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Influence of body parameters on gastric bioelectric and biomagnetic fields in a realistic volume conductor

机译:人体参数对真实体积导体中胃生物电和生物磁场的影响

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摘要

Electrogastrograms (EGG) and magnetogastrograms (MGG) provide two complementary methods for non-invasively recording electric or magnetic fields resulting from gastric electrical slow wave activity. It is known that EGG signals are relatively weak and difficult to reliably record while magnetic fields are, in theory, less attenuated by the low-conductivity fat layers present in the body. In this paper, we quantified the effects of fat thickness and conductivity values on resultant magnetic and electric fields using anatomically realistic torso models and trains of dipole sources reflecting recent experimental results. The results showed that when the fat conductivity was increased, there was minimal change in both potential and magnetic fields. However, when the fat conductivity was reduced, the magnetic fields were largely unchanged, but electric potentials had a significant change in patterns and amplitudes. When the thickness of the fat layer was increased by 30 mm, the amplitude of the magnetic fields decreased 10% more than potentials but magnetic field patterns were changed about four times less than potentials. The ability to localize the underlying sources from the magnetic fields using a surface current density measure was altered by less than 2 mm when the fat layer was increased by 30 mm. In summary, results confirm that MGG provides a favorable method over EGG when there are uncertain levels of fat thickness or conductivity.
机译:电胃描记图(EGG)和磁胃描记图(MGG)提供了两种互补的方法,用于无创地记录由胃电慢波活动产生的电场或磁场。众所周知,EGG信号相对较弱,难以可靠地记录,而理论上,磁场由于人体中存在的低导电性脂肪层而衰减较小。在本文中,我们使用解剖学上逼真的躯干模型和反映最近实验结果的偶极子源序列,量化了脂肪厚度和电导率值对合成磁场和电场的影响。结果表明,当脂肪电导率增加时,电势和磁场的变化最小。然而,当脂肪电导率降低时,磁场在很大程度上保持不变,但是电势在模式和振幅方面发生了显着变化。当脂肪层的厚度增加30 mm时,磁场的幅度比电势下降10%以上,但磁场模式的变化却比电势下降了约四倍。当脂肪层增加30 mm时,使用表面电流密度测量法从磁场中定位潜在来源的能力更改不到2 mm。总而言之,结果证实,当脂肪厚度或电导率不确定时,MGG提供了优于EGG的方法。

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