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Analysis of gastric myoelectrical and brain waves activity interaction during pre and postprandial

机译:预先和后施加期间胃肌电极和脑波活性相互作用分析

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Electrogastrogram (EGG) is a well-known method to record gastric myoelectrical activity. However, some researchers believed that EGG measures the gastric slow wave and can be the surrogate of gastric motility, while the others claim that EGG is flawed. Our proposed study extends the EGG study, especially the possibility of observing gut-brain signaling pathways that can improve the understanding of brain properties and its behavior according to the food intakes and other digestion abnormalities. Four subjects participated in this study, and we used a 250 Hz bio amplifier where nineteen channels of EEG to observe brain wave activity were placed on the head scalp. Electrodes were also placed around the stomach to investigate the gastric myoelectrical activity. We applied the FIR filter to obtain each brain wave properties. Also, by employing undersampling and a specific band-pass filter (0.03 - 0.07 Hz), we extracted the power spectrum of the EGG. We found that each subject has different responses during pre and postprandial, both EGG and EEG. The increase of EGG activity caused the deflation of EEG properties, especially in the alpha band. Also, the EEG P3 site at the parietal lobe followed the power change rates of EGG oppositely. We conclude that the relationship between brain waves and gastric myoelectrical activity is possible and needs to be observed in the future.
机译:Electrogastrum(鸡蛋)是一种众所周知的胃部肌电活动的方法。然而,一些研究人员认为鸡蛋测量胃慢波,可以是胃动力的替代品,而其他人则声称鸡蛋是有缺陷的。我们所提出的研究延长了鸡蛋研究,特别是观察肠脑信号传导途径的可能性,可以根据食物摄入量和其他消化异常改善对脑性质的理解及其行为的可能性。四个受试者参与了这项研究,我们使用了250 Hz生物放大器,将脑电浪活动观察脑波活动的一九九频道,放在头皮上。电极也围绕胃放置,以研究胃部肌电极。我们将FIR滤波器应用以获取每个脑波属性。此外,通过采用欠采样和特定的带通滤波器(0.03-0.07Hz),我们提取了蛋的功率谱。我们发现每个受试者在预先和餐后,卵和脑后都有不同的反应。蛋活动的增加导致EEG性质的放气,尤其是α带。此外,顶叶的EEG P3位点遵循相反的卵子的功率变化率。我们得出结论,脑波与胃部肌电活动之间的关系是可能的,需要在未来观察。

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