Hashimoto Hiroshi, Kobayashi Toshiki, Gao Fan, Kataoka Masataka, Orendurff Michael S, Okuda Kuniharu
Graduate School of Comprehensive Rehabilitation, Osaka Prefecture University, Habikino City, Osaka, Japan; Pacific Supply co. Ltd., Daito City, Osaka, Japan.
Department of Prosthetics and Orthotics, Faculty of Health Science, Hokkaido University of Science, Sapporo, Hokkaido, Japan.
Gait Posture. 2018 Sep;65:8-14. doi: 10.1016/j.gaitpost.2018.06.119. Epub 2018 Jun 23.
Alignment affects gait of individuals with transtibial prostheses. Sagittal and coronal alignment changes of the transtibial prostheses were demonstrated to affect socket reaction moments. However, the effects of transverse alignment changes on the socket reaction moments are not known.
The aim of this study was to investigate the effects of transverse alignment changes on the socket reaction moments and temporal-spatial parameters of gait in transtibial prostheses.
The effects of transverse prosthetic alignment changes (i.e. 10° and 5° of internal and external rotations: toe-in and toe-out of the foot relative to the socket from a baseline alignment) on the sagittal and coronal socket reaction moments and temporal-spatial parameters (gait speed, cadence and step width) while walking in 9 individuals with transtibial amputation were investigated using an instrumented prosthetic pyramid adaptor and a three-dimentional (3D) motion capture system.
The transverse alignment changes demonstrated significant effects on the socket reaction moments in the coronal plane at 5% (P = 0.04), 20% (P = 0.04) and 75% (P = 0.0001) of stance phase. No significant effects were found in the socket reaction moments in the sagittal plane and the temporal-spatial parameters. The internal and external rotations of the prosthetic feet may have opposite effect in early and mid- to late-stance potentially due to changes in the spatial position of the heel (rearfoot) and toe (forefoot) of the prosthetic foot relative to the socket.
Transverse alignment of the transtibial prostheses should be tuned not only considering the symmetry in toe-out angles of the feet, but also considering the potential effects of transverse alignment changes that may affect the coronal socket reaction moments.
对线影响经胫骨假肢使用者的步态。经胫骨假肢矢状面和冠状面的对线变化已被证明会影响接受腔反作用力矩。然而,横向对线变化对接受腔反作用力矩的影响尚不清楚。
本研究的目的是探讨横向对线变化对经胫骨假肢接受腔反作用力矩和步态时空参数的影响。
使用仪器化的假肢金字塔适配器和三维(3D)运动捕捉系统,研究了9名经胫骨截肢患者行走时,横向假肢对线变化(即内旋和外旋10°和5°:相对于基线对线,足部相对于接受腔的内收和外展)对矢状面和冠状面接受腔反作用力矩以及时空参数(步速、步频和步幅)的影响。
横向对线变化在站立相的5%(P = 0.04)、20%(P = 0.04)和75%(P = 0.0001)时,对冠状面接受腔反作用力矩有显著影响。在矢状面接受腔反作用力矩和时空参数方面未发现显著影响。假肢足部的内旋和外旋在站立早期和中晚期可能具有相反的作用,这可能是由于假肢足部的足跟(后足)和足趾(前足)相对于接受腔的空间位置变化所致。
经胫骨假肢的横向对线调整不仅应考虑足部外展角度的对称性,还应考虑横向对线变化可能对冠状面接受腔反作用力矩产生的潜在影响。