Frigo P, Tegelhofer T, Pokan R, Hofmann P, et al. Menstrual cycle: no effect on exercise cardiorespiratory variables or blood lactate concentration. Med Sci Sports Exerc. 2007;39:1098–106. PubMed

Kharazi MR, Barnamei HR. Roundhouse kick’s TEAKWONDO variability in kinematic coupling assessed by continuous relative phase and vector coding. 22nd Iran Conf Biomed Eng. 2015;2015:369–74.

Kazemi M, Chudolinski A, Turgeon M, Simon A, Ho E, Coombe L. Nine year longitudinal retrospective study of Taekwondo injuries. J Can Chiropr Assoc. 2009;53:272–81. PubMed PMC

Thomas RE, Thomas BC, Vaska MM. Injuries in taekwando: systematic review. Physician Sportsmed. 2017;45:372–90. PubMed

Ji M. Analysis of injuries in Taekwondo athletes. J Phys Ther Sci. 2016;28:231–4. PubMed PMC

Takabayashi T, Edama M, Inai T, Masayoshi K. Gender differences in coordination variability between Shank and rearfoot during running. Hum Mov Sci. 2019;66:91–7. PubMed

Barrios JA, Heitkamp CA, Smith BP, Sturgeon MM, Suckow DW, Sutton CR. Three-dimensional hip and knee kinematics during walking, running, and single-limb drop landing in females with and without Genu Valgum. Clin Biomech. 2016;31:7–11. PubMed

Khaleghi Tazji M, Valizadeh Ghale-beig A, Sadeghi H, Koumantakis A, Chrysagis G, Abbasi N. A. Effects of running-induced fatigue on the Trunk-pelvis-hip coordination variability during treadmill running at different speeds. J Musculoskelet Neuronal Interact. 2023;23. PubMed PMC

Stergiou N. Innovative analyses of human movement. Human Kinetics Champaign, IL; 2004.

Robertson GE, Caldwell GE, Hamill J, Kamen G, Whittlesey S. Research methods in biomechanics. Hum kinet; 2013.

Herzberg SD, Motu’apuaka ML, Lambert W, Fu R, Brady J, Guise JM. The effect of menstrual cycle and contraceptives on ACL injuries and laxity: A systematic review and Meta-analysis. Orthop J Sports Med. 2017;5:1–10. PubMed PMC

Heitz NA, Eisenman PA, Beck CL, Walker JA. Hormonal changes throughout the menstrual cycle and increased anterior cruciate ligament laxity in females. J Athl Train. 1999;34:144–9. PubMed PMC

Deie M, Sakamaki Y, Sumen Y, Urabe Y, Ikuta Y. Anterior knee laxity in young women varies with their menstrual cycle. Int Orthop. 2002;26:154–6. PubMed PMC

Constantini NW, Dubnov G, Lebrun CM. The menstrual cycle and sport performance. Clin Sports Med. 2005;24:51–82. PubMed

Wojtys EM, Huston LJ, Boynton MD, Spindler KP, Lindenfeld TN. The effect of the menstrual cycle on anterior cruciate ligament injuries in women as determined by hormone levels. Am J Sports Med. 2002;30:182–8. PubMed

Denisa B, Daniel J, Joseph H. Menstrual Cycle and Frontal Knee Loading During a Cutting. International Society of Biomechanics in Sports Conference. 2020;:804–6.

Beynnon BD, Bernstein IM, Belisle A, Brattbakk B, Devanny P, Risinger R, et al. The effect of estradiol and progesterone on knee and ankle joint laxity. Am J Sports Med. 2005;33:1298–304. PubMed

Hoffman M, Harter RA, Hayes BT, Wojtys EM, Murtaugh P. The interrelationships among sex hormone concentrations, motoneuron excitability, and anterior tibial displacement in women and men. J Athl Train. 2008;43:364–72. PubMed PMC

Liu SH, Al-Shaikh R, Panossian V, Yang RS, Nelson SD, Soleiman N, et al. Primary immunolocalization of Estrogen and progesterone target cells in the human anterior cruciate ligament. J Orthop Res. 1996;14:526–33. PubMed

Wilson C, Simposon SE, Van Emmerik REA, Hamill J. Coordination variability and skill development in expert triple jumpers. Sports Biomech. 2008;7:2–9. PubMed

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