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首页> 外文期刊>Journal of Biomechanics >Lower-limb amputee ankle and hip kinetic response to an imposed error in mediolateral foot placement
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Lower-limb amputee ankle and hip kinetic response to an imposed error in mediolateral foot placement

机译:下肢截肢者踝部和髋部动力学反应对中外侧足放置造成的错误

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摘要

Maintaining balance while walking is challenging for lower limb amputees. The effect of prosthetic foot stiffness on recovery kinetics from an error in foot placement may inform prescription practice and lead to new interventions designed to improve balance. Ten unilateral transtibial amputees were fit with two prosthetic feet with different stiffness properties in random order. After a 3-week acclimation period, they returned to the lab for testing before switching feet. Twelve non-amputees also participated in a single data collection. While walking on an instrumented treadmill, we imposed a repeatable, unexpected medial or lateral disturbance in foot placement by releasing a burst of air at the ankle just before heel strike. Three-dimensional motion capture, ground reaction force and center of pressure (COP) data were collected for two steps prior, the disturbed step and three steps after the disturbance. During undisturbed walking, coronal ankle impulse was lower by 42% for amputees wearing a stiff compared to a compliant foot (p=0.017); however, across steps, both prosthetic recovery patterns were similar compared to the sound limb and non-amputees. Peak coronal hip moment was 15-20% lower for both foot types during undisturbed walking (p < 0.001), with less change in response to the medial disturbance (p < 0.001) compared to the sound limb and non-amputees. Amputee prosthetic COP excursion was unaffected by the disturbance (2.4% change) compared to the sound limb (59% change; p < 0.001) and non-amputees (55% change; p <0.001). These findings imply that a prosthetic foot-ankle system able to contribute to ankle kinetics may improve walking balance among amputees. Published by Elsevier Ltd.
机译:下肢截肢者在行走时保持平衡是一项挑战。假肢足部僵硬对足部位置错误引起的恢复动力学的影响可能会指导处方实践,并导致设计出旨在改善平衡的新干预措施。十个单侧胫骨截肢者以随机顺序安装了两个具有不同刚度特性的假肢脚。经过3周的适应期后,他们在换脚之前返回实验室进行测试。十二名非截肢者也参加了一次数据收集。在有仪器的跑步机上行走时,我们在脚后跟撞击之前在脚踝处释放了一阵空气,从而在脚的放置过程中施加了可重复的,意外的内侧或外侧干扰。三维运动捕获,地面反作用力和压力中心(COP)数据被收集之前的两个步骤,干扰步骤和干扰后的三个步骤。在不受干扰的步行过程中,截肢者与坚硬的脚相比,冠状踝的冲动降低了42%(p = 0.017);但是,在整个步骤中,假肢的恢复方式与肢体健全的人和非截肢的人相似。与正常肢体和非截肢者相比,两种脚型在不受干扰的步行过程中峰值髋关节髋部力矩降低15-20%(p <0.001),对内侧干扰的反应变化较小(p <0.001)。与肢体健全者(变化59%; p <0.001)和非截肢者(变化55%; p <0.001)相比,截肢假肢COP偏移不受干扰(变化2.4%)的影响。这些发现表明,假肢脚踝系统能够促进踝关节动力学,可以改善被截肢者之间的步行平衡。由Elsevier Ltd.发布

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