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利用克拉美-罗下界优化定量光声成像的波长选择。

Optimizing wavelength choice for quantitative optoacoustic imaging using the Cramer-Rao lower bound.

机构信息

Department of Radiology, The University of Chicago, Chicago, IL, 60637, USA.

出版信息

Phys Med Biol. 2010 Dec 7;55(23):7231-51. doi: 10.1088/0031-9155/55/23/004. Epub 2010 Nov 16.

Abstract

Several papers have recently addressed the issue of estimating chromophore concentration in optoacoustic imaging (OAI) using multiple wavelengths. The choice of wavelengths obviously affects the accuracy and precision of the estimates. One might assume that the wavelengths that maximize the extinction coefficients of the chromophores would be the most suitable. However, this may not always be the case since the distribution of light intensity in the medium is also wavelength dependent. In this paper, we explore a method for optimizing the choice of wavelengths based on the Cramer-Rao lower bound (CRLB) on the variance of the chromophore concentration. This lower bound on variance can be evaluated numerically for different wavelengths using the variation of the extinction coefficients and scattering coefficients with wavelength. The wavelengths that give the smallest variance will be considered optimal for multi-wavelength OAI to estimate the chromophore concentrations. The expression for the CRLB has been derived analytically for estimating the concentration of multiple chromophores for several simple phantom models for the case when the optoacoustic signal is proportional to the product of the optical absorption and the illumination function. This approach could be easily extended to other geometries.

摘要

最近有几篇论文探讨了使用多波长估算光声成象(OAI)中发色团浓度的问题。波长的选择显然会影响估计的准确性和精度。人们可能会假设,使发色团消光系数最大化的波长将是最合适的。然而,情况并非总是如此,因为介质中的光强分布也与波长有关。在本文中,我们探索了一种基于发色团浓度方差的克拉美-罗下界(CRLB)来优化波长选择的方法。对于不同的波长,可以使用消光系数和散射系数随波长的变化来数值评估该方差的下界。对于多波长 OAI 来说,使方差最小的波长将被认为是最佳的,以便估计发色团浓度。对于光声信号与光吸收和照明函数的乘积成正比的几种简单的仿体模型,已经对多个发色团浓度的 CRLB 表达式进行了分析推导。这种方法可以很容易地扩展到其他几何形状。

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