首页> 外文期刊>Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data >Mathematical modeling for 2D light-sheet fluorescence microscopy image reconstruction
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Mathematical modeling for 2D light-sheet fluorescence microscopy image reconstruction

机译:2D光纸荧光显微镜图像重建的数学建模

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摘要

We study an inverse problem for light sheet fluorescence microscopy (LSFM), where the density of fluorescent molecules needs to be reconstructed. Our first step is to present a mathematical model to describe the measurements obtained by an optic camera during an LSFM experiment. Two meaningful stages are considered: excitation and fluorescence. We propose a paraxial model to describe the excitation process which is directly related with the Fermi pencil-beam equation. For the fluorescence stage, we use the transport equation to describe the transport of photons towards the detection camera. For the mathematical inverse problem that we obtain after the modeling, we present a uniqueness result, recasting the problem as the recovery of the initial condition for the heat equation in Rx(0,infinity) from measurements in a space-time curve. Additionally, we present numerical experiments to recover the density of the fluorescent molecules by discretizing the proposed model and facing this problem as the solution of a large and sparse linear system. Some iterative and regularized methods are used to achieve this objective. The results show that solving the inverse problem achieves better reconstructions than the direct acquisition method that is currently used.
机译:我们研究了光片荧光显微镜(LSFM)的倒出问题,其中需要重建荧光分子的密度。我们的第一步是介绍一个数学模型,用于描述在LSFM实验期间由光学相机获得的测量值。考虑了两种有意义的阶段:激发和荧光。我们提出了一种近轴模型来描述与费米铅笔束方程直接相关的激励过程。对于荧光阶段,我们使用传输方程来描述光子朝向检测相机的传输。对于我们在建模后获得的数学逆问题,我们呈现唯一性结果,重用问题作为从空时曲线中测量的Rx(0,Infinity)中的热方程的初始条件的初始条件。另外,我们通过将所提出的模型分开并将这个问题视为大而稀疏的线性系统的解决方案来呈现数值实验以恢复荧光分子的密度。一些迭代和正规化的方法用于实现这一目标。结果表明,求解逆问题可以实现比目前使用的直接采集方法更好的重建。

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