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Optical Tomography Imaging Based on Higher Order Born Approximation of Diffuse Photon Density Waves

机译:基于漫射光子密度波高阶Born逼近的光学层析成像

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In this paper, we introduce a tomographical system suitable for imaging absorbers in strongly scattering media using a single light source-detector pair. Their reflective alignment would make it possible to implement both source and detector into a compact scan-head. Suitable probes would be soft tissue, some strongly scattering biological probes, or translucent technical materials, for example. An intensity-modulation technique is utilized to take advantage of the amplitude and delay alterations between the source and the detector. The propagation of the photons is modeled by the Helmholtz equation and then appropriate inverse calculations of several measurements reveal the distribution of the absorption coefficient inside the investigated volume. Therefore a reconstruction algorithm employing a Born approximation of higher order and a Tikhonov-regularization scheme were used to solve the deduced ill-posed and underdetermined system of equations. In this paper, we present results of simulations as well as of measurements.
机译:在本文中,我们介绍了一种层析成像系统,适用于使用单个光源-探测器对在强散射介质中对吸收体成像。它们的反射对准将使得可以将源和检测器都实现为紧凑的扫描头。合适的探针例如是软组织,一些强散射的生物探针或半透明的技术材料。利用强度调制技术来利用源和检测器之间的幅度和延迟变化。通过Helmholtz方程对光子的传播进行建模,然后对若干测量值进行适当的逆计算,即可得出所研究体积内吸收系数的分布。因此,采用采用高阶Born逼近的重建算法和Tikhonov正则化方案来求解推导的不适定和欠定的方程组。在本文中,我们介绍了模拟以及测量结果。

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