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用于估计液体光学模型中散射和吸收的逆蒙特卡罗方法。

Inverse Monte Carlo for estimation of scattering and absorption in liquid optical phantoms.

作者信息

Karlsson Hanna, Fredriksson Ingemar, Larsson Marcus, Strömberg Tomas

机构信息

Department of Biomedical Engineering, Linköping University, S-581 85 Linköping, Sweden.

出版信息

Opt Express. 2012 May 21;20(11):12233-46. doi: 10.1364/OE.20.012233.

Abstract

A spectroscopic probe with multiple detecting fibers was used for quantifying absorption and scattering in liquid optical phantoms. The phantoms were mixtures of Intralipid and red and blue food dyes. Intensity calibration for the detecting fibers was undertaken using either a microsphere suspension (absolute calibration) or a uniform detector illumination (relative calibration between detectors). Two different scattering phase functions were used in an inverse Monte Carlo algorithm. Data were evaluated for residual spectra (systematic deviations and magnitude) and accuracy in estimation of scattering and absorption. Spectral fitting was improved by allowing for a 10% intensity relaxation in the optimization algorithm. For a multi-detector setup, non-systematic residual spectrum was only found using the more complex Gegenbauer-kernel phase function. However, the choice of phase function did not influence the accuracy in the estimation of absorption and scattering. Similar estimation accuracy as in the multi-detector setup was also obtained using either two relative calibrated detectors or one absolute calibrated detector at a fiber separation of 0.46 mm.

摘要

使用具有多根检测光纤的光谱探头对液体光学模型中的吸收和散射进行定量分析。这些模型是由脂微球与红色和蓝色食用色素混合而成。检测光纤的强度校准使用微球悬浮液(绝对校准)或均匀探测器照明(探测器之间的相对校准)。在逆蒙特卡罗算法中使用了两种不同的散射相函数。对数据进行了残余光谱(系统偏差和幅度)以及散射和吸收估计准确性的评估。通过在优化算法中允许10%的强度松弛来改进光谱拟合。对于多探测器设置,仅使用更复杂的盖根堡核相函数时才发现非系统残余光谱。然而,相函数的选择并不影响吸收和散射估计的准确性。在光纤间距为0.46毫米时,使用两个相对校准的探测器或一个绝对校准的探测器也能获得与多探测器设置类似的估计准确性。

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