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Down but not out in posterior cingulate cortex: Deactivation yet functional coupling with prefrontal cortex during demanding semantic cognition

机译:向下但不位于后扣带回皮层中:在需要语义认知的过程中失活但与前额叶皮层功能耦合

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摘要

The posterior cingulate cortex (pCC) often deactivates during complex tasks, and at rest is often only weakly correlated with regions that play a general role in the control of cognition. These observations led to the hypothesis that pCC contributes to automatic aspects of memory retrieval and cognition. Recent work, however, has suggested that the pCC may support both automatic and controlled forms of memory processing and may do so by changing its communication with regions that are important in the control of cognition across multiple domains. The current study examined these alternative views by characterising the functional coupling of the pCC in easy semantic decisions (based on strong global associations) and in harder semantic tasks (matching words on the basis of specific non-dominant features). Increasingly difficult semantic decisions led to the expected pattern of deactivation in the pCC; however, psychophysiological interaction analysis revealed that, under these conditions, the pCC exhibited greater connectivity with dorsolateral prefrontal cortex (PFC), relative to both easier semantic decisions and to a period of rest. In a second experiment using different participants, we found that functional coupling at rest between the pCC and the same region of dorsolateral PFC was stronger for participants who were more efficient at semantic tasks when assessed in a subsequent laboratory session. Thus, although overall levels of activity in the pCC are reduced during external tasks, this region may show greater coupling with executive control regions when information is retrieved from memory in a goal-directed manner.
机译:在复杂的任务中,后扣带回皮层(pCC)经常会失活,而在静止状态下,它们通常仅与在认知控制中起一般作用的区域弱相关。这些观察结果提出了这样的假设:pCC有助于记忆检索和认知的自动方面。但是,最近的工作表明,pCC可以支持自动和受控形式的内存处理,并且可以通过更改其与对跨多个域的认知控制很重要的区域的通信来实现。当前的研究通过在轻松的语义决策(基于强大的全局关联)和较困难的语义任务(基于特定的非主要特征匹配单词)中表征pCC的功能耦合来研究这些替代观点。越来越困难的语义决策导致了预期的pCC停用模式。然而,心理生理学相互作用分析表明,在这种情况下,相对于较容易的语义决定和一段休息时间,pCC与背外侧前额叶皮层(PFC)的连接性更高。在使用不同参与者的第二个实验中,我们发现,在随后的实验室会议进行评估时,对于在语义任务上更有效的参与者,pCC和背外侧PFC的相同区域之间在静止状态下的功能耦合更强。因此,尽管在外部任务期间降低了pCC中的总体活动水平,但是当以目标定向的方式从内存中检索信息时,该区域可能显示出与执行控制区域的更大耦合。

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