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本文引用的文献

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Generalizability theory: a practical guide to study design, implementation, and interpretation.概化理论:研究设计、实施与解读实用指南
J Sch Psychol. 2014 Feb;52(1):13-35. doi: 10.1016/j.jsp.2013.11.008. Epub 2013 Dec 26.
2
Generalizability theory for the perplexed: a practical introduction and guide: AMEE Guide No. 68.通用化理论研究:实用入门与指导——AMEE 指南第 68 号。
Med Teach. 2012;34(11):960-92. doi: 10.3109/0142159X.2012.703791.

如何优化测量协议:以使用概化理论评估测量可靠性为例

How to Optimize Measurement Protocols: An Example of Assessing Measurement Reliability Using Generalizability Theory.

作者信息

Gatti Anthony A, Stratford Paul W, Brisson Nicholas M, Maly Monica R

机构信息

School of Rehabilitation Sciences, McMaster University, Hamilton.

Julius Wolff Institute, Charité - Universitätsmedizin Berlin, Germany.

出版信息

Physiother Can. 2020 Spring;72(2):112-121. doi: 10.3138/ptc-2018-0110.

DOI:10.3138/ptc-2018-0110
PMID:32494095
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7238938/
Abstract

This article identifies how to assess multiple sources of measurement error and identify optimal measurement strategies for obtaining clinical outcomes. Obtaining, interpreting, and using information gained from measurements is instrumental in physiotherapy. To be useful, measurements must have a sufficiently small measurement error. Traditional expressions of reliability include relative reliability in the form of an intra-class correlation coefficient and absolute reliability in the form of the standard error of measurement. Traditional metrics are limited to assessing one source of error; however, real-world measurements consist of many sources of error. The measurement framework generalizability theory (GT) allows researchers to partition measurement errors into multiple sources. GT further allows them to calculate the relative and absolute reliability of any measurement strategy, thereby allowing them to identify the optimal strategy. We provide a brief comparison of classical test theory and GT, followed by an overview of the terminology and methodology used in GT, and then an example showing how GT can be used to minimize error associated with measuring knee extension power. The methodology described provides tools for researchers and clinicians that enable detailed interpretation and understanding of the error associated with their measurements.

摘要

本文确定了如何评估多种测量误差来源,并确定获取临床结果的最佳测量策略。获取、解读和使用测量所得信息在物理治疗中至关重要。为了有用,测量必须具有足够小的测量误差。传统的可靠性表达方式包括以组内相关系数形式表示的相对可靠性和以测量标准误形式表示的绝对可靠性。传统指标仅限于评估单一误差来源;然而,实际测量包含多种误差来源。测量框架通用izability理论(GT)使研究人员能够将测量误差划分为多个来源。GT还使他们能够计算任何测量策略的相对和绝对可靠性,从而使他们能够确定最佳策略。我们简要比较了经典测试理论和GT,接着概述了GT中使用的术语和方法,然后给出一个示例,展示如何使用GT将与测量膝关节伸展力量相关的误差降至最低。所描述的方法为研究人员和临床医生提供了工具,使他们能够详细解读和理解与其测量相关的误差。