Huang Ying, Xie Musi, Liu Yunhe, Zhang Xinyu, Jiang Liubei, Bao Han, Qin Pengmin, Han Junrong
Key Laboratory of Brain, Cognition and Education Sciences, Ministry of Education, School of Psychology, Center for Studies of Psychological Application and Guangdong Key Laboratory of Mental Health and Cognitive Science, South China Normal University, Guangzhou 510631, China.
Pazhou Lab, Guangzhou 510330, China.
Brain Sci. 2023 May 21;13(5):832. doi: 10.3390/brainsci13050832.
The self has been proposed to be grounded in interoceptive processing, with heartbeat-evoked cortical activity as a neurophysiological marker of this processing. However, inconsistent findings have been reported on the relationship between heartbeat-evoked cortical responses and self-processing (including exteroceptive- and mental-self-processing). In this review, we examine previous research on the association between self-processing and heartbeat-evoked cortical responses and highlight the divergent temporal-spatial characteristics and brain regions involved. We propose that the brain state relays the interaction between self-processing and heartbeat-evoked cortical responses and thus accounts for the inconsistency. The brain state, spontaneous brain activity which highly and continuously changes in a nonrandom way, serves as the foundation upon which the brain functions and was proposed as a point in an extremely high-dimensional space. To elucidate our assumption, we provide reviews on the interactions between dimensions of brain state with both self-processing and heartbeat-evoked cortical responses. These interactions suggest the relay of self-processing and heartbeat-evoked cortical responses by brain state. Finally, we discuss possible approaches to investigate whether and how the brain state impacts the self-heart interaction.
自我被认为基于内感受加工,心跳诱发的皮层活动是这种加工的神经生理标记。然而,关于心跳诱发的皮层反应与自我加工(包括外感受和心理自我加工)之间的关系,已有不一致的研究结果报道。在这篇综述中,我们审视了先前关于自我加工与心跳诱发的皮层反应之间关联的研究,并强调了所涉及的不同时空特征和脑区。我们提出,脑状态传递了自我加工与心跳诱发的皮层反应之间的相互作用,从而解释了这种不一致性。脑状态即高度且持续以非随机方式变化的自发脑活动,它是大脑功能的基础,并被认为是极高维空间中的一个点。为了阐明我们的假设,我们综述了脑状态维度与自我加工和心跳诱发的皮层反应之间的相互作用。这些相互作用表明脑状态在自我加工和心跳诱发的皮层反应之间起到了传递作用。最后,我们讨论了研究脑状态是否以及如何影响自我与心跳相互作用的可能方法。