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Semi-analytical time-domain low-frequency scattering formulation for biological applications

机译:用于生物应用的半分析时域低频散射配方

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In this paper, an efficient time domain formulation is proposed for a low-frequency scattering by a complicated inhomogeneous dielectric scatterer. The formulation is based on the Born approximation and a sampling theorem. To extend the valid region of the proposed solution, the Rayleigh scattering formulation for a small dielectric object is used to modify the Born current inside the scatterer. In order to verify the obtained formulation, scatterings by several canonical objects such as a cubic box and a sphere are compared, which are calculated by the proposed formulation and the known exact or approximate solutions of a Mie series and the Rayleigh scattering. In addition, scattering by a human head is investigated at a very low-frequency band (< 100 Hz). For the simulation, two excitations are considered: plane wave incidence from outside the head and an artificial point source located inside the head. The head model is discretized by a 3 x 3 x 3 mm~3 cubic box, which is comprised of eight types of tissue. These are blood, bone, fat, grey matter, white matter, muscle, skin and vitreous humor.
机译:本文提出了一种有效的时域公式,用于复杂非均匀介质散射体的低频散射。该公式基于Born逼近和采样定理。为了扩展所提出解决方案的有效区域,使用用于小型介电物体的瑞利散射公式来修改散射体内部的Born电流。为了验证所获得的公式,比较了几个规范对象(例如立方箱和球体)的散射,这些散射是通过提出的公式以及已知的Mie级数精确解或近似解和瑞利散射计算的。此外,还研究了人头在非常低的频段(<100 Hz)下的散射。为了进行模拟,考虑了两个激励:来自头部外部的平面波入射和位于头部内部的人工点源。头部模型由3种x 3 x 3 mm〜3立方盒子离散,该盒子由八种组织组成。这些是血液,骨骼,脂肪,灰质,白质,肌肉,皮肤和玻璃体液。

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