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使用往复式步态矫形器者的行走力学

Walking mechanics of persons who use reciprocating gait orthoses.

作者信息

Johnson William Brett, Fatone Stefania, Gard Steven A

机构信息

Northwestern University Prosthetics Research Laboratory and Rehabilitation Engineering Research Program, Department of Physical Medicine and Rehabilitation, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA.

出版信息

J Rehabil Res Dev. 2009;46(3):435-46.

Abstract

Although ambulation with a reciprocating gait orthosis (RGO) may provide physical benefits to people with lower-limb paralysis, the high metabolic energy cost associated with ambulation limits orthosis use. The purpose of this case series was to investigate the dynamics of ambulation with RGOs to identify and better understand the potential causes of the high energy cost. Data were acquired from five regular users of RGOs. Kinematics and kinetics were measured, and the moments and powers acting at the hips and shoulders calculated. All RGO users walked with a flexed trunk and bore a large proportion of body weight through the arms during single support. Moments at the shoulder encouraged trunk extension, while moments at the hip encouraged trunk flexion. An extension moment acted on the hip at the beginning of swing, which was antagonistic to the goal of swing and contradicted the intent of the reciprocal link: to advance the swing leg. These results suggest that characteristics of RGO ambulation are consistent across users. The relationship between posture, forces acting on the walking aids, and the action of the RGO reciprocal link should be further explored because these factors likely contribute to the high metabolic cost of ambulation with an RGO.

摘要

尽管使用往复式步态矫形器(RGO)行走可能会给下肢瘫痪患者带来身体上的益处,但与行走相关的高代谢能量消耗限制了矫形器的使用。本病例系列的目的是研究使用RGO行走的动力学,以识别并更好地理解高能量消耗的潜在原因。数据来自五名RGO的常规使用者。测量了运动学和动力学,并计算了作用于髋部和肩部的力矩和功率。所有RGO使用者行走时躯干弯曲,在单支撑期间通过手臂承担很大一部分体重。肩部的力矩促使躯干伸展,而髋部的力矩促使躯干弯曲。在摆动开始时,一个伸展力矩作用于髋部,这与摆动的目标相反,也与往复连杆的意图相矛盾:推动摆动腿前进。这些结果表明,RGO行走的特征在使用者之间是一致的。姿势、作用于助行器的力以及RGO往复连杆的作用之间的关系应进一步探讨,因为这些因素可能导致使用RGO行走时的高代谢成本。

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