The Ottawa Hospital Rehabilitation Centre, Ottawa, Canada.
Gait Posture. 2010 Mar;31(3):375-9. doi: 10.1016/j.gaitpost.2010.01.003.
An improved understanding of factors related to dynamic stability in lower-limb prosthesis users is important, given the high occurrence of falls in this population. Current methods of assessing stability are unable to adequately characterize dynamic stability over a variety of walking conditions. F-Scan Mobile has been used to collect plantar pressure data and six extracted parameters were useful measures of dynamic stability. The aim of this study was to investigate dynamic stability in individuals with unilateral transtibial amputation based on these six parameters. Twenty community ambulators with a unilateral transtibial amputation walked over level ground, uneven ground, stairs, and a ramp while plantar pressure data were collected. For each limb (intact and prosthetic) and condition, six stability parameters related to plantar center-of-pressure perturbations and gait temporal parameters, were computed from the plantar pressure data. Parameter values were compared between limbs, walking condition, and groups (unilateral transtibial prosthesis users and able-bodied subjects). Differences in parameters were found between limbs and conditions, and between prosthesis users and able-bodied individuals. Further research could investigate optimizing parameter calculations for unilateral transtibial prosthesis users and define relationships between potential for falls and the dynamic stability measures.
鉴于下肢假体使用者跌倒发生率较高,深入了解与动态稳定性相关的因素非常重要。目前评估稳定性的方法无法充分描述各种行走条件下的动态稳定性。F-Scan Mobile 已被用于收集足底压力数据,其中提取的六个参数是动态稳定性的有用衡量指标。本研究旨在基于这六个参数来研究单侧胫骨截肢者的动态稳定性。20 名单侧胫骨截肢的社区步行者在水平地面、不平坦地面、楼梯和斜坡上行走时,收集足底压力数据。对于每个肢体(健全和假肢)和条件,从足底压力数据中计算与足底中心压力扰动和步态时间参数相关的六个稳定性参数。比较了肢体之间、行走条件之间以及组之间(单侧胫骨假体使用者和健全个体)的参数值。在肢体和条件之间以及假体使用者和健全个体之间发现了参数差异。进一步的研究可以探讨针对单侧胫骨假体使用者优化参数计算,并定义跌倒的可能性与动态稳定性测量之间的关系。