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Weighted singular value decomposition (wSVD) to improve the radiation dose efficiency of grating based x-ray phase contrast imaging with a photon counting detector

机译:加权奇异值分解(wSVD),可通过光子计数检测器提高基于光栅的X射线相衬成像的辐射剂量效率

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The noise performance of grating-based differential phase contrast (DPC) imaging system is strongly dependent on the fringe visibility of the grating interferometer. Since the grating interferometer system is usually designed to be operated at a specific energy, deviation from that energy may lead to visibility loss and increased noise. By incorporating an energy-discriminating photon counting detector (PCD) into the system, photons with energies close to the operation energy of the interferometer can be selected, which offers the possibility of contrast-to-noise ratio (CNR) improvement. In our previous work, a singular value decomposition (SVD)-based rank one approximation method was developed to improve the CNR of DPC imaging. However, as the noise level and energy sensitivity of the interferometer may vary significantly from one energy bin to another, the signal and noise may not be separated well using the previously proposed method, therefore the full potential of the SVD method may not be achieved. This work presents a weighted SVD-based method, which maintains the noise reduction capability regardless of the similarity in the noise level across energy bins. The optimal weighting scheme was theoretically derived, and experimental phantom studies were performed to validate the theory and demonstrate the improved radiation dose efficiency of the proposed weighted SVD method.
机译:基于光栅的差分相位对比(DPC)成像系统的噪声性能在很大程度上取决于光栅干涉仪的条纹可见度。由于通常将光栅干涉仪系统设计为以特定能量运行,因此偏离该能量可能会导致可见度降低和噪声增大。通过将能量区分光子计数检测器(PCD)集成到系统中,可以选择能量接近干涉仪工作能量的光子,从而有可能改善对比度噪声比(CNR)。在我们以前的工作中,开发了一种基于奇异值分解(SVD)的秩近似方法,以改善DPC成像的CNR。然而,由于干涉仪的噪声水平和能量灵敏度可能从一个能量仓到另一个能量仓变化很大,所以使用先前提出的方法可能无法很好地分离信号和噪声,因此可能无法实现SVD方法的全部潜力。这项工作提出了一种基于SVD的加权方法,该方法可以保持降噪能力,而与各个能量仓中噪声水平的相似性无关。从理论上推导了最佳加权方案,并进行了实验体模研究以验证该理论并证明了所提出的加权SVD方法的改进的辐射剂量效率。

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