Monte Carlo autofluorescence modeling on cervical dysplasia

Chih-Er Wu, S. Hua, S. Chu, Zhi-Yu Chen, Jiu-Chong Yuan, H. Chiang
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Abstract

We present autofluorescence modeling of different cervix tissue dysplasia for clinical diagnosis. We used double integrating sphere system and inverse adding-doubling (IAD) method to evaluate tissue optical parameters (absorption coefficient, /spl mu//sub a/, scattering coefficient, /spl mu//sub s/) of different cervix dysplasia. We used fluorescence Monte Carlo model included absorption coefficient and scattering coefficient from IAD and integrate sphere, to simulate autofluorescence spectra. The results show the increasing thickness of abnormal tissue on the cervical epithelium accompanied with the decreasing in autofluorescence intensity, in collagen peak (390 nm) and in NADH peak (460 nm), along with the lesion developments.
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宫颈发育不良的蒙特卡罗自体荧光模型
我们提出了不同宫颈组织发育不良的自体荧光模型用于临床诊断。采用双积分球系统和逆加倍法(IAD)对不同宫颈发育不良的组织光学参数(吸收系数、/spl mu//sub - a/、散射系数、/spl mu//sub - s/)进行评价。采用包含IAD和积分球吸收系数和散射系数的荧光蒙特卡罗模型,模拟了自荧光光谱。结果显示,随着病变的发展,宫颈上皮异常组织厚度增加,自身荧光强度、胶原峰(390 nm)和NADH峰(460 nm)减弱。
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