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使用三维频域简化球谐方程的生物组织中的光传输

Light transport in biological tissue using three-dimensional frequency-domain simplified spherical harmonics equations.

作者信息

Chu Michael, Vishwanath Karthik, Klose Alexander D, Dehghani Hamid

机构信息

School of Physics, University of Exeter, Exeter EX4 1EZ, UK.

出版信息

Phys Med Biol. 2009 Apr 21;54(8):2493-509. doi: 10.1088/0031-9155/54/8/016. Epub 2009 Apr 1.

Abstract

The accuracy of the commonly used diffusion approximation as used in diffuse optical tomography is known to be limited in cases involving strong absorption and in these situations a higher ordered approximation is necessary. In this study, a light transport model has been developed based upon the three-dimensional frequency-domain simplified spherical harmonics (SP(N)) approximation for orders up to N = 7. The SP(N) data are tested against a semi-infinite multi-layered Monte Carlo model. It has been shown that the SP(N) approximation for higher orders (N >1) provides an increase in accuracy over the diffusion equation specifically near sources and at boundaries of regions with increased optical absorption. It is demonstrated that the error of fluence calculated near the sources between the diffusion approximation and the SP(N) model (N = 7) can be as large as 60%, therefore limiting the use of the diffusion approximation for small animal imaging and in situations where optical changes near sources are critical for tomographic reconstructions.

摘要

众所周知,在扩散光学层析成像中常用的扩散近似在涉及强吸收的情况下准确性有限,在这些情况下需要更高阶的近似。在本研究中,基于三维频域简化球谐函数(SP(N))近似(最高到N = 7阶)开发了一种光传输模型。将SP(N)数据与半无限多层蒙特卡罗模型进行了对比测试。结果表明,高阶(N >1)的SP(N)近似在准确性上比扩散方程有所提高,特别是在光源附近以及光吸收增加区域的边界处。结果证明,在光源附近扩散近似和SP(N)模型(N = 7)计算的注量误差可能高达60%,因此限制了扩散近似在小动物成像以及光源附近光学变化对层析重建至关重要的情况下的应用。

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