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Unity 真空悬浮系统对模拟非水平表面的胫骨步态的影响。

Effects of the unity vacuum suspension system on transtibial gait for simulated non-level surfaces.

机构信息

The Ottawa Hospital Rehabilitation Centre, Centre for Rehabilitation Research and Development, Ottawa, Canada.

Canadian Forces Health Services, Ottawa, Canada.

出版信息

PLoS One. 2018 Jun 14;13(6):e0199181. doi: 10.1371/journal.pone.0199181. eCollection 2018.

Abstract

Walking on various surfaces encountered in everyday life requires lower limb prosthesis users to continually adapt their movement patterns. Elevated vacuum suspension systems could improve transtibial amputee gait on non-level surfaces; however, research is lacking to guide clinical practice. Twelve transtibial amputees were fitted with the Össur sleeveless vacuum suspension system (Unity). After a one month accommodation period, the CAREN-Extended system was used to evaluate gait on a self-paced treadmill when walking with continuous perturbations (medial-lateral translations, rolling hills, simulated uneven ground) with an active or inactive vacuum suspension system. Significant differences between active and inactive vacuum conditions (p<0.05) were found for some temporal-spatial and kinematic gait parameters, but the differences were small and not considered clinically significant. Our findings suggest that potential vacuum pump failures would not immediately affect gait performance in a moderately high functioning amputee population. However, residual limb volume changes over time due to the removal of elevated vacuum may adversely affect socket fit, leading to greater gait differences and reduced quality of life.

摘要

在日常生活中遇到的各种表面上行走需要下肢假肢使用者不断适应他们的运动模式。抬高真空悬吊系统可以改善胫骨截肢者在非水平表面上的步态;然而,缺乏研究来指导临床实践。12 名胫骨截肢者配备了 Ossur 无袖真空悬吊系统(Unity)。经过一个月的适应期后,使用 CAREN-Extended 系统在跑步机上以自我 paced 方式行走时评估步态,同时使用主动或不主动的真空悬吊系统进行连续扰动(内外侧平移、滚动丘陵、模拟不平坦地面)。在一些时空和运动学步态参数方面,主动和不主动真空条件之间存在显著差异(p<0.05),但差异较小,不被认为具有临床意义。我们的研究结果表明,潜在的真空泵故障不会立即影响中等功能水平的截肢者的步态表现。然而,由于去除抬高的真空导致的残肢体积随时间的变化可能会对插座的适配产生不利影响,导致更大的步态差异和降低生活质量。

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