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在大脑默认模式网络中映射自我。

Mapping the self in the brain's default mode network.

作者信息

Davey Christopher G, Pujol Jesus, Harrison Ben J

机构信息

Orygen, The National Centre of Excellence in Youth Mental Health, Parkville, Australia; Centre for Youth Mental Health, The University of Melbourne, Parkville, Australia; Melbourne Neuropsychiatry Centre, Department of Psychiatry, The University of Melbourne, Parkville, Australia.

MRI Research Unit, CRC Mar, Hospital del Mar, CIBERSAM G21, Barcelona, Spain.

出版信息

Neuroimage. 2016 May 15;132:390-397. doi: 10.1016/j.neuroimage.2016.02.022. Epub 2016 Feb 15.

Abstract

The brain's default mode network (DMN) has become closely associated with self-referential mental activity, particularly in the resting-state. While the DMN is important for such processes, it has functions other than self-reference, and self-referential processes are supported by regions outside of the DMN. In our study of 88 participants, we examined self-referential and resting-state processes to clarify the extent to which DMN activity was common and distinct between the conditions. Within areas commonly activated by self-reference and rest we sought to identify those that showed additional functional specialization for self-referential processes: these being not only activated by self-reference and rest but also showing increased activity in self-reference versus rest. We examined the neural network properties of the identified 'core-self' DMN regions-in medial prefrontal cortex (MPFC), posterior cingulate cortex (PCC), and inferior parietal lobule-using dynamic causal modeling. The optimal model identified was one in which self-related processes were driven via PCC activity and moderated by the regulatory influences of MPFC. We thus confirm the significance of these regions for self-related processes and extend our understanding of their functionally specialized roles.

摘要

大脑的默认模式网络(DMN)已与自我参照心理活动紧密相关,尤其是在静息状态下。虽然DMN对于此类过程很重要,但它具有除自我参照之外的功能,并且自我参照过程也得到DMN之外区域的支持。在我们对88名参与者的研究中,我们检查了自我参照和静息状态过程,以阐明DMN活动在这些条件之间的共同程度和差异程度。在自我参照和静息状态共同激活的区域内,我们试图识别那些对自我参照过程表现出额外功能特化的区域:这些区域不仅被自我参照和静息状态激活,而且在自我参照时比静息状态下表现出更强的活动。我们使用动态因果模型研究了内侧前额叶皮层(MPFC)、后扣带回皮层(PCC)和下顶叶小叶中已识别的“核心自我”DMN区域的神经网络特性。所确定的最佳模型是一个自我相关过程由PCC活动驱动并受MPFC调节影响的模型。因此,我们证实了这些区域对于自我相关过程的重要性,并扩展了我们对其功能特化作用的理解。

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