Mayer Jutta S, Korinth Sebastian, Peters Benjamin, Fiebach Christian J
Department of Psychology, Goethe University, Frankfurt, Germany.
Department of Child and Adolescent Psychiatry, Psychosomatics and Psychotherapy, University Hospital Frankfurt, Goethe University, Frankfurt, Germany.
Front Psychol. 2020 Mar 24;11:522. doi: 10.3389/fpsyg.2020.00522. eCollection 2020.
Working memory (WM) performance varies substantially among individuals but the precise contribution of different WM component processes to these functional limits remains unclear. By analyzing different types of responses in a spatial WM task, we recently demonstrated a functional dissociation between confident and not-confident errors reflecting failures of WM encoding and maintenance, respectively. Here, we use event-related brain potentials to further explore this dissociation. Healthy participants performed a delayed orientation-discrimination task and rated their response confidence for each trial. The encoding-related N2pc component was significantly reduced for confident errors compared to confident correct responses, which is indicative of an encoding failure. In contrast, the maintenance-related contra-lateral delay activity was similar for these response types indicating that in confident error trials, WM representations - potentially the wrong ones - were maintained accurately and with stability throughout the delay interval. However, contra-lateral delay activity measured during the early part of the delay period was decreased for not-confident errors, potentially reflecting compromised maintenance processes. These electrophysiological findings contribute to a refined understanding of the encoding and maintenance processes that contribute to limitations in WM performance and capacity.
工作记忆(WM)表现因人而异,但不同WM组成过程对这些功能限制的确切贡献仍不清楚。通过分析空间WM任务中的不同类型反应,我们最近证明了分别反映WM编码和维持失败的有信心错误和无信心错误之间的功能分离。在此,我们使用事件相关脑电位进一步探究这种分离。健康参与者执行了延迟方向辨别任务,并对每次试验的反应信心进行评分。与有信心的正确反应相比,有信心错误的编码相关N2pc成分显著降低,这表明存在编码失败。相反,这些反应类型的维持相关对侧延迟活动相似,这表明在有信心错误试验中,WM表征——可能是错误的表征——在整个延迟间隔内都被准确且稳定地维持着。然而,在延迟期早期测量的无信心错误的对侧延迟活动有所降低,这可能反映了维持过程受损。这些电生理结果有助于更精确地理解导致WM表现和容量受限的编码和维持过程。