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Simulation of light absorption in tumor-embedded uterus filled with strong scattering media by diffused light sources

机译:散射光源模拟填充有强散射介质的肿瘤包埋子宫的光吸收

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摘要

Photoacoustic imaging (PAI) is a promising technique to image tumor angiogenesis development and detect endometrial carcinoma in earlier stages. The light absorption distribution of uterine tissue determines the imaging depth and range of PAI. In this work, a 3D triangular meshes tumor-embedded uterine optical model was established by the histological structure of uterus. The model is filled with strong scattering media (undiluted raw and homogenized milk, URHM) and air. respectively. Monte Carlo simulation is implemented based on the molecular optical simulation environment (MOSE) to find the absorption profiles of photons by transcervical laser illumination with cylindrically diffused light source (CDLS) or spherically diffused light source (SDLS) at wavelength 800nm. The results show the media with an extremely high scattering coefficient and an extremely low absorption coefficient like URHM helps the light propagations in a relatively small cavity. CDLS performs better when the tumor happens far from the light source center than the SDLS. On the same time, embedded tumors of the model filled with URHM are easier to detect by the transcervical laser illumination of CDLS than SDLS in the fundus of the uterus. The conclusions are helpful to optimize the laser source and to improve the imaging depth in a photoacoustic imaging system.
机译:光声成像(PAI)是一种有前途的技术,可以在早期阶段对肿瘤血管生成的发展进行成像并检测子宫内膜癌。子宫组织的光吸收分布决定了PAI的成像深度和范围。在这项工作中,通过子宫的组织学结构建立了一个3D三角形网格的肿瘤嵌入式子宫光学模型。该模型充满了强散射介质(未稀释的生奶和均质牛奶,URHM)和空气。分别。蒙特卡罗模拟是基于分子光学模拟环境(MOSE)进行的,以通过波长为800nm的圆柱扩散光源(CDLS)或球形扩散光源(SDLS)的子宫颈激光照射来找到光子的吸收曲线。结果表明,具有极高散射系数和极低吸收系数的介质(如URHM)有助于光在相对较小的腔体中传播。当肿瘤距光源中心较远时,CDLS的性能优于SDLS。同时,相比于子宫底部的SDLS,经CDLS的经宫颈激光照射更容易检测到装有URHM的模型的包埋肿瘤。这些结论有助于优化激光源并改善光声成像系统中的成像深度。

著录项

  • 来源
    《Optics in health care and biomedical optics VIII》|2018年|1082034.1-1082034.7|共7页
  • 会议地点 Beijing(CN)
  • 作者单位

    Fujian Provincial Key Laboratory of Photonic Technology, Key Laboratory of Optoelectronic Science and Technology for Medicine, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, College of Photonic and Electronic Engineering, Fujian Normal University, Ministry of Education, Fuzhou 350007, China,School of Optoelectronic and Communication Engineering, Xiamen University of Technology, Fuzhou, Xiamen 361024, China;

    Fujian Provincial Key Laboratory of Photonic Technology, Key Laboratory of Optoelectronic Science and Technology for Medicine, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, College of Photonic and Electronic Engineering, Fujian Normal University, Ministry of Education, Fuzhou 350007, China;

    Fujian Provincial Key Laboratory of Photonic Technology, Key Laboratory of Optoelectronic Science and Technology for Medicine, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, College of Photonic and Electronic Engineering, Fujian Normal University, Ministry of Education, Fuzhou 350007, China;

    Fujian Provincial Key Laboratory of Photonic Technology, Key Laboratory of Optoelectronic Science and Technology for Medicine, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, College of Photonic and Electronic Engineering, Fujian Normal University, Ministry of Education, Fuzhou 350007, China;

    Fujian Provincial Key Laboratory of Photonic Technology, Key Laboratory of Optoelectronic Science and Technology for Medicine, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, College of Photonic and Electronic Engineering, Fujian Normal University, Ministry of Education, Fuzhou 350007, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Diffused light source; Monte Carlo Simulation; Strong scattering media; Endometrial Carcinoma;

    机译:漫射光源;蒙特卡罗模拟强散射介质;子宫内膜癌;

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