一种基于格子玻尔兹曼前向模型的荧光扩散断层成像系统

      A Fluorescence Diffusion Optical Tomography System Based on Lattice Boltzmann Forward Model

      • 摘要: 荧光扩散断层成像(Fluorescence Diffuse Optical Tomography,FDOT)对于医学诊断、药物研究等生物医学应用具有重要意义。通过FDOT,可以定量、无创地获得生物组织中的荧光探针分布,从而实现相应目标的三维定位和检测。为了降低FDOT的使用成本,该研究设计了一套以格子玻尔兹曼(Lattice Boltzmann)前向模型为核心的FDOT系统。该系统集成了光传播模拟和FDOT重建两大功能,具体由参数模块、算法模块、结果显示模块和数据交互模块组成。为了验证该平台的有效性,该研究进行了光传播模拟实验和FDOT重建实验,并分别对比了蒙特卡罗的光传播模拟结果和待重建标记物的真实位置。实验表明,该研究提出的FDOT系统有着良好的可靠性,并具有很高的推广价值。

         

        Abstract: Fluorescence Diffuse Optical Tomography (FDOT) is significant for biomedical applications, such as medical diagnostics, drug research. The fluorescence probe distribution in biological tissues can be quantitatively and non-invasively obtained via FDOT, achieving targets positioning and detection. In order to reduce the cost of FDOT, this study designs a FDOT system based on Lattice Boltzmann forward model. The system is used to realize two functions of light propagation simulation and FDOT reconstruction, and is composed of a parameter module, an algorithm module, a result display module and a data interaction module. In order to verify the effectiveness of the platform, this study carries out the light propagation simulation experiment and the FDOT reconstruction experiment, respectively comparing the Monte Carlo (MC) light propagation simulation results and the real position of the light source to be reconstructed. Experiments show that the proposed FDOT system has good reliability and has a high promotion value.

         

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