The effects of positions on deviant processing in mostly incompatible blocks in the flanker task.

Psychophysiology Pub Date : 2024-03-01 Epub Date: 2023-12-27 DOI:10.1111/psyp.14509
Kota Suzuki
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Abstract

It is assumed that focused attention is induced by mostly incompatible (MI) blocks in the flanker task. This study aimed to examine the differences in deviant processing between positions of a stimulus in MI blocks. Thirty-nine adults participated in this study. Compatible and incompatible stimuli were classified into three types: typical (central and surrounding colors: black), central-deviant (central: red; surrounding: black), and surrounding-deviant (central: black; surrounding: red). Rare and equiprobable conditions were set for MI blocks. Central- and surrounding-deviant stimuli were presented with low probabilities in the rare condition and with identical probabilities to that of typical stimuli in the equiprobable condition. Deviant processing was evaluated by comparing between event-related potentials in rare and equiprobable conditions. The posterior negativity from 120 to 170 ms (i.e., N1) for central-deviant stimuli was significantly more negative in the rare condition than in the equiprobable condition, whereas there was no difference for surrounding-deviant stimuli. Conversely, the posterior negativity from 180 to 230 ms for both stimuli was significantly more negative in the rare condition than in the equiprobable condition, and the difference (i.e., visual mismatch negativity) was similar in central- and surrounding-deviant stimuli. These findings suggest that focused attention induced by MI blocks leads to differences in deviant processing between central and surrounding areas during the N1 time range. Therefore, evaluations of deviant processing can help examine processing in central and surrounding areas independently and are valuable for understanding cognitive control mechanisms in the flanker tasks.

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在侧翼任务中,位置对大部分不相容区块中的偏差加工的影响。
据推测,在侧翼任务中,大部分不相容(MI)区块会诱发集中注意。本研究的目的是探讨在不相容区块中,不同位置的刺激物在偏差处理上的差异。39名成年人参与了这项研究。兼容和不兼容刺激被分为三种类型:典型(中央和周围颜色:黑色)、中央偏差(中央:红色;周围:黑色)和周围偏差(中央:黑色;周围:红色)。MI区块设置了稀有和等价条件。在罕见条件下,中央偏差和周围偏差刺激出现的概率较低,而在等价条件下,中央偏差和周围偏差刺激出现的概率与典型刺激相同。通过比较罕见条件和等可条件下的事件相关电位来评估偏差处理。在罕见条件下,中心偏差刺激在 120 至 170 毫秒(即 N1)的后负性明显高于等可条件下,而周围偏差刺激则没有差异。相反,两种刺激在 180 至 230 毫秒的后负性在罕见条件下明显比等可条件下更负,而在中心偏差刺激和周围偏差刺激中,两者的差异(即视觉错配负性)相似。这些研究结果表明,在N1时间范围内,MI阻滞诱导的集中注意会导致中心区域和周围区域的偏差处理出现差异。因此,对偏差处理的评估有助于独立检查中心区和周围区的处理过程,对理解侧翼任务中的认知控制机制很有价值。
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