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On the magnetic field and the electrical potential generated by bioelectric sources in an anisotropic volume conductor

机译:关于各向异性体导体中生物源产生的磁场和电势

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摘要

The electrical conductivity in biological tissue is often dependent on the direction of the fibres. In the paper the influence of this anisotropic nature on the electrical potential and magnetic field generated by a current dipole is studied analytically. Three different methods are discussed. The volume conductor is described by piecewise homogeneous compartments and the interfaces between compartments are either parallel or perpendicular to one of the principal axes. To illustrate the methods, the influence of the anisotropic nature is computed for a two-layered medium. It turns out that the influence on both the potential and the magnetic field cannot be ignored. However, for some commonly used models of the head and torso, a certain component of the magnetic field is not influenced by the anisotropy.
机译:生物组织中的电导率通​​常取决于纤维的方向。本文分析地研究了这种各向异性对电流偶极子产生的电势和磁场的影响。讨论了三种不同的方法。体积导体由分段均质隔室描述,并且隔室之间的界面平行于或垂直于主轴之一。为了说明这些方法,针对两层介质计算了各向异性性质的影响。事实证明,对电位和磁场的影响都不能忽略。但是,对于某些常用的头部和躯干模型,磁场的某个分量不受各向异性的影响。

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  • 作者

    Peters, M.J.; Elias, P.J.H.;

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  • 年度 1988
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