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Super-resolution x-ray luminescence optical tomography imaging

机译:超分辨率x射线发光光学层析成像

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X-ray luminescence optical tomography (XLOT) is a promising in vivo noninvasive imaging technique. By using x-raysto irradiate nanophosphors (NPs) in imaged region, XLOT can achieve better imaging depth and higher imagingsensitivity than the widely used optical molecular tomographic imaging techniques, e.g., bioluminescence tomography(BLT) or fluorescence molecular tomography (FMT). However, compared with the anatomical imaging techniques, e.g.,x-ray computed tomography (XCT), XLOT has the disadvantage of low spatial resolution limited to millimeters. Toovercome the limitation, recently, many efforts have been dedicated to optimize the data acquisition schemes andimprove reconstruction methods. Nevertheless, challenges remain in XLOT due to the light scattering in biologicaltissues and the severely ill-condition and ill-posed of the inverse problem of XLOT. To improve the spatial resolution ofXLOT, inspired by super-resolution localization optical microscopy, in this work, we propose a novel imaging method,termed as SR-XLOT, which is achieved by locating the position of NPs in each frame by using the single emitterlocalization methods (e.g., Gaussian fitting method). After reconstructing the positions of NPs in each frame, asuper-resolution XLOT image can be generated by superimposing the identified positions of NPs from all frames intoone image. To evaluate the performance of the proposed SR-XLOT method, a series of numerical simulationexperiments were performed. The experimental results indicate that when using SR-XLOT method, the spatial resolutionof XLOT can be significantly improved, compared with the conventional reconstruction methods. As a result, themethod makes it possible to implement a super-resolution XLOT imaging, which is attractive for medical diagnostic anddrug research.
机译:X射线发光光学层析成像(XLOT)是一种有前途的体内无创成像技术。通过使用X射线 为了在成像区域照射纳米磷光体(NPs),XLOT可以实现更好的成像深度和更高的成像 灵敏度比广泛使用的光学分子层析成像技术(例如生物发光层析成像)高 (BLT)或荧光分子层析成像(FMT)。但是,与解剖学成像技术相比,例如 X射线计算机断层扫描(XCT),XLOT的缺点是空间分辨率低至毫米。到 为了克服这种局限性,最近,人们进行了许多努力来优化数据采集方案,并且 改进重建方法。然而,由于生物中的光散射,XLOT仍然存在挑战 组织和严重病情和不适的XLOT逆问题。提高空间分辨率 XLOT受超分辨率定位光学显微镜的启发,在这项工作中,我们提出了一种新颖的成像方法, 称为SR-XLOT,通过使用单个发射器在每个帧中定位NP的位置来实现 定位方法(例如,高斯拟合方法)。重建每个帧中NP的位置后, 通过将所有帧中确定的NP位置叠加到 一幅图像。为了评估所提出的SR-XLOT方法的性能,进行了一系列数值模拟 进行了实验。实验结果表明,当使用SR-XLOT方法时,空间分辨率 与传统的重建方法相比,可以显着改善XLOT的大小。结果, 该方法使得实现超分辨率XLOT成像成为可能,这对于医学诊断和 药物研究。

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