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一种检测步态不对称性的新方法。

A new approach to detecting asymmetries in gait.

作者信息

Shorter K Alex, Polk John D, Rosengren Karl S, Hsiao-Wecksler Elizabeth T

机构信息

Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, MC-244, 1206 W. Green Street, Urbana, IL 61801, USA.

出版信息

Clin Biomech (Bristol). 2008 May;23(4):459-67. doi: 10.1016/j.clinbiomech.2007.11.009. Epub 2008 Feb 1.

Abstract

BACKGROUND

Traditional parameters used to assess gait asymmetries, e.g., joint range of motion or symmetry indices, fail to provide insight regarding timing and magnitude of movement deviations among lower limb joints during the gait cycle. This study evaluated the efficacy of a new approach for quantifying aspects of gait asymmetry.

METHODS

Asymmetric gait was simulated by joint bracing. The dominant leg knee or ankle was constrained in ten healthy young adult males. Kinematic data were collected during three-minute trials for treadmill-walking conditions: unbraced, knee-braced, and ankle-braced. We created a regions of deviation analysis, which compared asymmetric walking (flexion/extension behavior) relative to normative (group-averaged unbraced) data. Symmetry/asymmetry between bilateral joint pairs was quantified and the behavior of specific joints relative to normative data was assessed using this analysis.

FINDINGS

While traditional measures (e.g., maximum range of motion) grossly detected asymmetries due to bracing, these new analyses identified significant regions of asymmetry. Knee-bracing affected the knee during mid-swing, but also increased ankle asymmetry during both terminal stance and mid-swing and hip asymmetry during mid-stance and mid-swing. Ankle-bracing created asymmetries at the ankle (terminal stance and initial swing) and hip (terminal stance), but none at the knee.

INTERPRETATION

Region of deviation analysis effectively identified the timing and magnitude of deviations throughout the gait cycle, and provided information about the impact of a joint-mobility perturbation on neighboring joints. This new methodology will be useful in clinical settings to identify, characterize, and monitor recovery from asymmetric behaviors associated with injuries or pathologies.

摘要

背景

用于评估步态不对称性的传统参数,如关节活动范围或对称性指数,无法提供关于步态周期中下肢关节运动偏差的时间和幅度的见解。本研究评估了一种量化步态不对称性方面的新方法的有效性。

方法

通过关节支具模拟不对称步态。在十名健康年轻成年男性中对优势腿的膝盖或脚踝进行约束。在跑步机行走条件下进行三分钟试验期间收集运动学数据:无支具、膝盖支具和脚踝支具。我们创建了偏差区域分析,将不对称行走(屈伸行为)与标准(组平均无支具)数据进行比较。使用该分析量化双侧关节对之间的对称/不对称性,并评估特定关节相对于标准数据的行为。

结果

虽然传统测量方法(如最大运动范围)能大致检测到由于支具导致的不对称性,但这些新分析确定了显著的不对称区域。膝盖支具在摆动中期影响膝盖,但在终末支撑期和摆动中期也增加了脚踝不对称性,在支撑中期和摆动中期增加了髋部不对称性。脚踝支具在脚踝(终末支撑期和初始摆动期)和髋部(终末支撑期)产生不对称性,但在膝盖处未产生。

解读

偏差区域分析有效地确定了整个步态周期中偏差的时间和幅度,并提供了关于关节活动度扰动对相邻关节影响的信息。这种新方法将在临床环境中用于识别、表征和监测与损伤或疾病相关的不对称行为的恢复情况。

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