Psychometric Properties of the General Movement Optimality Score using Rasch Measurement.

Journal of applied measurement Pub Date : 2020-01-01
Vanessa Maziero Barbosa, Everett V Smith, Arend Bos, Giovanni Cioni, Fabrizio Ferrari, Andrea Guzzetta, Peter B Marschik, Jasmin Pansy, Berndt Urlesberger, Hong Yang, Christa Einspieler
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Abstract

Aim: To explore the psychometric properties of the general movements optimality score (GMOS) by examining its dimensionality, rating scale functioning, and item hierarchies using Rasch measurement.

Methods: Secondary data analysis of the GMOS data for video-recording of 383 infants with uni-, multidimensional, and mixed Rasch partial credit models. Videos were scored based on the global General Movement Assessment categories, and on the amplitude, speed, spatial range, proximal and distal rotations, onset and offset, tremulous and cramped components of the upper and lower extremities (21 items), resulting in the GMOS.

Results: The GMOS data fits best to a unidimensional mixed Rasch model with three different classes of infants, with all but two items contributing to the infants' separation. Rating scales functioned well for 19 items. Item difficulty hierarchies varied depending on infants' class. No floor effect and no substantive gaps between item difficulty estimates were found.

Conclusion: The GMOS has strong psychometric properties to distinguish infants with different functional motor performance and provides a quantitative measure of quality of movement.

Interpretation: The GMOS can be confidently used to assist with early diagnosis, grade motor performance, and provide a solid base to study individual general movement developmental trajectories.

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用Rasch测量法研究一般运动最优性得分的心理测量特性。
目的:利用Rasch测量法考察一般动作最优性得分的维度、评定量表功能和项目层次,探讨其心理测量特性。方法:采用单、多维和混合的Rasch部分信用模型对383例婴儿录像的GMOS数据进行二次数据分析。视频评分基于全球一般运动评估类别,以及幅度、速度、空间范围、近端和远端旋转、开始和偏移、上肢和下肢的震颤和局促成分(21个项目),从而产生GMOS。结果:GMOS数据最适合三种不同类别婴儿的一维混合Rasch模型,除两项外,其他所有项目都对婴儿分离有影响。评定量表在19个项目中表现良好。项目难度等级因婴儿类别而异。在项目难度估计之间没有发现地板效应和实质性差距。结论:GMOS具有较强的心理测量特性,可用于区分不同功能运动表现的婴儿,为运动质量的定量测量提供了依据。解释:GMOS可以用于早期诊断,运动表现分级,并为研究个体一般运动发展轨迹提供坚实的基础。
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