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膝下截肢者的跑步步态冲量不对称性。

Running gait impulse asymmetries in below-knee amputees.

作者信息

Prince F, Allard P, Therrien R G, McFadyen B J

机构信息

Centre de Recherche Pédiatrique, Hôpital Sainte-Justine, Montréal, Canada.

出版信息

Prosthet Orthot Int. 1992 Apr;16(1):19-24. doi: 10.3109/03093649209164303.

Abstract

In running, large gait asymmetry is expected due to the inability of the foot prosthesis to comply with the kinematic demands and produce a powerful plantarflexion moment. In this work, interlimb asymmetry in below-knee (BK) amputee running gait was assessed for one rigid and three flexible keel prostheses, using vertical and anteroposterior ground reaction forces and respective impulses. Nine BK amputees and 6 controls participated in this study. The running speed was monitored by two light sensitive detectors while the ground reaction forces were measured with a Kistler force plate. Between the prosthetic side and the sound limb the impulse indicator showed greater asymmetry than the force. Interlimb asymmetry was very much present in all types of prosthesis tested but is less pronounced in the flexible keel prostheses. In the latter, the asymmetry may be associated with the force-time history modulation rather than its magnitude alone. Generally, the impulses better describe interlimb asymmetry and the forces allow a greater discrimination between prosthetic foot types.

摘要

在跑步过程中,由于足部假肢无法满足运动学要求并产生强大的跖屈力矩,预计会出现较大的步态不对称。在这项研究中,使用垂直和前后方向的地面反作用力及相应冲量,对一名佩戴刚性龙骨假肢和三名佩戴柔性龙骨假肢的膝下截肢者跑步步态的肢体间不对称性进行了评估。九名膝下截肢者和六名对照组参与了本研究。跑步速度由两个光敏探测器监测,同时使用奇石乐测力板测量地面反作用力。在假肢侧和健全肢体之间,冲量指标显示出比力更大的不对称性。在所测试的所有类型假肢中均存在明显的肢体间不对称,但在柔性龙骨假肢中不太明显。在后者中,不对称性可能与力-时间历程调制有关,而不仅仅与其大小有关。一般来说,冲量能更好地描述肢体间不对称性,而力能更清楚地区分不同类型的假肢足部。

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