Calder Stefan, Cheng Leo K
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:4330-3. doi: 10.1109/EMBC.2014.6944582.
In this study, a boundary element model was developed to investigate the relationship between the gastric electrical activity, also known as slow waves, and the electrogastrogram (EGG). A dipole was calculated to represent the equivalent net activity of gastric slow waves. The dipole was then placed in an anatomically-realistic torso model to simulate EGG. The torso model was constructed from a laser-scanned geometry of an adult male torso phantom with 190 electrode sites equally distributed around the torso so that simulated EGG could be directly compared between the physical model and the mathematical model. The results were analyzed using the Fast Fourier Transforms (FFT), spatial distribution of EGG potential and a resultant EGG based on a 3-lead configuration. The FFT results showed both the dipole and EGG contained identical dominant frequency component of 3 cycles per minute (cpm), with this result matching known physiological phenomenon. The -3 dB point of the EGG was 110 mm from the region directly above the dipole source. Finally, the results indicated that electrode coupling could theoretically be used in a similar fashion to ECG coupling to gain greater understanding of how EGG correlate to gastric slow waves.
在本研究中,开发了一种边界元模型,以研究胃电活动(也称为慢波)与胃电图(EGG)之间的关系。计算了一个偶极子来表示胃慢波的等效净活动。然后将该偶极子置于一个解剖学上逼真的躯干模型中以模拟EGG。该躯干模型由成年男性躯干模型的激光扫描几何形状构建而成,在躯干周围均匀分布有190个电极位点,以便能够直接比较物理模型和数学模型之间模拟的EGG。使用快速傅里叶变换(FFT)、EGG电位的空间分布以及基于三导联配置的合成EGG对结果进行分析。FFT结果显示,偶极子和EGG都包含相同的每分钟3次循环(cpm)的主导频率成分,这一结果与已知的生理现象相符。EGG的-3 dB点距离偶极子源正上方区域110毫米。最后,结果表明,理论上电极耦合可以以类似于心电图耦合的方式使用,以更好地理解EGG与胃慢波之间的关联。