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Exploring the unity and diversity of the neural substrates of executive functioning.

机译:探索执行功能的神经基质的统一性和多样性。

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Previous studies exploring the neural substrates of executive functioning used task-specific analyses, which might not be the most appropriate approach due to the difficulty of precisely isolating executive functions. Consequently, the aim of this study was to use positron emission tomography (PET) to reexamine by conjunction and interaction paradigms the cerebral areas associated with three executive processes (updating, shifting, and inhibition). Three conjunction analyses allowed us to isolate the cerebral areas common to tasks selected to tap into the same executive process. A global conjunction analysis demonstrated that foci of activation common to all tasks were observed in the right intraparietal sulcus, the left superior parietal gyrus, and at a lower statistical threshold, the left lateral prefrontal cortex. These regions thus seem to play a general role in executive functioning. The right intraparietal sulcus seems to play a role in selective attention to relevant stimuli and in suppression of irrelevant information. The left superior parietal region is involved in amodal switching/integration processes. One hypothesis regarding the functional role of the lateral prefrontal cortex is that monitoring and temporal organization of cognitive processes are necessary to carry out ongoing tasks. Finally, interaction analyses showed that specific prefrontal cerebral areas were associated with each executive process. The results of this neuroimaging study are in agreement with cognitive studies demonstrating that executive functioning is characterized by both unity and diversity of processes.
机译:以前的探索执行功能神经底物的研究使用了特定于任务的分析,由于难以精确隔离执行功能,因此这可能不是最合适的方法。因此,本研究的目的是使用正电子发射断层扫描(PET)通过结合和相互作用范式重新检查与三个执行过程(更新,移动和抑制)相关的大脑区域。三个结合分析使我们能够隔离选择进入同一执行程序的任务所共有的大脑区域。全局合取分析表明,在右顶壁沟,左顶壁回和较低的统计阈值时,在左前额叶皮层观察到所有任务共有的激活灶。因此,这些地区似乎在执行职能中起着普遍作用。右顶壁沟似乎在选择性注意相关刺激和抑制无关信息中发挥作用。左上顶区参与模态转换/整合过程。关于外侧前额叶皮层功能作用的一种假设是,认知过程的监视和时间组织对于执行正在进行的任务是必要的。最后,相互作用分析表明特定的额叶前脑区域与每个执行过程相关。这项神经影像学研究的结果与认知研究相吻合,这表明执行功能以过程的统一性和多样性为特征。

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