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Multiscale modelling of human gastric electric activity: can the electrogastrogram detect functional electrical uncoupling?

机译:人胃电活动的多尺度建模:胃电图能否检测功能性电解耦?

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During recent years there has been a growing interest in the assessment of gastric electrical health through cutaneous abdominal recordings. The analysis of such recordings is largely limited to an inspection of frequency dynamics, and this has raised doubts as to whether functional gastric electrical uncoupling can be detected using this technique. We describe here a computational approach to the problem in which the equations governing the underlying physics of the problem have been solved over an anatomically detailed human torso geometry. Cellular electrical activity was embedded within a stomach tissue model, and this was coupled to the torso using an equivalent current source approach. Simulations were performed in which normal and functionally uncoupled (through the introduction of an ectopic antral pacemaker) gastric slow wave activity was present, and corresponding cutaneous electrogastrograms were produced. These were subsequently analysed using the currently recommended techniques, and it was found that the functionally uncoupled situation was indistinguishable from normal slow wave activity using this approach.
机译:近年来,人们对通过腹部皮肤录音评估胃电健康的兴趣日益浓厚。这种记录的分析在很大程度上限于对频率动力学的检查,这引起了关于是否可以使用该技术检测到功能性胃电解耦的怀疑。我们在这里描述了一种针对问题的计算方法,其中控制问题基本物理的方程式已在解剖学上详细的人体躯干几何学上得到了解决。细胞电活动被嵌入到胃组织模型中,并使用等效电流源方法将其耦合到躯干。进行了模拟,其中存在正常的和功能上不耦合的(通过引入异位肛门起搏器)胃慢波活动,并产生了相应的皮肤胃电图。随后使用当前推荐的技术对它们进行了分析,发现使用这种方法,功能上不耦合的情况与正常的慢波活动没有区别。

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