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Brain structures involved in interoceptive awareness and cardioafferent signal processing: a dipole source localization study.

机译:参与知觉意识和心脏信号处理的大脑结构:偶极子源定位研究。

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Afferent signals from the body play an important role for emotional and motivational aspects of behavior. Nevertheless, little is known about the cortical and subcortical structures involved in interoceptive processes. Recently, a functional MRI study demonstrated that insula, somatomotor, and cingulated cortices are activated when subjects focus attention on their heartbeats. Aside from the use of imaging data, cardiac awareness has frequently been studied by using the heartbeat-evoked potential (HEP), a brain wave that appears contingent on the heartbeat. The present study aimed at localizing sources of the HEP. Multichannel EEG was recorded in 44 subjects while they performed a heartbeat perception task. This task was used to quantify interoceptive awareness and to subdivide the subjects into good and poor heartbeat perceivers. Analyses showed highest HEP amplitudes over frontal and frontocentral electrode locations in the time range of later than 200 ms after R-wave onset. By means of a BESA dipole-source-analysis, four sources of the HEP were identified which were located in the anterior cingulate, the right insula, the prefrontal cortex, and the left secondary somatosensory cortex. Good heartbeat perceivers showed both significantly higher HEP amplitudes and higher dipole strength than poor heartbeat perceivers in all four cortical sources. We conclude that the identified structures are involved in the processing of cardiac signals, whereby anterior cingulate and right insula seem to serve as interoceptive centers for cardioception.
机译:来自身体的传入信号在行为的情感和动机方面起着重要作用。然而,对涉及互感过程的皮质和皮质下结构知之甚少。最近,一项功能性MRI研究表明,当受试者将注意力集中在心律上时,就会激活岛突,躯体运动和带扣皮层。除了使用成像数据外,还经常通过使用心跳诱发电位(HEP)来研究心脏意识,HEP是一种取决于心跳的脑电波。本研究旨在本地化HEP的来源。在执行心跳感知任务的44位受试者中记录了多通道EEG。该任务用于量化感受性意识,并将受试者分为良好和不良心跳感知器。分析显示,在R波发作后的200毫秒内,额叶和额中央电极位置的HEP振幅最高。通过BESA偶极子来源分析,确定了HEP的四个来源,它们位于前扣带,右岛,前额叶皮层和左侧次要体感皮层。在所有四个皮质来源中,良好的心跳知觉者均显示出较差的心跳知觉者明显更高的HEP振幅和更高的偶极强度。我们得出的结论是,所识别的结构参与了心脏信号的处理,从而使前扣带回和右岛隔绝似乎是心脏感受的感知中枢。

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