Kadın Futbolcularda Ayak Bileği Eklem Hareket Açıklıklarının Statik ve Dinamik Denge ile İlişkisi

Bu araştırmanın amacı, kadın futbolcularda ayak bileği eklem hareket açıklıklarının statik ve dinamik denge ile ilişkisinin araştırılmasıdır. Araştırmaya yaş ortalamaları 19,62±1,85 yıl olan 37 kadın futbolcu gönüllü olarak katılmıştır. Gönüllülerin eklem hareket genişliklerinin tespitinde dorsifleksiyon (DF°), plantar fleksiyon (PF°), inversiyon (İNV°) ve eversiyon (EVR°) eklem hareketleri gonyometre kullanılarak ölçülmüştür. Statik ve dinamik denge düzeylerinin belirlenmesinde CSMI TecnoBody PK-252 izokinetik denge sistemi ölçüm cihazı kullanılmıştır. Parametreler arasındaki ilişki SPSS 25.0 paket program aracılığıyla pearson ve spearman korelasyon testleri kullanılarak p<0.05 anlamlılık düzeyinde analiz edilmiştir. Araştırma sonuçlarına göre her iki ayağın DF° değerleri ile dinamik denge parametrelerinden olan ortalama denge hatası izleme (ATE) arasında negatif yönde anlamlı ilişki olduğu görülmüştür (p<0.05). Sonuç olarak, bu araştırmada kadın futbolcularda bazı ayak bileği eklem açıklığı parametreleri ile dinamik denge düzeyleri arasında ilişki olduğu görülmüştür. Bu sonuçların sporcu yetenek tespitlerindeki kriterlerde, antrenman süreçlerinde kullanılabileceği ve alana katkı sağlayacağı düşünülmektedir.

The Relationship between Ankle Range of Motion and Static and Dynamic Balance in Female Footballers

The aim of this study is to examine the relationship between ankle range of motion and static and dynamic balance in female football players. 37 female football players with a mean age of 19.62±1.85 years participated in the study voluntarily. Dorsiflexion (DF°), plantar flexion (PF°), inversion (INV°) and eversion (EVR°) angles were measured using a goniometer to determine the joint range of motion of the volunteers. CSMI TecnoBody PK-252 isokinetic balance system measuring device was used to determine the static and dynamic balance levels. The relationship between the parameters was analyzed at p<0.05 significance level by using pearson and spearman correlation tests via SPSS 25.0 package program. According to the results of the research, it was observed that there was a significant negative correlation between the DF° values of both feet and the mean balance error monitoring (ATE), which is one of the dynamic balance parameters (p<0.05). As a result, in this study, it was observed that there was a relationship between some ankle range of motion parameters and dynamic balance levels in female football players. It is thought that these results can be used in the criteria of athlete talent determination and training processes, and will contribute to the field.

___

  • Acar, H., & Eler, N. (2019). The effect of balance exercises on speed and agility in physical education lessons. Universal Journal of Educational Research, 7(1), 74-79.
  • Amin, D.J., & Herrington, L.C. (2014). The relationship between ankle joint physiological characteristics and balance control during unilateral stance. Gait and Posture, 39(2), 718-722. DOI: 10.1016/j.gaitpost.2013.10.004
  • Bot, S.D., & Van Mechelen, W. (1999). The effect of ankle bracing on athletic performance. Sports Medicine, 27(3), 171-178. DOI: 10.2165/00007256-199927030-00003
  • Brockett, C.L., & Chapman, G.J. (2016). Biomechanics of the ankle. Orthopedics and Trauma, 30(3), 232-238. DOI: 10.1016/j.mporth.2016.04.015
  • Brown, L.E., & Weir, J.P. (2001). ASEP procedures recommendation I: accurate assessment of muscular strength and power. Journal of Exercise Physiology Online, 4(3), 1-21.
  • Can, F., Yilmaz, I., & Erden, Z. (2004). Morphological characteristics and performance variables of women soccer players. The Journal of Strength & Conditioning Research, 18(3), 480-485. DOI: 10.1519/12032.1
  • Cheng, K.B. (2008). The relationship between joint strength and standing vertical jump performance. Journal of Applied Biomechanics, 24(3), 224-233. DOI: 10.1123/jab.24.3.224
  • Coopoo, Y., Williams, K.T., Fortuin, C., & Green, A. (2019). Anthropometric and physical performance attributes of first division female football players in Gauteng province, South Africa. African Journal for Physical Activity and Health Sciences (AJPHES), 25(3), 433-443.
  • Davis, J.A., & Brewer, J. (1993). Applied Physiology of Female Soccer Players. Sports Medicine. 16(3), 180-189.
  • Del Coso, J., Rodas, G., Buil, M.A., Sanchez-Sanchez, J., Lopez, P., Gonzalez-Radenas, J., & Moreno-Perez, V. (2022). Association of the actn3 rs1815739 polymorphism with physical performance and ınjury ıncidence in professional women football players. Genes, 13(9), 1635-1648. DOI: 10.3390/genes13091635
  • Dülger, O., & Orhan, B. (2021) The effect of leg strength and jump performance on balance in handball players. Middle Black Sea Journal of Health Science, 7(2), 168-177. DOI: 10.19127/mbsjohs.889226
  • Gardasevic, J., & Bjelica, D. (2020). Body composition differences between football players of the three top football clubs. International Journal of Morphology, 38(1), 153-158. DOI: 10.4067/S0717-95022020000100153
  • Hammami, M.A., Klifa, W.B., Ayed, K.B., Mekni, R., Saeidi, A., Jan, J., & Zouhal, H. (2020). Physical performances and anthropometric characteristics of young elite north-african female soccer players compared with international standards. Science & Sports, 35(2), 67-74. DOI: 10.1016/j.scispo.2019.06.005
  • Hoch, M.C., Staton, G.S., & Mckeon, P.O. (2011). Dorsiflexion range of motion significantly influences dynamic balance. Journal of Science and Medicine in Sport, 14(1), 90–92. DOI:10.1016/j.jsams.2010.08.001
  • Hrysomallis, C. (2011). Balance ability and athletic performance. Sports Medicine, 41 (3), 221-232. DOI: 10.2165/11538560-000000000-00000
  • Huang, S., Zhang, H.J., Wang, X., Lee, W.C.C., & Lam, W.K. (2022). Acute effects of soleus stretching on ankle flexibility. Dynamic balance and speed performances in soccer players. Biology, 11(3), 374-385. DOI: 10.3390/biology11030374
  • Ingebrigtsen, J., Dillern, T., & Shalfawi, S.A. (2011). Aerobic capacities and anthropometric characteristics of elite female soccer players. The Journal of Strength & Conditioning Research, 25(12), 3352-3357. DOI: 10.1519/JSC.0b013e318215f763
  • Kang, M.H., Lee, D.K., Park, K.H., & Oh, J.S. (2015). Association of ankle kinematics and performance on the y-balance test with inclinometer measurements on the weight-bearing-lunge test. Journal of Sport Rehabilitation, 24(1), 62-67. DOI: 10.1123/jsr.2013-0117
  • Kannus, V. P. (1992). Evaluation of abnormal biomechanics of the foot and ankle in athletes. British Journal of Sports Medicine, 26(2), 83-89. DOI: 10.1136/bjsm.26.2.83
  • Kim, J.H., Park, J.H., Yoon, H.B., Lee, J.H., & Jeon, H.S. (2020). Immediate effects of high-frequency diathermy on muscle architecture and flexibility in subjects with gastrocnemius tightness. Physical Therapy Korea, 27(2), 133-139. DOI: 10.12674/ptk.2020.27.2.133
  • Kleipool, R.P., & Blankevoort, L. (2010). The relation between geometry and function of the ankle joint complex: a biomechanical review. Knee Surgery, Sports Traumatology, Arthroscopy, 18(5), 618-627. DOI: 10.1007/s00167-010-1088-2
  • Kositsky, A., Kidgell, D.J., & Avela, J. (2019). Medial gastrocnemius muscle architecture is altered after exhaustive stretch-shortening cycle exercise. Frontiers in Physiology, 10, 1511-1519. DOI:10.3389/fphys.2019.01511
  • Malloy, P., Morgan, A., Meinerz, C., Geiser, C., & Kipp, K. (2015). The association of dorsiflexion flexibility on knee kinematics and kinetics during a drop vertical jump in healthy female athletes. Knee Surgery. Sports Traumatology, Arthroscopy, 23(12), 3550-3555. DOI: 10.1007/s00167-014-3222-z
  • Menadue, C., Raymond, J., Kilbreath, S.L., Refshauge, K.M., & Adams, R. (2006). Reliability of two goniometric methods of measuring active inversion and eversion range of motion at the ankle. BMC Musculoskeletal Disorders, 7(1), 1-8. DOI: 10.1186/1471-2474-7-60
  • Menz, H.B., Morris, M.E., & Lord, S.R. (2006). Foot and ankle risk factors for falls in older people: a prospective study. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences, 61(8), 866-870. DOI: 10.1093/gerona/61.8.866
  • Nashner L.M. (1997). Practical biomechanics and physiology of balance. ın: Handbook of balance function testing. San Diego (CA). Singular Publishing Group. 261-279. Nevill, A., Holder, R., & Watts, A. (2009). The changing shape of “successful” professional footballers. Journal of Sports Sciences, 27(5), 419-426. DOI: 10.1080/02640410802668676 Ostenberg, A., Roos, E., Ekdah, C., & Roos, H. (1998). Isokinetic knee extensor strength and functional performance in healthy female soccer players. Scandinavian Journal of Medicine & Science in Sports, 8(5), 257-264. DOI: 10.1111/j.1600-0838.1998.tb00480.x
  • Otman, A.S., & Kose, N. (2014). Tedavi Hareketlerinde Temel Değerlendirme Prensipleri. 11. Baskı. Ankara. Pelikan Kitabevi. 91-95.
  • Özsoy, G., Sözen, H., & Soylu, A.R. (2022). The effect of trunk extensors and abdomınal muscle fatıgue on statıc and dynamıc balance. Kinesiologia Slovenica, 28(3), 136-153. DOI: 10.52165/kinsi.28.3.136-153
  • Park, J., Shim, J., Kim, S., Namgung, S., Ku, I., Cho, M., & Roh, H. (2017). Application of massage for ankle joint flexibility and balance. Journal of Physical Therapy Science, 29(5), 789-792. DOI: 10.1589/jpts.29.789
  • Reilly, T., Bangsbo, J., & Franks, A. (2000). Anthropometric and physiological predispositions for elite soccer. Journal of Sports Sciences, 18(9), 669-683. DOI: 10.1080/02640410050120050
  • Rokaya, A., Roshan, P., & D’Souza, C.J. (2021). Relationship between dynamic balance and agility in trained soccer players—A correlational study. International Journal of Scientific and Research Publications, 11(7), 127-132. DOI: 10.29322/IJSRP.11.07.2021.p11517
  • Sarıalioğlu, N. (2019). Analysis of the relationship between proprioceptive sensory functions and body mass ındex parameters of football and volleyball players. The Journal of International Anatolia Sport Science, 4(2), 12-16. DOI: 10.5505/jiasscience.2019.43534
  • Shafizadegan, Z., Baharlouei, H., Khoshavi, O., Garmabi, Z., & Fereshtenejad, N. (2020). Evaluating the short-term effects of kinesiology taping and stretching of gastrocnemius on postural control: A randomized clinical trial. Journal of Bodywork and Movement Therapies, 24(2), 196-201. DOI: 10.1016/j.jbmt.2019.11.003. Epub 2019 Nov 23.
  • Sözen, H., & Akyıldız, C. (2019). Balance and balance ın sports scıences evaluatıon. Ankara: Gece Akademi.
  • Sporis, G., Dujic, I., Trajkovic, N., Milanovic, Z., & Madic, D. (2017). Relationship between morphological characteristics and match performance in junior soccer players. International Journal of Morphology, 35(1), 37-41. DOI:10.4067/S0717-95022017000100007
  • Tabrizi, H.B., Abbasi, A., & Sarvestani, H.J. (2013). Comparing the static and dynamic balances and their relationship with the anthropometrical characteristics in the athletes of selected sports. Middle-East Journal of Scientific Research, 15(2), 216-221. DOI: 10.5829/idosi.mejsr.2013.15.2.7426
  • Vincent, J., Kian, E.M., Pedersen, P.M., Kuntz, A., & Hill, J.S. (2010). England expects English newspapers’ narratives about the English football team in the 2006 world cup. International Review for the Sociology of Sport, 45(2), 199-223. DOI:10.1177/1012690209360084
  • Winter, D.A., Patla, A.E., & Frank, J.S. (1990). Assessment of balance control in humans. Medical Progress Through Technology, 16(1-2), 31-51. PMID: 2138696
  • Yun, S.J., Kim, M.H., Weon, J.H., Kim, Y., Jung, S.H., & Kwon, O.Y. (2016). Correlation between toe flexor strength and ankle dorsiflexion during the countermovement jump. Journal of Physical Therapy Science, 28(8), 2241-2244. DOI: 10.1589/jpts.28.2241