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Tytuł artykułu

Postural stability disorders in patients with osteoarthritis of the hip

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The osteoarthritis of the hip dominant symptom is pain that leads to disability and to postural and gait disorders. The aim of this study was to analyze postural stability and its impact on disability and pain. The study population consisted of 60 patients and control group of 30. Group 1 (n = 30) included patients with unilateral coxarthrosis, aged 56.2 (±12.3) years, BMI 25.17 (±2.87) kg/m2. There were 16 men (53.3%). The mean age of patients in group 2 (n = 30) with bilateral coxarthrosis was 62.3 (±12.1) years; the mean BMI was 24.87 (±2.06) kg/m2. There were 15 men in this group (50%). The patients were evaluated using the WOMAC, the Harris Hip Score, VAS and the Biodex Balance System. Both study groups had stability index results different than the control group. There was a significant correlation between the stability indexes and BMI. VAS correlated with the M-L plane variance. In group 2, there were significant differences related to disability for the disability scales for all measured parameters. Balance disorder is a basic parameter found in coxathrosis. There is a statistically significant correlation between balance disorders and BMI, VAS and functional scales.
Rocznik
Strony
45--50
Opis fizyczny
Bibliogr. 30 poz., tab.
Twórcy
  • Professor A. Gruca Independent Public Research Hospital, Otwock Department of Orthopaedic Surgery, Centre of Postgraduate Medical Education, Otwock, Poland
  • Faculty of Physical Education and Sport in Biała Podlaska, Józef Piłsudski University of Physical Education in Warsaw, Biała Podlaska, Poland
  • Faculty of Rehabilitation, Józef Piłsudski University of Physical Education in Warsaw, Warsaw, Poland
autor
  • Professor A. Gruca Independent Public Research Hospital, Otwock Department of Orthopaedic Surgery, Centre of Postgraduate Medical Education, Otwock, Poland
  • Faculty of Physical Education and Sport in Biała Podlaska, Józef Piłsudski University of Physical Education in Warsaw, Biała Podlaska, Poland
  • Social Academy of Science, Physiotherapy, Warsaw, Poland
  • Professor A. Gruca Independent Public Research Hospital, Otwock Department of Orthopaedic Surgery, Centre of Postgraduate Medical Education, Otwock, Poland
autor
  • Faculty of Rehabilitation, Józef Piłsudski University of Physical Education in Warsaw, Warsaw, Poland
  • Institute of Physiotherapy, University of Rzeszów, Poland
Bibliografia
  • [1] RĄPAŁA K., WALCZAK P., TRUSZCZYŃSKA A., Etiopathogenesis of osteoarthritis of the hip, Kwart. Ortop., 2011, Vol. 2011(4), 386–395.
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  • [3] LENAERTS G., MULIER M., SPAEPEN A., VAN DER PERRE G., JONKERS I., Aberrant pelvis and hip kinematics impair hip loading before and after total hip replacement, Gait & Posture, 2009, Vol. 30(3), 296–302.
  • [4] WINTER D.A., Human balance and posture control during standing and walking, Gait & Posture, 1995, Vol. 3, 193–214.
  • [5] LEE H.J., CHOU L.S., Detection of gait instability using the center of mass and center of pressure inclination angles, Arch. Phys. Med. Rehabil., 2006, Vol. 87(4), 569–575.
  • [6] BEAULIEU M.L., LAMONTAGNE M., BEAULÉ P.E., Lower limb biomechanics during gait do not return to normal following total hip arthroplasty, Gait & Posture, 2010, Vol. 32(2), 269–273.
  • [7] FOUCHER K.C., WIMMER M.A., Contralateral hip and knee gait biomechanics are unchanged by total hip replacement for unilateral hip osteoarthritis, Gait & Posture 2012, Vol. 35(1), 61–65.
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  • [15] WINIARSKI S., CZAMARA A., Evaluation of gait kinematics and symmetry during the first two stages of physiotherapy after anterior cruciate ligament reconstruction, Acta Bioeng. Biomech., 2012, Vol. 14(2), 91–100.
  • [16] BŁAŻKIEWICZ M., WIT A., Comparison of sensitivity coefficients for joint angle trajectory between normal and pathological gait, Acta Bioeng. Biomech., 2012, Vol. 14(1), 83–91.
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  • [18] AROKOSKI J.P., LEINONEN V., AROKOSKI M.H., AALTO H., VALTONEN H., Postural control in male patients with hip osteoarthritis, Gait & Posture, 2006, Vol. 23(1), 45–50.
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  • [20] VAN EMMERIK R.E.A., REMELIUS J.G., JOHNSON M.B., CHUNG L.H., KENT-BRAUN J.A., Postural control in women with multiple sclerosis: Effects of task, vision and symptomatic fatigue, Gait & Posture, 2010, Vol. 32, 608–614.
  • [21] SELL T.C., An examination, correlation, and comparison of static and dynamic measures of postural stability in healthy, physically active adults, Phys. Ther. Sport, 2012, Vol. 13, 80–86.
  • [22] PICKERILL M.L., HARTER R.A., Validity and reliability of limitsof-stability testing: a comparison of 2 postural stability evaluation devices, J. Athl. Train, 2011, Vol. 46(6), 600–606.
  • [23] KU P.X., ABU OSMAN N.A., YUSOF A., WAN ABAS W.A., Biomechanical evaluation of the relationship between postural control and body mass index, J. Biomech., 2012, Vol. 45(9), 1638–1642.
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  • [27] QUINTANA J., ESCOBAR A., BILBAO A., AZKARATE J., GOENAGA J.I., ARENAZA J.C., Health-Related Quality of Life and Appropriateness of Knee or Hip Joint Replacement, Arch. Intern. Med., 2006, Vol. 166, 220–226.
  • [28] KERSTEN P., WHITE P.J., TENNANT A., The visual analogue WOMAC 3.0 scale-internal validity and responsiveness of the VAS version, BMC Musculoskelet Disord., 2010, Vol. 30(11), 80.
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  • [30] BROKELMAN R.B., HAVERKAMP D., VAN LOON C., HOL A., VAN KAMPEN A., VETH R., The validation of the visual analogue scale for patient satisfaction after total hip arthroplasty, Eur. Orthop. Traumatol., 2012, Vol. 3(2), 101–105.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a473f044-5801-488b-b389-a0d5ea5b830f
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