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3D Model Construction and Analysis of Female Genital Organs Using Monte Carlo Simulation for Early Detection of Cervical Intraepithelial Neoplasia

机译:蒙特卡罗模拟宫颈上皮内肿瘤早期检测女性生殖器官模型构建与分析

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In this paper, Monte Carlo simulations of light propagation in realistic MRI based anatomical 3D models of the female genital organs, which are considered heterogeneous media, are presented. Three models representing a normal case with no cervical abnormalities and two abnormal cases representing early and late stage cervical cancer were used in the computations. The magnitude and the distribution of light intensity through the three models are computed for different sizes of the region of interest encompassing parts of structures surrounding the cervix, different penetration depths and different placements of the light source (trans-vaginal and transrectal). Results show that trans-rectal simulations are as useful as trans-vaginal simulations and that light absorption is highly dependent on the size and location of the cervical tumor with respect to the light source and the penetration depth with respect to the beginning of the cervix. The visualization of the light intensity maps in the cervix, surrounding organs and cervical tumors may provide insights into photodynamic therapy planning as well as into photoacoustic imaging of cervical cancer.
机译:在本文中,介绍了蒙特卡罗在被认为是非均相介质的基于MRI基于MRI的解剖学3D模型中的光传播中的光传播。在计算中使用三种模型,代表没有宫颈异常的正常情况和两个代表早期和晚期宫颈癌的异常病例。通过三种模型的光强度的幅度和分布用于不同尺寸的景观区域,包括围绕子宫颈的结构部分,不同的穿透深度和光源的不同放置(跨阴道和委托)。结果表明,反肠模拟与跨阴道模拟一样有用,并且光吸收高度依赖于宫颈肿瘤相对于光源和渗透深度相对于子宫颈开始的渗透深度的尺寸和位置。宫颈,周围器官和宫颈肿瘤中的光强度图的可视化可以提供光学动力治疗计划的见解以及宫颈癌的光声成像。

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