心跳和体感感知。
Heartbeat and somatosensory perception.
机构信息
Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, 04103 Leipzig, Germany; MindBrainBody Institute, Berlin School of Mind and Brain, Humboldt-Universität zu Berlin, 10099 Berlin, Germany; Center for Stroke Research Berlin (CSB), Charité - Universitätsmedizin Berlin, 10117 Berlin, Germany.
Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, 04103 Leipzig, Germany; Center for Stroke Research Berlin (CSB), Charité - Universitätsmedizin Berlin, 10117 Berlin, Germany.
出版信息
Neuroimage. 2021 Sep;238:118247. doi: 10.1016/j.neuroimage.2021.118247. Epub 2021 Jun 7.
Our perception of the external world is influenced by internal bodily signals. For example, we recently showed that timing of stimulation along the cardiac cycle and spontaneous fluctuations of heartbeat-evoked potential (HEP) amplitudes influence somatosensory perception and the associated neural processing (Al et al., 2020). While cardiac phase affected detection sensitivity and late components of the somatosensory-evoked potentials (SEPs), HEP amplitudes affected detection criterion and both early and late SEP components. In a new EEG study, we investigate whether these results are replicable in a modified paradigm, which includes two succeeding temporal intervals. In one of the intervals, subjects received a weak electrical finger stimulation and reported first whether they detected any stimulation and then allocated the stimulus to one of the two intervals. Our results confirm the previously reported cardiac cycle and prestimulus HEP effects on somatosensory perception and evoked potentials. In addition, we obtained two new findings. Source analyses in this and our original study show that the increased likelihood of conscious perception goes along with HEP fluctuations in parietal and posterior cingulate regions, known to play important roles in interoceptive processes. Furthermore, HEP amplitudes were shown to decrease when subjects engaged in the somatosensory task compared to a resting state condition. Our findings are consistent with the view that HEP amplitudes are a marker of interoceptive (versus exteroceptive) attention and provide a neural underpinning for this view.
我们对外界的感知受到内部身体信号的影响。例如,我们最近表明,刺激沿着心动周期的时间以及心跳诱发电位 (HEP) 幅度的自发波动会影响体感感知和相关的神经处理(Al 等人,2020 年)。虽然心脏相位影响了体感诱发电位 (SEP) 的检测灵敏度和晚期成分,但 HEP 幅度影响了检测标准以及早期和晚期 SEP 成分。在一项新的 EEG 研究中,我们研究了这些结果在修改后的范式中是否具有可复制性,该范式包括两个连续的时间间隔。在其中一个间隔中,受试者接受了微弱的电手指刺激,并首先报告他们是否检测到任何刺激,然后将刺激分配到两个间隔之一。我们的结果证实了先前报告的心动周期和刺激前 HEP 对体感感知和诱发电位的影响。此外,我们获得了两个新的发现。本研究和原始研究中的源分析表明,意识感知的可能性增加伴随着顶叶和后扣带回区域的 HEP 波动,这些区域在内脏过程中起着重要作用。此外,与静息状态相比,当受试者进行体感任务时,HEP 幅度显示出下降。我们的发现与 HEP 幅度是内感受(与外感受)注意力的标志的观点一致,并为这一观点提供了神经基础。