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基于漫反射光谱的倾斜光纤探针在亚扩散区域内对双层介质光学性质的定量估计,第 1 部分:探针几何结构设计的理论框架。

Quantitative estimation of optical properties in bilayer media within the subdiffusive regime using a tilted fiber-optic probe in diffuse reflectance spectroscopy, part 1: a theoretical framework for designing probe geometry.

机构信息

Cervo Brain Research Centre, Québec, Canada.

Université Laval, Department of Physics, Physical Engineering, and Optics, Québec, Canada.

出版信息

J Biomed Opt. 2024 Oct;29(10):105001. doi: 10.1117/1.JBO.29.10.105001. Epub 2024 Oct 29.

Abstract

SIGNIFICANCE

As biological tissues are highly heterogeneous, there is a great interest in developing non-invasive optical approaches capable of characterizing them in a very localized manner. Obtaining accurate absolute values of the local optical properties from the measured reflectance requires finding a probe geometry, which allows us to solve this inverse problem robustly and reliably despite neglecting the higher-order moments of the scattering phase function.

AIM

Our goal is to develop a theoretical framework for designing tilted-fiber diffuse reflectance probes that allow quantitative estimation of the optical properties corresponding to limited tissue volume (typically a few cubic millimeters).

APPROACH

Relationships among probe geometry, sampled tissue volume, and robustness of the inverse solver to calculate optical properties from reflectance are studied using Monte Carlo simulations.

RESULTS

The analysis of the number of scattering events of the collected photons leads to the establishment of relationships among the probe geometry, the sampled tissue volume, and the validity of a subdiffusive regime for the reflectance.

CONCLUSIONS

A methodology is proposed for the design of new compact probes with tilted fiber geometry that can quantitatively estimate the values of the optical coefficients in a localized manner within living biological tissues by recording diffuse reflectance spectra.

摘要

意义

由于生物组织具有高度的不均匀性,因此人们非常感兴趣开发能够以非常局部的方式对其进行特征描述的非侵入性光学方法。从测量的反射率中获得局部光学性质的准确绝对值需要找到一种探头几何形状,该形状允许我们在忽略散射相位函数的更高阶矩的情况下,稳健且可靠地解决此逆问题。

目的

我们的目标是开发一种理论框架,用于设计倾斜光纤漫反射探头,从而允许定量估计对应于有限组织体积(通常为几立方毫米)的光学性质。

方法

使用蒙特卡罗模拟研究探头几何形状、采样组织体积以及从反射率计算光学性质的逆解算器的稳健性之间的关系。

结果

对收集光子的散射事件数的分析导致建立了探头几何形状、采样组织体积以及反射率的次扩散区域的有效性之间的关系。

结论

提出了一种设计具有倾斜光纤几何形状的新型紧凑型探头的方法,该方法可以通过记录漫反射光谱,在活体生物组织内以局部方式定量估计光学系数的值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0471/11521146/03afc104335e/JBO-029-105001-g001.jpg

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