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Lower Limb Kinematic and Kinetic Differences between Transtibial Amputee Fallers and Non-Fallers

机译:经胫截肢者与非跌倒者下肢运动学和运动学差异

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摘要

Stair walking relies on concentric contraction of the ankle plantarflexor and knee extensor muscles, which are either absent or weakened in transtibial amputees. As a result the risk of falling is increased in this population. The aim of this study was to compare the gait patterns of transtibial amputee fallers and non-fallers during stair ascent. Eleven participants (fallers = 6; non-fallers = 5) walked along a 3-m walkway and ascended a three-step staircase with handrails, at their self-selected pace, while three-dimensional kinematic data were collected from the lower limbs. A force plate was embedded into the first step and kinetic data were measured for the intact lead limb only. The fallers walked significantly faster (p = 0.00) and exhibited less hip flexion (p = 0.05) and less anterior pelvic tilt (p = 0.04) compared to the non-fallers. The fallers had significantly greater first and second peak vertical ground reaction force (GRF) on the intact limb than the non-fallers (p = 0.05 and p = 0.01, respectively) contributing to the significantly larger ankle (p = 0.02) and hip moments (p = 0.04). These findings suggested the amputee non-fallers performed mechanically demanding tasks more cautiously. Two of the participants self-selected a ‘step to’ gait pattem, ascending one step at a time. This may be considered a compensatory mechanism for the lack of ankle mobility and functional muscle performance in these two transtibial amputees.
机译:楼梯行走依赖于脚踝plant屈肌和膝盖伸肌的同心收缩,而在截肢截肢者中这种肌肉既不存在也没有减弱。结果,该人群中跌倒的风险增加。这项研究的目的是比较在楼梯上升过程中经胫骨截肢者和非坠落者的步态模式。 11名参与者(跌倒者= 6;非跌倒者= 5)沿着3米长的人行道行走,并以自己选择的速度爬上了带有扶手的三步楼梯,同时从下肢收集了三维运动学数据。将测力板嵌入第一步,仅测量完整的前肢的动力学数据。与非跌倒者相比,跌倒者的行走速度明显加快(p = 0.00),髋关节屈曲较少(p = 0.05),骨盆前倾较小(p = 0.04)。下降者在完整肢体上的第一和第二峰值垂直地面反作用力(GRF)明显大于非下降者(分别为p = 0.05和p = 0.01),从而显着增加了脚踝(p = 0.02)和髋部力矩(p = 0.04)。这些发现表明,非截肢者在执行机械要求较高的任务时要更加谨慎。其中两名参与者自行选择了“步态”步态模式,每次向上一步。这可能被认为是这两种经皮截肢者缺乏踝关节活动性和功能性肌肉表现的补偿机制。

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