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Updated: Feb 1, 2026

Sit-to-stand-and-walk from 120% Knee Height: A Novel Approach to Assess Dynamic Postural Control Independent of Lead-limb
Published on: August 30, 2016
Local Dynamic Stability of the Locomotion of Lower Extremity Joints and Trunk During Backward Upslope Walking
Yu Wu1,2,3, Anmin Liu4, Ke-Rong Dai1,2,3
1Department of Orthopedic Surgery & Shanghai Key Laboratory of Orthopaedic Implant, Shanghai Ninth People's Hospital of Shanghai Jiao Tong University , Shanghai , China.
Abstract:
Backward slope walking was considered as a practical rehabilitation and training skill. However, its gait stability has been hardly studied, resulting in its limited application as a rehabilitation tool. In this study, the effect of walking direction and slope grade were investigated on the local dynamic stability of the motion of lower extremity joints and trunk segment during backward and forward upslope walking (BUW/FUW). The local divergence exponents (λ) of 16 adults were calculated during their BUW and FUW at grades of 0%, 5%, 10%, and 15%. Mean standard deviation over strides (MeanSD) was analyzed as their gait variability. Backward walking showed larger λ for the abduction-adduction and rotational angles of knee and ankle on inclined surface than forward walking, while λ for hip flexion-extension angle at steeper grades was opposite. No grade effect for any joint existed during BUW, while λ increased with the increasing grade during FUW. As to the trunk, walking direction did little impact on λ. Still, significant larger λ for its medial-lateral and vertical motion were found at the steeper grades during both FUW and BUW. Results indicate that during BUW, the backward direction may influence the stability of joint motions, while the trunk stability was challenged by the increasing grades. Therefore, BUW may be a training tool for the stability of both upper and lower body motion during gait.
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