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The default mode network and social understanding of others: what do brain connectivity studies tell us

Wanqing Li, Xiaoqin Mai, Chao Liu

Frontiers in Human Neuroscience 2014 DOI: 10.3389/fnhum.2014.00074 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Review Peer reviewed
Population Healthy subjects, with some studies on patients with autism and psychopathy
Topics Default mode network
Keywords Mentalization Posterior cingulate Prefrontal cortex Empathy Theory of mind Social cognition Cognitive psychology Perception
Citations 469
Key findings The medial prefrontal cortex and its subregions within the default mode network contribute hierarchically to social understanding, with ventral regions supporting emotion, anterior regions self-other distinction, and dorsal regions mental state understanding.

Abstract

The Default Mode Network (DMN) has been found to be involved in various domains of cognitive and social processing. The present article will review brain connectivity results related to the DMN in the fields of social understanding of others: emotion perception, empathy, theory of mind, and morality. Most of the reviewed studies focused on healthy subjects with no neurological and psychiatric disease, but some studies on patients with autism and psychopathy will also be discussed. Common results show that the medial prefrontal cortex (MPFC) plays a key role in the social understanding of others, and the subregions of the MPFC contribute differently to this function according to their roles in different subsystems of the DMN. At the bottom, the ventral MPFC in the medial temporal lobe (MTL) subsystem and its connections with emotion regions are mainly associated with emotion engagement during social interactions. Above, the anterior MPFC (aMPFC) in the cortical midline structures (CMS) and its connections with posterior and anterior cingulate cortex contribute mostly to making self-other distinctions. At the top, the dorsal MPFC (dMPFC) in the dMPFC subsystem and its connection with the temporo-parietal junction (TPJ) are primarily related to the understanding of other's mental states. As behaviors become more complex, the related regions in frontal cortex are located higher. This reflects the transfer of information processing from automatic to cognitive processes with the increase of the complexity of social interaction. Besides the MPFC and TPJ, the connectivities of posterior cingulate cortex (PCC) also show some changes during tasks from the four social fields. These results indicate that the DMN is indispensable in the social understanding of others.

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