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Optical properties of brain tissue

机译:脑组织的光学特性

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摘要

Abstract: A rigorous technique using a Monte Carlo model has been developed to determine the optical properties of biological tissue from goniometer and integrating sphere measurements. Using these techniques, the wavelength dependence of the phase function, g- value, absorption coefficient, scattering and reduced scattering coefficient were determined for postmortem neonate and adult human brain tissue over the wavelength range of 500 to 1000 nm. Single scattering phase functions as a function of wavelength have been measured using a goniometer system and optically thin tissue slices. Spectra for the absorption and scattering coefficients have been determined from a set of integrating sphere measurements, using a white light source and a CCD spectrometer. The integrating sphere data were analyzed using a novel Monte Carlo inversion technique, which makes use of the measured phase functions and which takes into account the effects of sample geometry and the angular dependence of specular reflection. This method overcomes some of the problems and shortfalls of the analytical techniques which employ Kubelka Munk or diffusion theory. The reduced scattering coefficients for all types of brain tissue showed a linear decrease with increasing wavelength. The wavelength dependence of the scattering coefficient and the phase function is shown to be considerable, and cannot be neglected. !24
机译:摘要:已开发出一种使用蒙特卡洛模型的严格技术,可通过测角仪和积分球测量确定生物组织的光学特性。使用这些技术,可以确定死后新生儿和成年人脑组织在500至1000 nm波长范围内的相位函数,g值,吸收系数,散射和降低的散射系数的波长依赖性。已经使用测角计系统和光学上薄的组织切片测量了单个散射相位函数与波长的关系。已经使用白光源和CCD光谱仪从一组积分球测量中确定了吸收系数和散射系数的光谱。使用新颖的蒙特卡洛反演技术分析积分球数据,该技术利用了测得的相位函数,并考虑了样品几何形状的影响和镜面反射的角度依赖性。该方法克服了采用Kubelka Munk或扩散理论的分析技术的一些问题和不足。对于所有类型的脑组织,减小的散射系数显示出随着波长增加而线性减小。散射系数和相位函数在波长上的依赖关系非常明显,不能忽略。 !24

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