Institute of Psychology, University of Tartu Tartu, Estonia ; Doctoral School of Behavioural, Social and Health Sciences, University of Tartu Tartu, Estonia.
Front Hum Neurosci. 2013 Aug 14;7:476. doi: 10.3389/fnhum.2013.00476. eCollection 2013.
Visual mismatch negativity (vMMN) is a negative-going component amongst cognitive event-related potentials. It reflects an automatic change-detection process that occurs when an infrequent stimulus is presented that is incongruent with the representation of a frequent (standard) event. In our research we use visual motion (more specifically motion direction changes) to study vMMN. Since movement in the visual field is quite irresistible to our brain, the question in hand is, if the detection of motion direction changes is dependent on attention directed to the stimulus. We present a new continuous whole-display stimulus configuration, where the attention capturing primary task of motion onset detection is in the central part of the visual display and visual oddball sequence on the background. The visual oddball paradigm consisted of 85% standard and 15% deviant events, motion direction change being the deviant. We show that even though the unattended visual oddball sequence does not affect the performance in the demanding behavioral primary task, the differences appearing in that sequence are noticed by our brain and reflected in two distinguishable vMMN components in occipital and parietal scalp locations. When attention is directed toward the visual oddball sequence, we only see different processing of standards and deviants in later time-windows and task-related activity in frontal scalp location. Our results are obtained under strict attention manipulation conditions.
视觉失匹配负波(vMMN)是认知事件相关电位中的一个负向成分。它反映了一种自动的变化检测过程,当呈现一个与频繁(标准)事件的表示不一致的不频繁刺激时,就会发生这种变化。在我们的研究中,我们使用视觉运动(更具体地说是运动方向变化)来研究 vMMN。由于视觉场中的运动对我们的大脑非常有吸引力,所以问题是,运动方向变化的检测是否依赖于对刺激的注意力。我们提出了一种新的连续全显示刺激配置,其中注意捕捉的主要任务是在视觉显示的中央部分检测运动起始,而视觉异常序列则在背景上。视觉异常范式由 85%的标准事件和 15%的偏差事件组成,运动方向变化是偏差事件。我们表明,即使未注意到的视觉异常序列不会影响要求很高的行为主要任务的性能,但大脑会注意到该序列中的差异,并在枕部和顶骨头皮位置反映出两个可区分的 vMMN 成分。当注意力指向视觉异常序列时,我们只在稍后的时间窗口中看到标准和偏差的不同处理以及额部头皮位置的任务相关活动。我们的结果是在严格的注意力操作条件下获得的。