Department of Psychiatry and Psychotherapy, University of Marburg, Rudolf Bultmann-Strasse 8, Marburg, 35039, Germany.
Psychophysiology. 2023 Aug;60(8):e14295. doi: 10.1111/psyp.14295. Epub 2023 Mar 26.
Efference copy-based forward model mechanisms may help us to distinguish between self-generated and externally-generated sensory consequences. Previous studies have shown that self-initiation modulates neural and perceptual responses to identical stimulation. For example, event-related potentials (ERPs) elicited by tones that follow a button press are reduced in amplitude relative to ERPs elicited by passively attended tones. However, previous EEG studies investigating visual stimuli in this context are rare, provide inconclusive results, and lack adequate control conditions with passive movements. Furthermore, although self-initiation is known to modulate behavioral responses, it is not known whether differences in the amplitude of ERPs also reflect differences in perception of sensory outcomes. In this study, we presented to participants visual stimuli consisting of gray discs following either active button presses, or passive button presses, in which an electromagnet moved the participant's finger. Two discs presented visually 500-1250 ms apart followed each button press, and participants judged which of the two was more intense. Early components of the primary visual response (N1 and P2) over the occipital electrodes were suppressed in the active condition. Interestingly, suppression in the intensity judgment task was only correlated with suppression of the visual P2 component. These data support the notion of efference copy-based forward model predictions in the visual sensory modality, but especially later processes (P2) seem to be perceptually relevant. Taken together, the results challenge the assumption that N1 differences reflect perceptual suppression and emphasize the relevance of the P2 ERP component.
基于传出副本的前向模型机制可能有助于我们区分自我产生和外部产生的感觉后果。先前的研究表明,自我启动会调节对相同刺激的神经和感知反应。例如,与被动注意的音调相比,跟随按钮按下的音调引发的事件相关电位 (ERP) 的幅度减小。然而,以前在这种情况下研究视觉刺激的 EEG 研究很少,结果不一致,并且缺乏带有被动运动的适当对照条件。此外,尽管自我启动已知会调节行为反应,但尚不清楚 ERP 幅度的差异是否也反映了对感觉结果的感知差异。在这项研究中,我们向参与者展示了视觉刺激,这些刺激由灰色圆盘组成,这些圆盘紧随主动按钮按下或被动按钮按下之后出现,在这种情况下,电磁铁会移动参与者的手指。每次按钮按下后,视觉上会呈现两个相隔 500-1250ms 的圆盘,参与者判断两个圆盘哪个更亮。主动条件下,枕叶电极上的初级视觉反应(N1 和 P2)的早期成分受到抑制。有趣的是,在强度判断任务中的抑制仅与视觉 P2 成分的抑制相关。这些数据支持了视觉感觉模态中传出副本的前向模型预测的概念,但特别是后期过程(P2)似乎与感知相关。总之,结果挑战了 N1 差异反映感知抑制的假设,并强调了 P2 ERP 成分的相关性。