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首页> 外文期刊>Biomedical Optics Express >X-ray luminescence computed tomography imaging based on X-ray distribution model and adaptively split Bregman method
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X-ray luminescence computed tomography imaging based on X-ray distribution model and adaptively split Bregman method

机译:基于X射线分布模型和自适应分裂Bregman方法的X射线计算机断层成像。

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X-ray luminescence computed tomography (XLCT) has become a promising imaging technology for biological application based on phosphor nanoparticles. There are mainly three kinds of XLCT imaging systems: pencil beam XLCT, narrow beam XLCT and cone beam XLCT. Narrow beam XLCT can be regarded as a balance between the pencil beam mode and the cone-beam mode in terms of imaging efficiency and image quality. The collimated X-ray beams are assumed to be parallel ones in the traditional narrow beam XLCT. However, we observe that the cone beam X-rays are collimated into X-ray beams with fan-shaped broadening instead of parallel ones in our prototype narrow beam XLCT. Hence we incorporate the distribution of the X-ray beams in the physical model and collected the optical data from only two perpendicular directions to further speed up the scanning time. Meanwhile we propose a depth related adaptive regularized split Bregman (DARSB) method in reconstruction. The simulation experiments show that the proposed physical model and method can achieve better results in the location error, dice coefficient, mean square error and the intensity error than the traditional split Bregman method and validate the feasibility of method. The phantom experiment can obtain the location error less than 1.1 mm and validate that the incorporation of fan-shaped X-ray beams in our model can achieve better results than the parallel X-rays.
机译:X射线计算机断层扫描(XLCT)已成为一种有前途的基于荧光粉纳米粒子的生物学应用成像技术。 XLCT成像系统主要有三种:铅笔束XLCT,窄束XLCT和锥束XLCT。就成像效率和图像质量而言,窄束XLCT可以被视为笔形光束模式和锥形光束模式之间的平衡。在传统的窄束XLCT中,假定准直的X射线束是平行的。但是,我们发现在我们的原型窄束XLCT中,锥形束X射线被准直成扇形加宽的X射线束,而不是平行的X射线。因此,我们将X射线束的分布合并到物理模型中,并仅从两个垂直方向收集了光学数据,以进一步加快扫描时间。同时,我们提出了一种深度相关的自适应正则化分裂Bregman(DARSB)重建方法。仿真实验表明,所提出的物理模型和方法在定位误差,骰子系数,均方误差和强度误差上均能达到比传统的分裂Bregman方法更好的效果,验证了该方法的可行性。幻影实验可以获得小于1.1 mm的定位误差,并验证了在我们的模型中并入扇形X射线束可以获得比平行X射线更好的结果。

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