关于使用光子扩散近似法快速计算组织光学特性的教程。

IF 2 3区 物理与天体物理 Q3 BIOCHEMICAL RESEARCH METHODS Journal of Biophotonics Pub Date : 2024-10-26 DOI:10.1002/jbio.202400257
Maria R. Pinheiro, Maria I. Carvalho, Luís M. Oliveira
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引用次数: 0

摘要

计算机模拟历来用于估算组织的光学特性,这种模拟每次只在一个波长上进行。这些模拟的结果需要进行内插。要对组织的光学特性进行宽带估算,使用计算机模拟既费时又耗费计算机。如果可以获得组织的光谱测量结果,则可以使用光子扩散近似法进行简单直接的计算,以获得某些光学特性的宽带光谱。另外,通过对少量离散波长的减弱散射系数进行估算,可以进行进一步计算,获得其他光学特性的光谱。本研究利用心肌的光谱测量结果解释了获得全套光谱光学特性的计算管道,并展示了其在其他组织的各种生物光子学应用中的通用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Tutorial on the Use of the Photon Diffusion Approximation for Fast Calculation of Tissue Optical Properties

Computer simulations, which are performed at a single wavelength at a time, have been traditionally used to estimate the optical properties of tissues. The results of these simulations need to be interpolated. For a broadband estimation of tissue optical properties, the use of computer simulations becomes time consuming and computer demanding. When spectral measurements are available for a tissue, the use of the photon diffusion approximation can be done to perform simple and direct calculations to obtain the broadband spectra of some optical properties. The additional estimation of the reduced scattering coefficient at a small number of discrete wavelengths allows to perform further calculations to obtain the spectra of other optical properties. This study used spectral measurements from the heart muscle to explain the calculation pipeline to obtain a complete set of the spectral optical properties and to show its versatility for use with other tissues for various biophotonics applications.

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来源期刊
Journal of Biophotonics
Journal of Biophotonics 生物-生化研究方法
CiteScore
5.70
自引率
7.10%
发文量
248
审稿时长
1 months
期刊介绍: The first international journal dedicated to publishing reviews and original articles from this exciting field, the Journal of Biophotonics covers the broad range of research on interactions between light and biological material. The journal offers a platform where the physicist communicates with the biologist and where the clinical practitioner learns about the latest tools for the diagnosis of diseases. As such, the journal is highly interdisciplinary, publishing cutting edge research in the fields of life sciences, medicine, physics, chemistry, and engineering. The coverage extends from fundamental research to specific developments, while also including the latest applications.
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