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The impact of fatigue on static balance in people with chronic ankle instability

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
: The aim of the study was to assess static postural stability under fatigue in subjects with chronic ankle instability – “copers” in comparison with healthy controls. Methods: We conducted a prospective study on a group of 60 young, physically active subjects, divided into 3 groups: I – 14 subjects with unilateral ankle instability, II – 15 subjects with bilateral ankle instability, III – 31 healthy subjects, without ankle instability. The fatigue trial was based on modified Short-Term Fatigue Protocol. Static stabilography was performed with the use of HUR platform. Results: showed an increase in the value of COP trace length after fatigue test in study population I. The level of COP trace length Z before fatigue was significantly lower than after fatigue. Subjects from study population I had higher levels of COP trace length Z in comparison with the control group. The main effect for the group also proved to be significant. Study population I had higher levels of COP trace length Z in comparison with the control group. For the measurement after fatigue, there was significant difference only between the study population I and the control group. Conclusions: The incidence of structural ankle instability was not correlated with functional instability. Subjects with ankle instability, or “copers”, had good functional levels, enabling them to perform sports activities. “Copers” had weakened proprioception in static stabilography tests. Short and intense fatigue protocol weakened the ability to maintain balance in static stabilography test with eyes closed.
Rocznik
Strony
151--160
Opis fizyczny
Bibliogr. 31 poz., tab., wykr.
Twórcy
  • Faculty of Physiotherapy, Józef Piłsudski University of Physical Education in Warsaw, Warsaw, Poland
  • Faculty of Physiotherapy, Józef Piłsudski University of Physical Education in Warsaw, Warsaw, Poland
Bibliografia
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  • [2] BONNEL F., TOULLEC E., MABIT C., TOURNÉ Y., Chronic ankle instability: Biomechanics and pathomechanics of ligaments injury and associated lesions, Orthop. Traumatol. Surg. Res., 2010, 96, 4, 424–432, DOI: 10.1016/j.otsr.2010.04.003.
  • [3] BOROTIKAR B.S., NEWCOMER R., KOPPES R., MCLEAN S.G., Combined effects of fatigue and decision making on female lower limb landing postures: central and peripheral contributions to ACL injury risk, Clin. Biomech. (Bristol, Avon), 2008, Vol. 23, No. 1, 81–92, DOI: 10.1016/ J.CLINBIOMECH.2007.08.008.
  • [4] CHAPPELL J.D., HERMAN D.C., KNIGHT B.S., KIRKENDALL D.T., WILLIAM E.G., BING Yu, Effect of fatigue on knee kinetics and kinematics in stop-jump tasks, Am. J. Sports Med., 2005, 33, 7, 1022–1029, DOI: 10.1177/0363546504273047.
  • [5] CORTES N., GRESKA E., KOLLOCK R., AMBEGAONKAR J., ONATE J.A., Changes in lower extremity biomechanics due to a short-term fatigue protocol, J. Athl. Train., 2013, 48, 3, 306–313, DOI: 10.4085/1062-6050-48.2.03.
  • [6] COVENTRY E., O’CONNOR K.M., HART B.A., EARL J.E., EBERSOLE K.T., The effect of lower extremity fatigue on shock attenuation during single-leg landing, Clin. Biomech., 2006, 21, 10, 1090–1097, DOI: 10.1016/ j.clinbiomech.2006.07.004.
  • [7] DE NORONHA M., REFSHAUGE K.M., HERBERT R.D., KILBREATH S.L., Do voluntary strength, proprioception, range of motion or postural sway predict occurrence of lateral ankle sprain?, BJSM, 2006, 40, 10, 824–828, DOI: 10.1136/bjsm.2006.029645.
  • [8] FORESTIER N., TEASDALE N., NOUGIER V., Alteration of the position sense at the ankle induced by muscular fatigue in humans, Med. Sci. Sports Exerc., 2002, 34, 1, 117–122, DOI: 10.1097/00005768-200201000-00018.
  • [9] FU S.N., HUI-CHAN C.W., Modulation of prelanding lowerlimb muscle responses in athletes with multiple ankle sprains, Med. Sci. Sports Exerc., 2007, 39, 10, 1774–1783, DOI: 10.1249/mss.0b013e3181343629.
  • [10] GEHRING D., WISSLER S., MORNIEUX G., GOLLHOFER A., How to sprain your ankle – a biomechanical case report of an inversion trauma, J. Biomech., 2013, 46, 1, DOI: 10.1016/ j.jbiomech.2012.09.016.
  • [11] GOTTLIEB U., HOFFMAN J.R., SPRINGER S., 3 Dynamic postural control in individuals with and without chronic ankle instability-do the modified star-excursion balance test and jump – landing stabilization have the same control mechanism?, Phys. Ther. Sport, 2023, 60, 104–111, DOI: 10.1016/ j.ptsp.2023.01.011. Online ahead of print.
  • [12] HALE S.A., HERTEL J., Reliability and sensitivity of the foot and ankle disability index in subjects with chronic ankle instability, J. Athl. Train., 2005, 40, 1, 35–40.
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  • [17] HERZOG M.M., KERR Z.Y., MARSHALL S.W., WIKSTROM E.A., Epidemiology of ankle sprains and chronic ankle instability, J. Athl. Train., 2019, 54, 603–610.
  • [18] KAMINSKI T.W., HARTSELL H.D., Factors contributing to chronic ankle instability: A strength perspective, J. Athl. Train., 2002, 37, 4, 394–405. National Athletic Trainers’ Association Inc., Accessed: May 09, 2021. [Online]. Available: www.journalofathletictraining.org.
  • [19] KOBAYASHI T., GAMADA K., Lateral Ankle Sprain and Chronic Ankle Instability – A Critical Review, Foot Ankle Spec., 2014, 7, 4, 298–326, DOI: 10.1177/1938640014539813.
  • [20] MCLEOD M.M., GRIBBLE P.A., PIETROSIMONE B.G., Chronic ankle instability and neural excitability of the lower extremity, J. Athl. Train., 2015, 50, 8, 847–853, DOI: 10.4085/ 1062-6050-50.4.06.
  • [21] MOHAMMADI F., ROOZDAR A., Effects of Fatigue Due to Contraction of Evertor Muscles on the Ankle Joint Position Sense in Male Soccer Players, Am. J. Sports Med., 2010, 38, 4, 824–828, DOI: 10.1177/0363546509354056.
  • [22] QUAMMEN D., CORTES N., VAN LUNEN B.L., LUCCI S., RINGLEB S.I., ONATE J., Two different fatigue protocols and lower extremity motion patterns during a stop-jump task, J. Athl. Train., 2012, 47, 1, 32–41.
  • [23] SANTAMARIA L.J., WEBSTER K.E., The Effect of Fatigue on Lower Limb Biomechanics During Single-Limb Landings: A Systematic Review, J. Orthop. Sport. Phys. Ther., 2010, 40, 8, 464–473, DOI: 10.2519/jospt.2010.3295.
  • [24] STEIB S., ZECH A., HENTSCHKE C., PFEIFER K., Fatigue- -induced alterations of static and dynamic postural control in athletes with a history of ankle sprain, J. Athl. Train., 2013, 48, 2, 203–208, DOI: 10.4085/1062-6050-48.1.08.
  • [25] WEBSTER C.A., NUSSBAUM M.A., Localized ankle fatigue development and fatigue perception in adults with or without chronic ankle instability, J. Athl. Train., 2016, DOI: 10.4085/ 1062-6050-51.9.02.
  • [26] WEBSTER K.A., PIETROSIMONE B.G., GRIBBLE P.A., Muscle activation during landing before and after fatigue in individuals with or without chronic ankle instability, J. Athl. Train., 2016, 51, 8, 629–636, DOI: 10.4085/1062-6050-51.10.01.
  • [27] WIKSTROM E.A., FOURNIER K.A., MCKEON P.O., Postural control differs between those with and without chronic ankle instability, Gait Posture, 2010, 32, 1, 82–86, DOI: 10.1016/ j.gaitpost.2010.03.015.
  • [28] WIKSTROM E.A., NAIK S., LODHA N., CAURAUGH J.H., Bilateral balance impairments after lateral ankle trauma: A systematic review and meta-analysis, Gait and Posture, 2010, 31, 4, 407–414, DOI: 10.1016/j.gaitpost.2010.02.004.
  • [29] WIKSTROM E.A., TILLMAN M.D., CHMIELEWSKI T.L., CAURAUGH J.H., NAUGLE K.E., BORSA P.A., Self-assessed disability and functional performance in individuals with and without ankle instability: A case control study, J. Orthop. Sports Phys. Ther., 2009, 39, 6, 458–467, DOI: 10.2519/ jospt.2009.2989.
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  • [31] YAGGIE J.A., MCGREGOR S.J., Effects of isokinetic ankle fatigue on the maintenance of balance and postural limits, Arch. Phys. Med. Rehabil., 2002, 83, 2, 224–228, DOI: 10.1053/ apmr.2002.28032.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-389ed9b4-b306-4de8-99b4-b73c80ecb152
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