Cognitive Science, Department of Digital Humanities, Faculty of Arts, University of Helsinki, Helsinki, Finland.
Cognitive Brain Research Unit, Department of Psychology and Logopedics, Faculty of Medicine, University of Helsinki, Helsinki, Finland.
Sci Rep. 2018 Sep 10;8(1):13514. doi: 10.1038/s41598-018-31876-7.
Sustained attention plays an important role in everyday life, for work, learning, or when affected by attention disorders. Studies of the neural correlates of attention commonly treat sustained attention as an isolated construct, measured with computerized continuous performance tests. However, in any ecological context, sustained attention interacts with other executive functions and depends on lower level perceptual processing. Such interactions occur, for example, in inhibition of interference, and processing of complex hierarchical stimuli; both of which are important for successful ecological attention. Motivated by the need for more studies on neural correlates of higher cognition, I present an experiment to investigate these interactions of attention in 17 healthy participants measured with high-resolution electroencephalography. Participants perform a novel 2-alternative forced-choice computerised performance test, the Primed Subjective Illusory Contour Attention Task (PSICAT), which presents gestalt-stimuli targets with distractor primes to induce interference inhibition during complex-percept processing. Using behavioural and brain-imaging analyses, I demonstrate the novel result that task-irrelevant incongruency can evoke stronger behavioural and neural responses than the task-relevant stimulus condition; a potentially important finding in attention disorder research. PSICAT is available as an open-source code repository at the following url, allowing researchers to reuse and adapt it to their requirements. https://github.com/zenBen/Kanizsa_Prime/ .
持续注意力在日常生活中起着重要作用,无论是在工作、学习还是在注意力障碍的影响下。注意力的神经相关研究通常将持续注意力视为一种孤立的结构,通过计算机化的连续性能测试来测量。然而,在任何生态环境中,持续注意力与其他执行功能相互作用,并依赖于较低水平的感知处理。这种相互作用发生在例如干扰抑制和复杂层次刺激的处理中;这两者对于成功的生态注意力都很重要。由于需要更多关于更高认知的神经相关性研究,我提出了一项实验,以调查 17 名健康参与者在高分辨率脑电图测量下的注意力的这些相互作用。参与者执行一种新颖的 2 种选择强制选择计算机性能测试,即启动主观错觉轮廓注意任务(PSICAT),该任务呈现格式塔刺激目标和分心启动器,以在复杂感知处理过程中诱导干扰抑制。通过行为和脑成像分析,我证明了一个新颖的结果,即任务不相关的不一致性可以引起比任务相关刺激条件更强的行为和神经反应;这是注意力障碍研究中的一个潜在重要发现。PSICAT 作为一个开源代码存储库在以下网址提供,允许研究人员根据自己的需求重复使用和改编它。https://github.com/zenBen/Kanizsa_Prime/。