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Application of the Equivalent Multipole Moment Method with Polar Translations to Forward Calculation of Neuromagnetic Fields

机译:极性平移的等效多极矩法在神经磁场正演计算中的应用

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This paper describes an application of the equivalent multipole moment method (EMMM) with polar translations to calculation of magnetic fields induced by a current dipole placed in a human head model. Although the EMMM is a conventional Laplacian field solver based on spherical harmonic functions, the polar translations enable it to treat eccentric and exclusive spheres in arbitrary arrangements. The head model is composed of seven spheres corresponding to skin, two eyeballs, skull, cerebral spinal fluid, gray matter, and white matter. The validity of the calculated magnetic fields and the magnetic flux linkages with a loop coil located near the model is successfully confirmed by the reciprocity theorem derived by Eaton.
机译:本文介绍了带有极性平移的等效多极矩方法(EMMM)在计算人头模型中放置的电流偶极子感应的磁场中的应用。尽管EMMM是基于球谐函数的常规拉普拉斯场求解器,但极性平移使它能够以任意排列方式处理偏心球和排他球。头部模型由对应于皮肤,两个眼球,头骨,脑脊髓液,灰质和白质的七个球体组成。伊顿导出的互易定理成功地证实了所计算的磁场和与位于模型附近的环形线圈的磁通量链接的有效性。

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