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通过特定于 ERP 的普罗克鲁斯旋转来恢复伍德和麦卡锡的 ERP 原型。

Recovering Wood and McCarthy's ERP-prototypes by means of ERP-specific procrustes-rotation.

机构信息

Institute of Psychology, University of Bonn, Kaiser-Karl-Ring 9, 53111 Bonn, Germany.

出版信息

J Neurosci Methods. 2018 Feb 1;295:20-36. doi: 10.1016/j.jneumeth.2017.11.011. Epub 2017 Nov 23.

Abstract

BACKGROUND

The misallocation of treatment-variance on the wrong component has been discussed in the context of temporal principal component analysis of event-related potentials. There is, until now, no rotation-method that can perfectly recover Wood and McCarthy's prototypes without making use of additional information on treatment-effects.

NEW METHOD

In order to close this gap, two new methods: for component rotation were proposed. After Varimax-prerotation, the first method identifies very small slopes of successive loadings. The corresponding loadings are set to zero in a target-matrix for event-related orthogonal partial Procrustes- (EPP-) rotation. The second method generates Gaussian normal distributions around the peaks of the Varimax-loadings and performs orthogonal Procrustes-rotation towards these Gaussian distributions. Oblique versions of this Gaussian event-related Procrustes- (GEP) rotation and of EPP-rotation are based on Promax-rotation.

RESULTS

A simulation study revealed that the new orthogonal rotations recover Wood and McCarthy's prototypes and eliminate misallocation of treatment-variance. In an additional simulation study with a more pronounced overlap of the prototypes GEP Promax-rotation reduced the variance misallocation slightly more than EPP Promax-rotation. Comparison with Existing Method(s): Varimax- and conventional Promax-rotations resulted in substantial misallocations of variance in simulation studies when components had temporal overlap. A substantially reduced misallocation of variance occurred with the EPP-, EPP Promax-, GEP-, and GEP Promax-rotations.

CONCLUSIONS

Misallocation of variance can be minimized by means of the new rotation methods: Making use of information on the temporal order of the loadings may allow for improvements of the rotation of temporal PCA components.

摘要

背景

在事件相关电位的时间主成分分析中,已经讨论了在错误分量上分配治疗方差的错误分配问题。直到现在,还没有一种旋转方法可以在不利用关于治疗效果的额外信息的情况下完美地恢复 Wood 和 McCarthy 的原型。

新方法

为了弥补这一差距,提出了两种新的组件旋转方法。在 Varimax 预旋转后,第一种方法识别出连续加载的非常小的斜率。将相应的加载在目标矩阵中设置为零,用于事件相关正交偏 Procrustes-(EPP-)旋转。第二种方法在 Varimax 加载的峰值周围生成高斯正态分布,并向这些高斯分布执行正交 Procrustes-旋转。这种高斯事件相关 Procrustes-(GEP)旋转和 EPP 旋转的斜交版本基于 Promax 旋转。

结果

一项模拟研究表明,新的正交旋转方法恢复了 Wood 和 McCarthy 的原型,并消除了治疗方差的错误分配。在一项具有更明显原型重叠的额外模拟研究中,GEP Promax 旋转比 EPP Promax 旋转略微减少了方差的错误分配。与现有方法的比较:在模拟研究中,当组件具有时间重叠时,Varimax 和传统的 Promax 旋转会导致方差的大量错误分配。EPP、EPP Promax、GEP 和 GEP Promax 旋转会大大减少方差的错误分配。

结论

通过新的旋转方法可以最小化方差的错误分配:利用关于加载时间顺序的信息可能允许改进时间 PCA 组件的旋转。

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