Graduate School of Medical Science and Engineering, Korea Advanced Institute for Science and Technology (KAIST), Daejeon 34141, Republic of Korea.
Graduate School of Medical Science and Engineering, Korea Advanced Institute for Science and Technology (KAIST), Daejeon 34141, Republic of Korea
eNeuro. 2019 Aug 8;6(4). doi: 10.1523/ENEURO.0200-19.2019. Print 2019 Jul/Aug.
In the resting state, heartbeats evoke cortical responses called heartbeat-evoked responses (HERs), which reflect cortical cardiac interoceptive processing. While previous studies have reported that the heartbeat evokes cortical responses at a regional level, whether the heartbeat induces synchronization between regions to form a network structure remains unknown. Using resting-state MEG data from 85 human subjects of both genders, we first showed that heartbeat increases the phase synchronization between cortical regions in the theta frequency but not in other frequency bands. This increase in synchronization between cortical regions formed a network structure called the heartbeat-induced network (HIN), which did not reflect artificial phase synchronization. In the HIN, the left inferior temporal gyrus and parahippocampal gyrus played a central role as hubs. Furthermore, the HIN was modularized, containing five subnetworks called modules. In particular, module 1 played a central role in between-module interactions in the HIN. Furthermore, synchronization within module 1 had a positive association with the mood of an individual. In this study, we show the existence of the HIN and its network properties, advancing the current understanding of cortical heartbeat processing and its relationship with mood, which was previously confined to region level.
在静息状态下,心跳会引发称为心跳诱发反应(HER)的皮质反应,反映皮质心脏内感受处理。虽然先前的研究报告称心跳会在区域水平上引起皮质反应,但心跳是否会诱导区域之间的同步以形成网络结构尚不清楚。我们使用来自 85 名男女受试者的静息态 MEG 数据,首先表明心跳会增加皮质区域在 theta 频率下的相位同步,但不会增加其他频带的相位同步。这种皮质区域之间的同步增加形成了一个称为心跳诱导网络(HIN)的网络结构,它不反映人为的相位同步。在 HIN 中,左颞下回和海马旁回作为枢纽发挥着核心作用。此外,HIN 被模块化,包含五个称为模块的子网。特别是,模块 1 在 HIN 中的模块间相互作用中起着核心作用。此外,模块 1 内的同步与个体的情绪呈正相关。在这项研究中,我们展示了 HIN 的存在及其网络特性,这推进了我们对皮质心跳处理及其与情绪的关系的理解,此前这种关系仅限于区域水平。