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Probing for Stomach using the Focused Impedance Method (FIM)

机译:使用聚焦阻抗法(FIM)探讨胃

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摘要

For probing deep organs of the body using electrical impedance, the conventional method is to use Electrical Impedance Tomography (EIT). However, this would be a sophisticated machine and will be very expensive when a full 3D EIT is developed in the future. Furthermore, for most low income countries such expensive devices may not deliver the benefits to a large number of people. Therefore, this paper suggests the use of simpler techniques like Tetrapolar Impedance Measurement (TPIM) or Focused Impedance Method (FIM) in probing deeper organs. Following a method suggested earlier by one of the authors, this paper studies the possibility of using TPIM and FIM for the stomach. Using a simplified model of the human trunk with an embedded stomach, a finite element simulation package, COMSOL, was used to obtain transfer impedance values and percentage contribution of the stomach region in the total impedance. For this work, judicious placement of electrodes through qualitative visualizations based on point sensitivity equations and equipotential concepts were made, which showed that reasonable contribution of the stomach region is possible through the use of TPIM and FIM. The contributions were a little over 20% which is of similar order of the cross-sectional area percentage of the stomach with respect to that of the trunk. For the case where the conductivity of the stomach region was assumed about 4 times higher, the contributions increased to about 38%. Through further studies this proposed methods may contribute greatly in the study of deeper organs of the body.
机译:对于使用电阻抗探测身体的深器官,传统方法是使用电阻抗断层扫描(EIT)。然而,这将是一个复杂的机器,当未来开发完整的3D EIT时,将非常昂贵。此外,对于大多数低收入国家而言,这种昂贵的设备可能不会为大量人提供益处。因此,本文提出在探测更深的器官利用像四端阻抗测量(TPIM)或重点阻抗法(FIM)简单的技术。遵循一位作者提前提出的方法,本文研究了使用TPIM和FIM对胃的可能性。使用具有嵌入胃的人干的简化模型,用于获得总阻抗中的胃区域的转移阻抗值和胃部区域的转移阻抗值和百分比贡献。对于这项工作,制备了基于点灵敏度方程和等电位概念的定性可视化的电极的明智放置,这表明通过使用TPIM和FIM可以合理地贡献胃区域。贡献略有超过20%,这与胃相对于行李箱的横截面积百分比相似的顺序。对于胃部区域的导电性较高约4倍的情况,贡献增加至约38%。通过进一步的研究,这种提出的方​​法可能在研究身体更深的器官的研究中有很大贡献。

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