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首页> 外文期刊>Frontiers in Psychology >A Potential Role of the Inferior Frontal Gyrus and Anterior Insula in Cognitive Control, Brain Rhythms, and Event-Related Potentials
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A Potential Role of the Inferior Frontal Gyrus and Anterior Insula in Cognitive Control, Brain Rhythms, and Event-Related Potentials

机译:下额回和前岛回在认知控制,脑节律和事件相关电位中的潜在作用。

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In the present paper, we review evidence for of a model in which the inferior frontal gyrus/anterior insula (IFG/AI) area is involved in elaborate attentional and working memory processing and we present the hypothesis that this processing may take different forms and may have different effects, depending on the task at hand: (1) it may facilitate fast and accurate responding, or (2) it may cause slow responding when prolonged elaborate processing is required to increase accuracy of responding, or (3) it may interfere with accuracy and speed of next-trial (for instance, post-error) performance when prolonged elaborate processing interferes with processing of the next stimulus. We present our viewpoint that ventrolateral corticolimbic control pathways, including the IFG/AI, and mediodorsal corticolimbic control pathways, including dorsal anterior cingulate cortex areas, play partly separable, but interacting roles in adaptive behavior in environmental conditions that differ in the level of predictability: compared to dorsal feed-forward control, the ventral corticolimbic control pathways implement control over actions through higher responsiveness to momentary environmental stimuli. This latter control mode is associated with an attentional focus on stimuli that are urgent or close in time and space, while the former control mode is associated with a broader, more global focus in time and space. Both control pathways have developed extensively through evolution, and both developed their own “cognitive controls,” such that neither one can be properly described as purely “cognitive” or “emotional.” We discuss literature that suggests that the role of IFG/AI in top-down control is reflected in cortical rhythms and event-related potentials. Together, the literature suggests that the IFG/AI is an important node in brain networks that control cognitive and emotional processing and behavior.
机译:在本文中,我们回顾了一个模型的证据,该模型中下额回/前岛(IFG / AI)区域参与了精心设计的注意力和工作记忆处理,并且我们提出了这种处理可能采取不同形式并且可能具有不同的效果,具体取决于手头的任务:(1)它可能有助于快速而准确的响应,或者(2)当需要长时间的精心处理以提高响应精度时,它可能会导致响应缓慢,或者(3)可能会干扰响应长时间精心设计的处理会干扰下一个刺激的处理,从而具有下一次试验(例如,错误发生后)性能和准确性。我们提出了我们的观点,即包括IFG / AI在内的腹外侧皮层皮质控制途径和包括背侧扣带回皮质区域在内的中腹皮质皮层皮质控制途径,在可预测性水平不同的环境条件下的适应性行为中起着部分可分离的相互作用的作用:与背侧前馈控制相比,腹侧皮质突触控制途径通过对瞬时环境刺激的更高响应性来实现对动作的控制。后一种控制模式与对时间和空间上紧迫或紧迫的刺激的关注相关,而前一种控制模式与对时间和空间的更广泛,更全局的关注相关。两种控制途径都通过进化得到了广泛发展,并且都发展了自己的“认知控制”,因此没有人可以恰当地描述为纯粹的“认知”或“情感”。我们讨论的文献表明,IFG / AI在自上而下控制中的作用反映在皮质节律和与事件相关的电位中。总之,文献表明,IFG / AI是控制认知和情感加工与行为的大脑网络中的重要节点。

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