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一种基于深度依赖荧光团浓度的空间分辨荧光扩散理论模型。

A diffusion theory model of spatially resolved fluorescence from depth-dependent fluorophore concentrations.

作者信息

Hyde D E, Farrell T J, Patterson M S, Wilson B C

机构信息

Hamilton Regional Cancer Centre, Department of Physics and McMaster University, Ontario, Canada.

出版信息

Phys Med Biol. 2001 Feb;46(2):369-83. doi: 10.1088/0031-9155/46/2/307.

Abstract

A photon diffusion model has been developed to calculate the steady-state spatially resolved fluorescence from pencil beam excitation in layered tissue. The model allows the calculation of both the excitation reflectance and the fluorescence escape for an arbitrary continuous depth distribution of tissue optical properties and fluorophore concentration. The validity of this model was verified by comparison with Monte Carlo simulations and experimental measurements using phantoms with tissue-like optical properties. The potential usefulness of the spatially resolved fluorescence was explored using the model and simulations of realistic drug distributions. It was shown that using this technique it may be possible to quantify the diffusion of a topically administered drug into the skin, or the photobleaching of a sensitizer during photodynamic therapy.

摘要

已开发出一种光子扩散模型,用于计算分层组织中铅笔束激发产生的稳态空间分辨荧光。该模型能够针对组织光学特性和荧光团浓度的任意连续深度分布,计算激发反射率和荧光逸出情况。通过与蒙特卡罗模拟以及使用具有类组织光学特性的体模进行的实验测量相比较,验证了该模型的有效性。利用该模型和实际药物分布模拟,探索了空间分辨荧光的潜在用途。结果表明,使用该技术有可能量化局部给药药物在皮肤中的扩散,或光动力疗法期间敏化剂的光漂白情况。

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