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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Early-photon reflectance fluorescence molecular tomography for small animal imaging: Mathematical model and numerical experiment
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Early-photon reflectance fluorescence molecular tomography for small animal imaging: Mathematical model and numerical experiment

机译:小型动物成像的早期光子反射荧光分子断层扫描:数学模型和数值实验

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The paper presents an original approach to time-domain reflectance fluorescence molecular tomography (FMT) of small animals. It is based on the use of early arriving photons and state-of-the-art compressed-sensing-like reconstruction algorithms and aims to improve the spatial resolution of fluorescent images. We deduce the fundamental equation that models the imaging operator and derive analytical representations for the sensitivity functions which are responsible for the reconstruction of the fluorophore absorption coefficient. The idea of fluorescence lifetime tomography with our approach is also discussed. We conduct a numerical experiment on 3D reconstruction of box phantoms with spherical fluorescent inclusions of small diameters. For modeling measurement data and constructing the sensitivity matrix we assume a virtual fluorescence tomograph with a scanning fiber probe that illuminates and collects light in reflectance geometry. It provides for large source-receiver separations which correspond to the macroscopic regime. Two compressed-sensing-like reconstruction algorithms are used to solve the inverse problem. These are the algebraic reconstruction technique with total variation regularization and our modification of the fast iterative shrinkage-thresholding algorithm. Results of our numerical experiment show that our approach is capable of achieving as good spatial resolution as 0.2 mm and even better at depths to 9 mm inclusive.
机译:本文介绍了小动物时域反射荧光分子断层扫描(FMT)的原始方法。它基于利用早期到达光子和最先进的压缩感测的重建算法,并旨在提高荧光图像的空间分辨率。我们推导了模拟了成像算子的基本方程,并导出了对敏感功能的分析表示,这些函数负责荧光团吸收系数的重建。还讨论了我们方法的荧光寿命断层扫描的想法。我们对箱子幻影的三维重建进行了数值实验,具有小直径的球形荧光夹杂物。为了对测量数据进行建模和构建灵敏度矩阵,我们假设虚拟荧光断层扫描仪,扫描光纤探针照亮并收集反射几何形状的光。它提供了对应于宏观制度的大源 - 接收器分离。两个压缩感的感应重建算法用于解决逆问题。这些是具有总变化正则化的代数重建技术和我们对快速迭代收缩阈值阈值算法的修改。我们的数值实验结果表明,我们的方法能够实现0.2毫米的良好空间分辨率,甚至更好地达到9毫米包容性。

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