Tytuł artykułu
Treść / Zawartość
Pełne teksty:
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Functional stability is crucial to the daily activity of an independent person. Functional balance testing is widely used in laboratories and has proven to be a reliable indicator of fall risk. So far, only few studies have paid attention to the impact of foot positioning on the results of functional balance measurements. Thirty healthy adults took part in experiment. LOS test was performed for four stance positions: preferred width, wide stance (feet parallel, 28 cm apart), narrow stance (feet together) and angle stance (heels together, toes pointing outside, 90° angle between them) with eyes opened and closed. The results of the study show significant differences between angle and narrow stance according to wide and preferred width stances – angle and narrow positions didn’t allow participants to lean as far as other positions. Vision had stabilizing influence on maximum forward lean in all tested positions.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
49--55
Opis fizyczny
Bibliogr. 40 poz., rys., wykr.
Twórcy
autor
- The Jerzy Kukuczka Academy of Physical Education, Katowice, Poland.
autor
- The Jerzy Kukuczka Academy of Physical Education, Katowice, Poland.
autor
- The Jerzy Kukuczka Academy of Physical Education, Katowice, Poland.
autor
- The Jerzy Kukuczka Academy of Physical Education, Katowice, Poland.
Bibliografia
- [1] BERG-POPPE P., CESAR G.M., TAO H., JOHNSON C., LANDRY J., Concurrent validity between a portable force plate and instrumented walkway when measuring limits of stability, International Journal of Therapy and Rehabilitation, 2018, 25 (6), 272–278, https://doi.org/10.12968/ijtr.2018.25.6.272
- [2] BŁASZCZYK J.W., BECK M., SADOWSKA D., Assessment of postural stability in young healthy subjects based on directional features of posturographic data: Vision and gender effects, Acta Neurobiologiae Experimentalis, 2014, 74 (4), 433–442.
- [3] CHOU S.W., CHENG H.Y.K., CHEN J.H., JU Y.Y., LIN Y.C., WONG M.K.A., The role of the great toe in balance performance, Journal of Orthopaedic Research, 2009, 27 (4), 549–554, https://doi.org/10.1002/jor.20661
- [4] CLARK S., ILTIS P.W., ANTHONY C.J., TOEWS A., Comparison of older adult performance during the functional-reach and limitsof-stability tests, Journal of Aging and Physical Activity, 2005, 13 (3), 266–275, https://doi.org/10.1123/japa.13.3.266
- [5] CLARK S., ROSE D.J., Evaluation of dynamic balance among community-dwelling older adult fallers: A generalizability study of the limits of stability test, Archives of Physical Medicine and Rehabilitation, 2001, 82 (4), 468–474, https://doi.org/10.1053/apmr.2001.21859
- [6] CLARK S., ROSE D.J., FUJIMOTO K., Generalizability of the limits of stability test in the evaluation of dynamic balance among older adults, Archives of Physical Medicine and Rehabilitation, 1997, 78 (10), 1078–1084, https://doi.org/10.1016/S0003-9993(97)90131-3
- [7] DUNCAN P.W., WEINER D.K., CHANDLER J., STUDENSKI S., Functional reach: a new clinical measure of balance, Journal of Gerontology, 1990, 45 (6), 192–197, https://doi.org/doi.org/10.1093/geronj/45.6.M192
- [8] FORTH K.E., FIEDLER M.J., PALOSKI W.H., Estimating functional stability boundaries for bipedal stance, Gait and Posture, 2011, 33 (4), 715–717, https://doi.org/10.1016/j.gaitpost.2010.12.024
- [9] GLAVE A.P., DIDIER J.J., WEATHERWAX J., BROWNING S.J., FIAUD V., Testing Postural Stability: Are the Star Excursion Balance Test and Biodex Balance System Limits of Stability Tests Consistent?, Gait and Posture, 2016, 43, 225–227, https://doi.org/10.1016/j.gaitpost.2015.09.028
- [10] HAMMAMI R., BEHM D.G., CHTARA M., OTHMAN A.B., CHAOUACHI A., Comparison of Static Balance and the Role of Vision in Elite Athletes, Journal of Human Kinetics, 2014, 41 (1), 33–41, https://doi.org/10.2478/hukin-2014-0030
- [11] HARRO C.C., GARASCIA C., Reliability and Validity of Computerized Force Platform Measures of Balance Function in Healthy Older Adults, Journal of Geriatric Physical Therapy (2001), 2019, 42 (3), E57–E66, https://doi.org/10.1519/JPT.0000000000000175
- [12] HARRO C.C., MARQUIS A., PIPER N., BURDIS C., Reliability and validity of force platform measures of balance impairment in individuals with Parkinson disease, Physical Therapy, 2016, 96 (12), 1955–1964, https://doi.org/10.2522/ptj.20160099
- [13] HAWORTH J., GOBLE D., PILE M., KENDALL B., BTrackS limits of stability test is a reliable assessment of volitional dynamic postural control, Gait and Posture, 2020, 80, 298–301, https://doi.org/10.1016/j.gaitpost.2020.06.024
- [14] HENRY S.M., FUNG J., HORAK F.B., Effect of stance width on multidirectional postural responses, Journal of Neurophysiology, 2001, 85 (2), 559–570, https://doi.org/10.1152/jn.2001.85.2.559
- [15] HINMAN M.R., Factors affecting reliability of the Biodex Balance System: A summary of four studies, Journal of Sport Rehabilitation, 2000, 9 (3), 240–252. https://doi.org/10.1123/jsr.9.3.240
- [16] HOLBEIN-JENNY M.A., MCDERMOTT K., SHAW C., DEMCHAK J., Validity of functional stability limits as a measure of balance in adults aged 23–73 years, Ergonomics, 2007, 50 (5), 631–646, https://doi.org/10.1080/00140130601154814
- [17] JBABDI M., BOISSY P., HAMEL M., Assessing control of postural stability in community-living older adults using performance-based limits of stability, BMC Geriatrics, 2008, 8 (1), 8, https://doi.org/10.1186/1471-2318-8-8
- [18] JURAS G., SŁOMKA K., FREDYK A., SOBOTA G., BACIK B., Evaluation of the Limits of Stability (LOS) Balance Test, Journal of Human Kinetics, 2008, 19 (1), 39–52, https://doi.org/10.2478/v10078-008-0003-0
- [19] KAPTEYN T.S., BLES W., NJIOKIKTJIEN C.J., KODDE L., MASSEN C.H., MOL J.M., Standardization in platform stabilometry being a part of posturography, Agressologie, 1983, 24 (7), 321–326.
- [20] KIRBY R.L., PRICE N.A., MACLEOD D.A., The influence of foot position on standing balance, Journal of Biomechanics, 1987, 20 (4), 423–427, https://doi.org/10.1016/0021-9290(87)90049-2
- [21] KOLLEGGER H., WÖBER C., BAUMGARTNER C., DEECKE L., Stabilizing and Destabilizing Effects of Vision and Foot Position on Body Sway of Healthy Young Subjects: A Posturographic Study, European Neurology, 1989, 29 (5), 241–245, https://doi.org/10.1159/000116420
- [22] KOLLEGGER H., BAUMGARTNER C., WÖBER C., ODER W., DEECKE L., Spontaneous body sway as a function of sex, age, and vision: Posturographic study in 30 healthy adults, European Neurology, 1992, 32 (5), 253–259, https://doi.org/10.1159/000116836
- [23] KREWER C., BERGMANN J., GRÄFRATH P.C., JAHN K., Influence of foot position on static and dynamic standing balance in healthy young adults, Hearing, Balance and Communication, 2018a, 16 (4), 208–214, https://doi.org/10.1080/21695717.2018.1507576
- [24] KUO F.C., Acceleration Pattern and Neuromuscular Response of the Spine and Ankle During the Limits-of-Stability Test, Journal of Strength and Conditioning Research, 2020, 34 (3), 857–865, https://doi.org/10.1519/JSC.0000000000003062
- [25] LININGER M.R., LEAHY T.E., HAUG E.C., BOWMAN T.G., Test-Retest Reliability of the Limits of Stability Test Performed By Young Adults Using Neurocom® Vsr Sport, International Journal of Sports Physical Therapy, 2018, 13 (5), 800–807, https://doi.org/10.26603/ijspt20180800
- [26] LIU J., SUN X., FU M., Influence of foot position in the static posturography, Lin Chuang Er Bi Yan Hou Ke Za Zhi = Journal of Clinical Otorhinolaryngology, 2002, 16 (4), 162–163, http://www.ncbi.nlm.nih.gov/pubmed/12608280
- [27] MCILROY W.E., MAKI B.E., Preferred placement of the feet during quiet stance: Development of a standardized foot placement for balance testing, Clinical Biomechanics, 1997, 12 (1), 66–70, https://doi.org/10.1016/S0268-0033(96)00040-X
- [28] MICHALSKA J., KAMIENIARZ A., BRACHMAN A., MARSZAŁEK W., CHOLEWA J., JURAS G., SŁOMKA K.J., Fall-related measures in elderly individuals and Parkinson’s disease subjects, PLoS ONE, 2020, 15 (8 August), e0236886, https://doi.org/10.1371/journal.pone.0236886
- [29] MICHALSKA J., KAMIENIARZ A., FREDYK A., BACIK B., JURAS G., SŁOMKA K.J., Effect of expertise in ballet dance on static and functional balance, Gait and Posture, 2018, 64, 68–74, https://doi.org/10.1016/j.gaitpost.2018.05.034
- [30] RAY C.T., HORVAT M., CROCE R., MASON C.R., WOLF S.L., The impact of vision loss on postural stability and balance strategies in individuals with profound vision loss, Gait and Posture, 2008, 28 (1), 58–61, https://doi.org/10.1016/j.gaitpost.2007.09.010
- [31] ROSENTHAL R., Parametric measures of effect size, [in:] The handbook of research synthesis, Russell Sage Foundation, New York, 1994, 231–244.
- [32] RUSAW D.F., RUDHOLMER E., BARNETT C.T., Development of a limits of stability protocol for use in transtibial prosthesis users: Learning effects and reliability of outcome variables, Gait and Posture, 2017, 58, 539–545. https://doi.org/10.1016/j.gaitpost.2017.08.021
- [33] SHEN X., MAK M.K.Y., Repetitive step training with preparatory signals improves stability limits in patients with Parkinson’s disease, Journal of Rehabilitation Medicine, 2012, 44 (11), 944–949, https://doi.org/10.2340/16501977-1056
- [34] SŁOMKA K.J., MICHALSKA J., MARSZAŁEK W., BACIK B., JURAS G., Forward functional stability indicator (FFSI) as a reliable measure of limits of stability, MethodsX, 2020, 7, 100756, https://doi.org/10.1016/j.mex.2019.11.029
- [35] THOMSEN M.H., STØTTRUP N., LARSEN F.G., PEDERSEN A.-M.S.K., POULSEN A.G., HIRATA R.P., Four-way-leaning test shows larger limits of stability than a circular-leaning test, Gait and Posture, 2017, 51, 10–13, https://doi.org/10.1016/j.gaitpost.2016.09.018
- [36] TOMOMITSU M., ALONSO A., MORIMOTO E., BOBBIO T., GREVE J., Static and dynamic postural control in low-vision and normal-vision adults, Clinics, 2013, 68 (4), 517–521, https://doi.org/10.6061/clinics/2013(04)13
- [37] UIMONEN S., LAITAKARI K., SORRI M., BLOIGU R., PALVA A., Effect of positioning of the feet in posturography, Journal of Vestibular Research, 1992, 2 (4), 349–356.
- [38] WING A.M., CLAPP S., BURGESS-LIMERICK R., Standing stability in the frontal plane determined by lateral forces applied to the hip, Gait and Posture, 1995, 3 (1), 38–42, https://doi.org/10.1016/0966-6362(95)90807-5
- [39] WINTER D.A., Human blance and posture control during standing and walking, Gait and Posture, 1995, 3 (4), 193–214, https://doi.org/10.1016/0966-6362(96)82849-9
- [40] WINTER D.A., PATLA A.E., PRINCE F., ISHAC M., GIELO-PERCZAK K., Stiffness Control of Balance in Quiet Standing, Journal of Neurophysiology, 1998, 80 (3), 1211–1221, https://doi.org/10.1152/jn.1998.80.3.1211
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-acd9e724-7689-4e5c-afa0-0498871c6697