Xiao Yi, Wu Jintao, Tang Weicai, Sun Chenhui, Ma Feng, Guo Lingling
National Key Laboratory of Human Factors Engineering, China Astronaut Research and Training Center, Beijing, China.
School of Biological Science and Medical Engineering, Beihang University, Beijing, China.
Front Behav Neurosci. 2019 Feb 12;13:13. doi: 10.3389/fnbeh.2019.00013. eCollection 2019.
Cognitive impairment contributes to errors in different tasks. Poor attention and poor cognitive control are the two neural mechanisms for performance errors. A few studies have been conducted on the error mechanism of working memory. It is unclear whether the changes in memory updating, attention, and cognitive control can cause errors and, if so, whether they can be probed at the same time in one single task. Therefore, this study analyzed event-related potentials in a two-back working memory task. A total of 40 male participants finished the task. The differences between the error and the correct trials in amplitudes and latencies of N1, P2, N2, and P3 were analyzed. The P2 and P3 amplitudes decreased significantly in the error trials, while the N2 amplitude increased. The results showed that impaired attention, poor memory updating, and impaired cognitive control were consistently associated with the error in working memory. Furthermore, the results suggested that monitoring the neurophysiological characteristics associated with attention and cognitive control was important for studying the error mechanism and error prediction. The results also suggested that the P3 and N2 amplitudes could be used as indexes for error foreshadowing.
认知障碍会导致不同任务中的错误。注意力不集中和认知控制能力差是导致操作错误的两种神经机制。针对工作记忆的错误机制已经开展了一些研究。目前尚不清楚记忆更新、注意力和认知控制的变化是否会导致错误,如果会,那么在单一任务中能否同时对这些因素进行探究。因此,本研究分析了双任务工作记忆任务中的事件相关电位。共有40名男性参与者完成了该任务。分析了错误试验与正确试验在N1、P2、N2和P3的波幅和潜伏期上的差异。在错误试验中,P2和P3波幅显著降低,而N2波幅增加。结果表明,注意力受损、记忆更新不良和认知控制受损均与工作记忆中的错误始终相关。此外,结果表明,监测与注意力和认知控制相关的神经生理特征对于研究错误机制和错误预测很重要。结果还表明,P3和N2波幅可作为错误预兆的指标。