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Using Non-Normal SEM to Resolve the ACDE Model in the Classical Twin Design

机译:使用非正态SEM解析经典双胞胎设计中的ACDE模型

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摘要

One of the biggest problems in classical twin studies is that it cannot estimate additive genetic (A), non-additive genetic (D), shared environmental (C), and non-shared environmental (E) effects, simultaneously, because the model, referred to as the ACDE model, has negative degrees of freedom when using Structural Equation Modeling (SEM). Therefore, instead of the ACDE model, the ACE model or the ADE model is actually used. However, using the ACE or ADE models almost always leads to biased estimates. In the present paper, the univariate ACDE model is developed using non-normal Structural Equation Modeling (nnSEM). In SEM, (1st- and) 2nd-order moments, namely, (means and) covariances are used as information. However, nnSEM uses higher-order moments as well as (1st- and) 2nd-order moments. nnSEM has a number of advantages over SEM. One of which is that nnSEM can specify models that cannot be specified using SEM because of the negative degrees of freedom. Simulation studies have shown that the proposed method can decrease the biases. There are other factors that have possible effects on phenotypes, such as higher-order epistasis. Since the proposed method cannot estimate these effects, further research on developing a more exhaustive model is needed.
机译:经典双生子研究的最大问题之一是它无法同时估算累加遗传(A),非累加遗传(D),共享环境(C)和非共享环境(E)的影响,因为该模型称为ACDE模型,当使用结构方程模型(SEM)时具有负的自由度。因此,实际上使用ACE模型或ADE模型代替ACDE模型。但是,使用ACE或ADE模型几乎总是会导致估计偏差。在本文中,使用非正态结构方程建模(nnSEM)开发了单变量ACDE模型。在SEM中,将(一阶和)二阶矩(即(均值和)协方差)用作信息。但是,nnSEM使用高阶矩以及(一阶和)二阶矩。 nnSEM比SEM具有许多优势。其中之一是nnSEM可以指定由于负自由度而无法使用SEM指定的模型。仿真研究表明,该方法可以减小偏差。还有其他因素可能会对表型产生影响,例如更高级别的上位性。由于所提出的方法无法估计这些影响,因此需要进一步研究以开发更详尽的模型。

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