Literature DB >> 24238978

Biomechanical mechanisms of toe-out gait performance in people with and without knee osteoarthritis.

Christopher K Cochrane1, Judit Takacs1, Michael A Hunt2.   

Abstract

BACKGROUND: Toe-out gait modification (increased toe-out angle) has been proposed to decrease medial knee joint loading and slow disease progression in patients with knee osteoarthritis. However, the manner in which toe-out gait modification is performed is unknown. The purposes of this study were to assess the biomechanical strategies of achieving a toe-out gait, and to compare these strategies between older individuals with knee osteoarthritis and young, healthy individuals.
METHODS: Lower limb biomechanics were evaluated for ten patients with knee osteoarthritis and for ten young, healthy individuals during treadmill walking. Two trials, consisting of natural gait followed by a ten degree increase in toe-out angle were performed. Transverse plane rotations of the thigh, shank and foot segments were calculated and compared between walking conditions and groups.
FINDINGS: External rotation changes with toe-out were significantly different between the thigh and shank, and thigh and foot (P<0.001), but not between the shank and foot (P=0.48). External rotation at each segment was not significantly different (P>0.05) between groups, with the exception of thigh rotation during natural gait (P=0.04).
INTERPRETATION: Current findings suggest that increased toe-out gait is primarily achieved through rotation of the shank and foot, with less contribution from the thigh, and those individuals with knee osteoarthritis perform a toe-out gait biomechanically similar to young, healthy individuals. Gait modification programs should address individuals' limitations, such as joint stiffness, to ensure functional performance of toe-out gait modification.
© 2013.

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Mesh:

Year:  2013        PMID: 24238978     DOI: 10.1016/j.clinbiomech.2013.10.015

Source DB:  PubMed          Journal:  Clin Biomech (Bristol, Avon)        ISSN: 0268-0033            Impact factor:   2.063


  2 in total

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Authors:  Michael T Cibulka; Kyle Winters; Teri Kampwerth; Blake McAfee; Lisa Payne; Tara Roeckenhaus; Sandy A Ross
Journal:  Int J Sports Phys Ther       Date:  2016-06

2.  Static and Dynamic Predictors of Foot Progression Angle in Individuals with and without Diabetes Mellitus and Peripheral Neuropathy.

Authors:  Ericka N Merriwether; Mary K Hastings; Michael J Mueller; Kathryn L Bohnert; Michael J Strube; Darrah R Snozek; David R Sinacore
Journal:  Ann Gerontol Geriatr Res       Date:  2016-07-22
  2 in total

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