Jovanović Vojislav, Petrušić Igor, Ković Vanja, Savić Andrej M
Laboratory for Neurocognition and Applied Cognition, Department of Psychology, Faculty of Philosophy, University of Belgrade, 11000 Belgrade, Serbia.
Laboratory for Advanced Analysis of Neuroimages, Faculty of Physical Chemistry, University of Belgrade, 11000 Belgrade, Serbia.
Diagnostics (Basel). 2025 Jan 11;15(2):156. doi: 10.3390/diagnostics15020156.
The selection of an optimal referencing method in event-related potential (ERP) research has been a long-standing debate, as it can significantly influence results and lead to data misinterpretation. Such misinterpretation can produce flawed scientific conclusions, like the inaccurate localization of neural processes, and in practical applications, such as using ERPs as biomarkers in medicine, it may result in incorrect diagnoses or ineffective treatments. In line with the development and advancement of good scientific practice (GSP) in ERP research, this study sought to address several questions regarding the most suitable digital reference for investigating the N400 ERP component. The study was conducted on 17 neurotypical participants. Based on previous research, the references evaluated included the common average reference (AVE), mean earlobe reference (EARS), left mastoid reference (L), mean mastoids reference (MM), neutral infinity reference (REST), and vertex reference (VERT). The results showed that all digital references, except for VERT, successfully elicited the centroparietal N400 effect in the picture-word verification task. The AVE referencing method showed the most optimal set of metrics in terms of effect size and localization, although it also produced the smallest difference waves. The most similar topographic dynamics in the N400 window were observed between the AVE and REST referencing methods. As the most optimal regions of interest (ROI) for the picture-word elicited N400 effect, nine electrode sites spanning from superior frontocentral to parietal regions were identified, showing consistent effects across all referencing methods except VERT.
在事件相关电位(ERP)研究中选择最佳参考方法一直存在长期争论,因为它会显著影响研究结果并导致数据误解。这种误解可能会产生有缺陷的科学结论,比如神经过程定位不准确,而在实际应用中,如将ERP用作医学中的生物标志物时,可能会导致错误诊断或无效治疗。随着ERP研究中良好科学实践(GSP)的发展和进步,本研究旨在解决几个关于研究N400 ERP成分最合适数字参考的问题。该研究对17名神经典型参与者进行。基于先前的研究,评估的参考包括公共平均参考(AVE)、平均耳垂参考(EARS)、左乳突参考(L)、平均乳突参考(MM)、中性无穷大参考(REST)和头顶参考(VERT)。结果表明,除VERT外,所有数字参考在图片 - 单词验证任务中均成功诱发了中央顶叶N400效应。就效应大小和定位而言,AVE参考方法显示出最优化的指标集,尽管它产生的差异波最小。在AVE和REST参考方法之间观察到N400窗口中最相似的地形动力学。作为图片 - 单词诱发N400效应的最佳感兴趣区域(ROI),确定了从额中央上部到顶叶区域的九个电极部位,除VERT外,所有参考方法均显示出一致的效应。