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基于共激活的外侧前额叶皮层分区描绘了额下交界区。

Co-Activation-Based Parcellation of the Lateral Prefrontal Cortex Delineates the Inferior Frontal Junction Area.

作者信息

Muhle-Karbe Paul S, Derrfuss Jan, Lynn Margaret T, Neubert Franz X, Fox Peter T, Brass Marcel, Eickhoff Simon B

机构信息

Department of Experimental Psychology, Ghent University, Ghent, Belgium.

School of Psychology, University of Nottingham, Nottingham, UK.

出版信息

Cereb Cortex. 2016 May;26(5):2225-2241. doi: 10.1093/cercor/bhv073. Epub 2015 Apr 21.

Abstract

The inferior frontal junction (IFJ) area, a small region in the posterior lateral prefrontal cortex (LPFC), has received increasing interest in recent years due to its central involvement in the control of action, attention, and memory. Yet, both its function and anatomy remain controversial. Here, we employed a meta-analytic parcellation of the left LPFC to show that the IFJ can be isolated based on its specific functional connections. A seed region, oriented along the left inferior frontal sulcus (IFS), was subdivided via cluster analyses of voxel-wise whole-brain co-activation patterns. The ensuing clusters were characterized by their unique connections, the functional profiles of associated experiments, and an independent topic mapping approach. A cluster at the posterior end of the IFS matched previous descriptions of the IFJ in location and extent and could be distinguished from a more caudal cluster involved in motor control, a more ventral cluster involved in linguistic processing, and 3 more rostral clusters involved in other aspects of cognitive control. Overall, our findings highlight that the IFJ constitutes a core functional unit within the frontal lobe and delineate its borders. Implications for the IFJ's role in human cognition and the organizational principles of the frontal lobe are discussed.

摘要

额下回交界区(IFJ)位于前额叶外侧后皮质(LPFC)的一个小区域,近年来因其在动作、注意力和记忆控制中的核心作用而受到越来越多的关注。然而,其功能和解剖结构仍存在争议。在此,我们采用了一种对左侧LPFC进行元分析的脑区划分方法,以表明可以根据其特定的功能连接来分离出IFJ。一个沿着左侧额下回沟(IFS)定位的种子区域,通过对体素全脑共激活模式的聚类分析进行细分。随后的聚类通过其独特的连接、相关实验的功能概况以及一种独立的主题映射方法进行表征。IFS后端的一个聚类在位置和范围上与之前对IFJ的描述相符,并且可以与一个参与运动控制的更靠尾侧的聚类、一个参与语言处理的更靠腹侧的聚类以及另外3个参与认知控制其他方面的更靠前的聚类区分开来。总体而言,我们的研究结果突出表明IFJ构成了额叶内的一个核心功能单元并划定了其边界。讨论了IFJ在人类认知中的作用以及额叶的组织原则。

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