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Task difficulty affects the predictive process indexed by visual mismatch negativity

机译:任务难度影响视觉失配否定指标所指示的预测过程

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摘要

Visual mismatch negativity (MMN) is an event-related brain potential (ERP) component that is elicited by prediction-incongruent events in successive visual stimulation. Previous oddball studies have shown that visual MMN in response to task-irrelevant deviant stimuli is insensitive to the manipulation of task difficulty, which supports the notion that visual MMN reflects attention-independent predictive processes. In these studies, however, visual MMN was evaluated in deviant-minus-standard difference waves, which may lead to an underestimation of the effects of task difficulty due to the possible superposition of N1-difference reflecting refractory effects. In the present study, we investigated the effects of task difficulty on visual MMN, less contaminated by N1-difference. While the participant performed a size-change detection task regarding a continuously-presented central fixation circle, we presented oddball sequences consisting of deviant and standard bar stimuli with different orientations (9.1 and 90.9%) and equiprobable sequences consisting of 11 types of control bar stimuli with different orientations (9.1% each) at the surrounding visual fields. Task difficulty was manipulated by varying the magnitude of the size-change. We found that the peak latencies of visual MMN evaluated in the deviant-minus-control difference waves were delayed as a function of task difficulty. Therefore, in contrast to the previous understanding, the present findings support the notion that visual MMN is associated with attention-demanding predictive processes.
机译:视觉失配否定性(MMN)是与事件相关的脑电势(ERP)组件,它是由连续视觉刺激中与预测无关的事件引起的。以前的奇数球研究表明,视觉MMN对与任务无关的越轨刺激做出响应对任务难度的操作不敏感,这支持了视觉MMN反映独立于注意力的预测过程的观点。然而,在这些研究中,视觉MMN在偏离标准差下的差异波中进行了评估,由于可能会叠加反映耐火效果的N1差异,因此可能会低估任务难度的影响。在本研究中,我们调查了任务难度对视觉MMN的影响,该视觉MMN受N1差异的污染较少。当参与者对连续出现的中央注视圈执行大小变化检测任务时,我们提出了由具有不同方向(9.1和90.9%)的异常和标准杆刺激物组成的奇球序列以及由11种类型的控制杆刺激物组成的等概率序列在周围的视野中具有不同的方向(每个方向为9.1%)。通过改变大小变化的幅度来控制任务难度。我们发现,视差-负控制差异波中评估的视觉MMN的峰值延迟被延迟为任务难度的函数。因此,与先前的理解相反,本发现支持视觉MMN与需要注意的预测过程相关的概念。

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