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Neural Sources and Underlying Mechanisms of Neural Responses to Heartbeats, and their Role in Bodily Self-consciousness: An Intracranial EEG Study

机译:神经来源和神经反应对心跳的潜在机制,以及它们在身体自我意识中的作用:颅内EEG研究

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Recent research has shown that heartbeat-evoked potentials (HEPs), brain activity in response to heartbeats, are a useful neural measure for investigating the functional role of brain–body interactions in cognitive processes including self-consciousness. In 2 experiments, using intracranial electroencephalography (EEG), we investigated (1) the neural sources of HEPs, (2) the underlying mechanisms for HEP generation, and (3) the functional role of HEPs in bodily self-consciousness. In Experiment-1, we found that shortly after the heartbeat onset, phase distributions across single trials were significantly concentrated in 10% of the recording sites, mainly in the insula and the operculum, but also in other regions including the amygdala and fronto-temporal cortex. Such phase concentration was not accompanied by increased spectral power, and did not correlate with spectral power changes, suggesting that a phase resetting, rather than an additive “evoked potential” mechanism, underlies HEP generation. In Experiment-2, we further aimed to anatomically refine previous scalp EEG data that linked HEPs with bodily self-consciousness. We found that HEP modulations in the insula reflected an experimentally induced altered sense of self-identification. Collectively, these results provide novel and solid electrophysiological evidence on the neural sources and underlying mechanisms of HEPs, and their functional role in self-consciousness.
机译:最近的研究表明,心跳诱发的电位(HEP),响应心跳的脑活动是一种有用的神经措施,用于研究脑体相互作用在包括自我意识的认知过程中的功能作用。在2个实验中,使用颅内脑电图(EEG),我们研究了(1)HEPS的神经来源,(2)HEP发电的潜在机制,以及(3)HEP在身体自我意识中的功能作用。在实验-1中,我们发现,在心跳发作后不久,单项试验的相分布在10%的记录部位中显着集中,主要是在insula和鳃盖中,而且还在其他地区,还在包括Amygdala和Fronto-Template的其他地区皮质。这种相浓度不伴随增加的光谱功率,并且与光谱功率变化没有相关,表明相位复位,而不是添加剂“诱发潜在”机制,是HEP发电。在实验2中,我们进一步旨在解剖学上以前与身体自我意识联系起来的先前头皮EEG数据。我们发现Insula中的HEP调制反映了实验诱导的改变的自我鉴定感。总的来说,这些结果提供了关于神经来源的新颖和固体电生理学证据,以及它们在自我意识中的功能作用。

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