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一种新型临床步态评估量表在特发性踮脚步态儿童中的可靠性研究-初步研究。

Reliability of a New Clinical Gait Assessment Scale for Children with Idiopathic Toe Walking Gait - A Pilot Study.

机构信息

Department of Physical Therapy, Steinhardt School of Culture, Education and Human Development, New York University, New York, NY, USA.

出版信息

Phys Occup Ther Pediatr. 2020;40(6):669-680. doi: 10.1080/01942638.2020.1744787. Epub 2020 Apr 5.

Abstract

AIMS

Children with idiopathic toe walking (ITW) gait are increasingly referred to physical therapists. The purpose of this study was to evaluate the intra-rater and inter-rater reliability of the Clinical Gait Assessment Scale (CGAS), a newly developed observational rating scale.

METHODS

Four raters evaluated videos of four children. Foot, arm and head/trunk movement was scored as children walked over four surfaces. Intra-class correlation coefficients (ICC), model (3,k) were calculated to determine intra-rater and inter-rater reliability of each dependent variable.

RESULTS

The key findings of this study indicate robust intra- and inter-rater reliability, particularly of the foot (Inter-rater reliability, ICC (3,2)=0.9) and head and trunk (Inter-rater reliability, ICC (3,2)=1.0) subsections. Arm movements were more challenging to rate and showed moderate reliability (Inter-rater reliability, ICC (3,2)=0.7). Highest total impairment score; the highest value occurred while walking on the obstacle course (38 ± 29).

CONCLUSIONS

Overall, the CGAS showed adequate/acceptable reliability across different surfaces (linoleum, textured surface, narrow base, obstacle), however the obstacle surface was most challenging surface to the rater.

摘要

目的

特发性足尖行走(ITW)步态的儿童越来越多地被转介给物理治疗师。本研究的目的是评估新开发的观察性评定量表——临床步态评估量表(CGAS)的内部和外部观察者的可靠性。

方法

4 名评估者评估了 4 名儿童的视频。当儿童在四种表面上行走时,对脚、手臂和头部/躯干的运动进行评分。使用组内相关系数(ICC)、模型(3,k)来确定每个因变量的内部和外部观察者的可靠性。

结果

这项研究的主要发现表明,该量表具有很强的内部和外部观察者可靠性,特别是脚部(ICC(3,2)=0.9)和头部/躯干(ICC(3,2)=1.0)的评分。手臂运动评分较难,可靠性为中等(ICC(3,2)=0.7)。总损伤评分最高;在障碍物表面行走时得分最高(38±29)。

结论

总体而言,CGAS 在不同表面(油毡、纹理表面、窄基底、障碍物)上具有足够/可接受的可靠性,然而,障碍物表面是评分者最具挑战性的表面。

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