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Multi-Pinhole Based X-Ray Fluorescence Computed Tomography: A Comparison with Single Pinhole Case

机译:基于多针孔的X射线荧光计算断层扫描:与单个针孔外壳进行比较

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An x-ray fluorescence computed tomography using a pinhole collimator (p-XFCT) for medical use depicts the 3-D distribution of imaging agent by collecting the x-ray fluorescence photons emitted from the imaging agent accumulated in an organ using a pinhole collimator and a 2-D detector. However, the number of the fluorescent x-ray photons are restricted by the pinhole, leading to acquisition of low S/N projections due to the photon starvation. Simultaneous acquisition of multiple projections using a multi-pinhole scheme overcomes the photon starvation. In this research, we clarified the measurement process and described the quantitative linear relationship between the quantities to be estimated and to be measured. We solved the multi-pinhole based XFCT (mp-XFCT) as a linear inverse problem regarding the described measurement process using ML-EM (maximum likelihood expectation-maximization) algorithm. We actually constructed an mp-XFCT imaging system at beamline AR-NE7A in KEK, and performed imaging experiment using a physical phantom to demonstrate the efficacy of mp-XFCT.
机译:使用针孔准直器(P-XFCT)的X射线荧光计算断层扫描用于医学用途描绘了通过使用针孔准直器从器官中累积的成像剂发射的X射线荧光光子来描述成像剂的3-D分布。 2-D探测器。然而,荧光X射线光子的数量受到针孔的限制,导致由于光子饥饿而采集低S / N突起。使用多针孔方案同时采集多个突起克服了光子饥饿。在这项研究中,我们阐明了测量过程,并描述了待估计的量与要测量的定量线性关系。我们解决了基于多针孔的XFCT(MP-XFCT)作为关于使用ML-EM(最大似然预期最大化)算法所描述的测量过程的线性逆问题。我们实际上在kek中的BeamLine Ar-Ne7a处构建了MP-XFCT成像系统,并使用物理幻影进行了成像实验,以证明MP-XFCT的功效。

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