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Electrophysiological correlates of attention, inhibition, sensitivity and bias in a continuous performance task.

机译:在连续执行任务中,注意力,抑制,敏感性和偏倚的电生理相关性。

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摘要

Objective: The aim was to verify the occurrence of proposed electrophysiological correlates of attention, inhibition, sensitivity and bias in a continuous performance task and to support their functional interpretation by using a manipulation intended to enhance subjects' response bias. Methods: Electroencephalographic activity was recorded during administration of a transformed version of the AX continuous performance task in which cues signaled response alternatives. Results: The previously reported parietal P3, NoGo-N2, NoGo-P3 and contingent negative variation were replicated. Besides, the frontal selection positivity and the lateralized readiness potential were demonstrated. With increasing Go-probability, the parietal P3 to the cue increased without changes in other cue-related correlates. In addition, reaction times decreased, non-parametric measures of sensitivity and bias decreased, the NoGo-N2 increased, and the parietal Go-P3 decreased. Conclusions: The proposed electrophysiological correlates were identified. Sub-threshold LRPs suggested a central inhibition mechanism. Cue-related correlates revealed that anticipation of a high-probability Go-stimulus involves attention rather than bias. This implies that the increased NoGo-N2 reflected an increase in conflict rather than an increase in inhibition. Significance: Electrophysiological measures can greatly enhance our understanding of normal and abnormal information processing during continuous performance and related tasks.
机译:目的:目的是验证在连续表演任务中注意力,抑制,敏感性和偏倚的拟议电生理学相关性的发生,并通过旨在增强受试者反应偏见的操作来支持其功能解释。方法:在进行AX连续执行任务的转换版本的过程中记录脑电活动,其中提示信号提示了反应的替代方案。结果:重复了先前报道的壁P3,NoGo-N2,NoGo-P3和或有负性变异。此外,还展示了额叶选择的积极性和横向准备的潜力。随着Go概率的增加,指向提示的顶P3会增加,而其他提示相关的相关参数不会发生变化。此外,反应时间减少,敏感性和偏倚性的非参数测量减少,NoGo-N2增加,顶壁Go-P3减少。结论:确定了拟议的电生理相关性。亚阈值LRPs提出了一种集中抑制机制。与提示相关的相关因素表明,对高概率围棋刺激的期待涉及注意力而不是偏见。这意味着增加的NoGo-N2反映了冲突的增加而不是抑制的增加。意义:电生理措施可以极大地增进我们对连续执行和相关任务期间正常和异常信息处理的理解。

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