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Dependence of Gene-by-Environment Interactions (GxE) on Scaling: Comparing the Use of Sum Scores, Transformed Sum Scores and IRT Scores for the Phenotype in Tests of GxE

机译:基因-环境相互作用(GxE)对缩放的依赖性:比较GxE测试中表型的总和,转换总和和IRT分数的使用

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摘要

Estimates of gene–environment interactions (GxE) in behavior genetic models depend on how a phenotype is scaled. Inappropriately scaled phenotypes result in biased estimates of GxE and can sometimes even suggest GxE in the direction opposite to its true direction. Previously proposed solutions are mathematically complex, computationally demanding and may prove impractical for the substantive researcher. We, therefore, evaluated two simple-to-use alternatives: (1) straightforward non-linear transformation of sum scores and (2) factor scores from an appropriate item response theory (IRT) model. Within Purcell’s (2002) GxM framework, both alternatives provided less biased parameter estimates, and improved false and true positive rates than using a raw sum score. These approaches are, therefore, recommended over using raw sum scores in tests of GxE. Circumstances under which IRT factor scores versus transformed sum scores should be preferred are discussed.
机译:行为遗传模型中基因-环境相互作用(GxE)的估计取决于表型的缩放方式。不适当缩放的表型会导致对GxE的估计偏差,有时甚至会提示GxE的方向与其真实方向相反。先前提出的解决方案在数学上是复杂的,在计算上是苛刻的,并且对于实质性研究者可能被证明是不切实际的。因此,我们评估了两个易于使用的替代方法:(1)总和评分的直接非线性转换,以及(2)来自适当的项目响应理论(IRT)模型的要素评分。在Purcell(2002)的GxM框架中,与使用原始总和得分相比,这两种选择都可以减少参数估计的偏差,并提高假阳性率和真阳性率。因此,建议在GxE测试中使用原始总和分数,而不推荐使用这些方法。讨论了应优先考虑IRT因子评分与转换总和评分的情况。

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