Donders Institute for Brain, Cognition and Behaviour, Radboud University, Nijmegen 6500 HB, The Netherlands.
Abteilung Allgemeine Psychologie, Justus-Liebig-Universität, Giessen 35394, Germany.
eNeuro. 2018 Oct 10;5(4). doi: 10.1523/ENEURO.0401-17.2018. eCollection 2018 Jul-Aug.
A relatively new analysis technique, known as neural decoding or multivariate pattern analysis (MVPA), has become increasingly popular for cognitive neuroimaging studies over recent years. These techniques promise to uncover the representational contents of neural signals, as well as the underlying code and the dynamic profile thereof. A field in which these techniques have led to novel insights in particular is that of visual working memory (VWM). In the present study, we subjected human volunteers to a combined VWM/imagery task while recording their neural signals using magnetoencephalography (MEG). We applied multivariate decoding analyses to uncover the temporal profile underlying the neural representations of the memorized item. Analysis of gaze position however revealed that our results were contaminated by systematic eye movements, suggesting that the MEG decoding results from our originally planned analyses were confounded. In addition to the eye movement analyses, we also present the original analyses to highlight how these might have readily led to invalid conclusions. Finally, we demonstrate a potential remedy, whereby we train the decoders on a functional localizer that was specifically designed to target bottom-up sensory signals and as such avoids eye movements. We conclude by arguing for more awareness of the potentially pervasive and ubiquitous effects of eye movement-related confounds.
一种相对较新的分析技术,被称为神经解码或多元模式分析(MVPA),近年来在认知神经影像学研究中越来越受欢迎。这些技术有望揭示神经信号的代表性内容,以及潜在的编码及其动态特征。这些技术在特定领域尤其带来了新的见解,即视觉工作记忆(VWM)。在本研究中,我们让人类志愿者在进行视觉工作记忆/想象任务的同时,使用脑磁图(MEG)记录他们的神经信号。我们应用多元解码分析来揭示记忆项目的神经表示背后的时间特征。然而,对注视位置的分析表明,我们的结果受到了系统眼动的干扰,这表明我们最初计划的分析中的 MEG 解码结果受到了混淆。除了眼动分析之外,我们还呈现了原始分析,以突出这些分析可能如何轻易导致无效的结论。最后,我们展示了一种潜在的补救方法,即我们在专门设计用于靶向自下而上的感觉信号的功能定位器上训练解码器,从而避免了眼动。我们最后认为,需要更加意识到眼动相关混淆的潜在普遍和普遍影响。