de Camp Nora Vanessa, Bergeler Jürgen
Department of Behavioral Physiology, Institute for Biology, Humboldt-Universität zu Berlin, Berlin, Germany.
Medical Center of the Johannes-Gutenberg University Mainz, Visceral Surgery Unit, Mainz, Germany.
Transl Neurosci. 2022 Dec 6;13(1):440-452. doi: 10.1515/tnsci-2022-0256. eCollection 2022 Jan 1.
Many diseases affect the autonomous nervous system and the central nervous system simultaneously, for example Parkinson's disease or irritable bowel syndrome. To study neurophysiologic interactions between the intestinal electrical activity and the electroencephalography (EEG) pattern of the brain, we combined intestinal electrical stimulation (IES) and non-invasive telemetric full-band DC EEG recordings in an acute pig-model. Intestinal motility was monitored with accelerometers. Brain activity was analyzed with regard to network driven phenomena like phase amplitude coupling (PAC) within two time-windows: 1 min after IES (early response) and 3 min after stimulation (late response). Here we present the results for two stimulation sites (small intestine, colon) and two parietal scalp-EEG channels (right and left somatosensory cortex region). Electrical stimulation consisted of a 30 or 130 Hz pulse. In summary, the PAC modulation index at a parietal EEG recording position is decreased after IES. This effect is in line with an inhibitory effect of our IES protocol regarding peristalsis. The surprisingly strong effects of IES on network driven EEG patterns may be translated into new therapeutic techniques and/or diagnostic tools in the future. Furthermore, analytic tools, operating on sparse datasets, may be ideally suited for the integration in implantable intestinal pacemakers as feedback system.
许多疾病会同时影响自主神经系统和中枢神经系统,例如帕金森病或肠易激综合征。为了研究肠道电活动与大脑脑电图(EEG)模式之间的神经生理相互作用,我们在急性猪模型中结合了肠道电刺激(IES)和非侵入性遥测全频段直流EEG记录。用加速度计监测肠道蠕动。在两个时间窗口内分析大脑活动,观察网络驱动现象,如相位幅度耦合(PAC):IES后1分钟(早期反应)和刺激后3分钟(晚期反应)。在此,我们展示了两个刺激部位(小肠、结肠)和两个顶叶头皮EEG通道(右侧和左侧体感皮层区域)的结果。电刺激由30或130Hz脉冲组成。总之,IES后顶叶EEG记录位置的PAC调制指数降低。这种效应与我们的IES方案对蠕动的抑制作用一致。IES对网络驱动的EEG模式产生的惊人强大影响,未来可能转化为新的治疗技术和/或诊断工具。此外,针对稀疏数据集运行的分析工具,可能非常适合集成到作为反馈系统的植入式肠道起搏器中。