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Subsurface fluorescence molecular tomography with prior information

机译:具有先验信息的地下荧光分子层析成像

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Subsurface fluorescence molecular tomography (FMT) is an emerging technique determining fluorescence distribution by tomographic means in reflectance geometry. However, due to the highly diffusive nature of the photon propagation in biological tissues and the influence of nearer source-detector separations, stand-alone subsurface FMT could not accurately reflect the fluorophore distributions. To overcome this drawback, we propose a method to improve the performance of fluorescence imaging by coupling x-ray computed tomography (XCT) and subsurface FMT modalities. A Laplacian-type regularization matrix generated with tissue prior information obtained from XCT images is used to guide the reconstruction of fluorophore distribution. Reconstruction results of both simulation and phantom studies showed that significant improvements in localization and demarcation of fluorescent targets can be obtained with the proposed method compared to the reconstruction method without structural prior information.
机译:地下荧光分子层析成像(FMT)是一种新兴技术,通过层析成像手段确定反射几何中的荧光分布。但是,由于光子在生物组织中的传播具有高度扩散性,并且受到更靠近的源-检测器分离的影响,因此独立的地下FMT无法准确反映荧光团的分布。为克服此缺点,我们提出了一种通过耦合X射线计算机断层扫描(XCT)和地下FMT模态来改善荧光成像性能的方法。根据从XCT图像获得的组织先验信息生成的拉普拉斯型正则化矩阵可用于指导荧光团分布的重建。仿真和体模研究的重建结果表明,与没有结构先验信息的重建方法相比,使用拟议的方法可以显着改善荧光靶标的定位和划界。

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