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首页> 外文期刊>Quality of life research: An international journal of quality of life aspects of treatment, care and rehabilitation >Nonparametric IRT analysis of Quality-of-Life Scales and its application to the World Health Organization Quality-of-Life Scale (WHOQOL-Bref).
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Nonparametric IRT analysis of Quality-of-Life Scales and its application to the World Health Organization Quality-of-Life Scale (WHOQOL-Bref).

机译:生活质量量表的非参数IRT分析及其在世界卫生组织生活质量量表(WHOQOL-Bref)中的应用。

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BACKGROUND: This study investigates the usefulness of the nonparametric monotone homogeneity model for evaluating and constructing Health-Related Quality-of-Life Scales consisting of polytomous items, and compares it to the often-used parametric graded response model. METHODS: The nonparametric monotone homogeneity model is a general model of which all known parametric models for polytomous items are special cases. Merits, drawbacks, and possibilities of nonparametric and parametric models and available software are discussed. Particular attention is given to the monotone homogeneity model (also known as the Mokken model), and the often-used parametric graded response model. RESULTS: Data from the WHOQOL-Bref were analyzed using both the monotone homogeneity model and the graded response model. The monotone homogeneity model analysis yielded unidimensional scales for each content domain. Scalability coefficients further showed that some items have limited scalability with respect to the other items in the same scale. The parametric IRT analyses lead to the rejection of some of the items. CONCLUSIONS: The nonparametric monotone homogeneity model is highly suited for data analysis in a health-related quality-of-life context, and the parametric graded response model may add interesting features to measurement provided the model fits the data well.
机译:背景:本研究调查了非参数单调同质性模型在评估和构建由多义项目组成的健康相关生活质量量表中的有用性,并将其与常用的参数分级反应模型进行比较。方法:非参数单调同质性模型是一个通用模型,其中所有已知的多模项的参数模型都是特例。讨论了非参数和参数模型以及可用软件的优缺点和可能性。特别注意单调同质性模型(也称为Mokken模型)和经常使用的参数化分级响应模型。结果:使用单调同质性模型和分级响应模型对WHOQOL-Bref的数据进行了分析。单调同质性模型分析得出每个内容域的一维尺度。可伸缩性系数进一步表明,相对于相同规模的其他项目,某些项目的可伸缩性有限。参数IRT分析导致某些项目被拒绝。结论:非参数单调同质性模型非常适合在与健康相关的生活质量环境中进行数据分析,并且参数分级响应模型可以为测量添加有趣的功能,前提是该模型非常适合数据。

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