Literature DB >> 20667737

Kinematic adaptations of the hindfoot, forefoot, and hallux during cross-slope walking.

Mohsen Damavandi1, Philippe C Dixon, David J Pearsall.   

Abstract

Despite cross-slope surfaces being a regular feature of our environment, little is known about segmental adaptations required to maintain both balance and forward locomotion. The purpose of this study was to determine kinematic adaptations of the foot segments in relation to transverse (cross-sloped) walking surfaces. Ten young adult males walked barefoot along an inclinable walkway (level, 0° and cross-slope, 10°). Kinematic adaptations of hindfoot with respect to tibia (HF/TB), forefoot with respect to hindfoot (FF/HF), and hallux with respect to forefoot (HX/FF) in level walking (LW), inclined walking up-slope (IWU), i.e., the foot at the higher elevation, and inclined walking down-slope (IWD), i.e., the foot at the lower elevation, were measured. Multivariate analysis of variance (MANOVA) for repeated measures was used to analyze the data. In the sagittal plane, the relative FF/HF and HX/FF plantar/dorsiflexion angles differed across conditions (p=0.024 and p=0.026, respectively). More importantly, numerous frontal plane alterations occurred. For the HF/TB angle, inversion of IWU and eversion of IWD was seen at heel-strike (p<0.001). This pattern reversed with IWU showing eversion and IWD inversion in early stance (p=0.024). For the FF/HF angle, significant differences were observed in mid-stance with IWD revealing inversion while IWU was everted (p<0.004). At toe-off, the pattern switched to eversion of IWD and inversion of IWU (p=0.032). The information obtained from this study enhances our understanding of the kinematics of the human foot in stance during level and cross-slope walking.
Copyright © 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20667737     DOI: 10.1016/j.gaitpost.2010.07.004

Source DB:  PubMed          Journal:  Gait Posture        ISSN: 0966-6362            Impact factor:   2.840


  10 in total

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Journal:  Int J Ind Ergon       Date:  2022-01       Impact factor: 2.884

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Authors:  Kohta Ito; Koh Hosoda; Masahiro Shimizu; Shuhei Ikemoto; Takeo Nagura; Hiroyuki Seki; Masateru Kitashiro; Nobuaki Imanishi; Sadakazu Aiso; Masahiro Jinzaki; Naomichi Ogihara
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9.  Mechanical testing of frontal plane adaptability of commercially available prosthetic feet.

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10.  Identifying classifier input signals to predict a cross-slope during transtibial amputee walking.

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Journal:  PLoS One       Date:  2018-02-16       Impact factor: 3.240

  10 in total

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