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A compressed sensing based reconstruction algorithm for synchrotron source propagation-based X-ray phase contrast computed tomography

机译:基于压缩感知的重建算法,用于基于同步加速器源传播的X射线相位对比计算机断层扫描

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摘要

Synchrotron source propagation-based X-ray phase contrast computed tomography is increasingly used in pre-clinical imaging. However, it typically requires a large number of projections, and subsequently a large radiation dose, to produce high quality images. To improve the applicability of this imaging technique, reconstruction algorithms that can reduce the radiation dose and acquisition time without degrading image quality are needed. The proposed research focused on using a novel combination of Douglas-Rachford splitting and randomized Kaczmarz algorithms to solve large-scale total variation based optimization in a compressed sensing framework to reconstruct 2D images from a reduced number of projections. Visual assessment and quantitative performance evaluations of a synthetic abdomen phantom and real reconstructed image of an ex-vivo slice of canine prostate tissue demonstrate that the proposed algorithm is competitive in reconstruction process compared with other well-known algorithms. An additional potential benefit of reducing the number of projections would be reduction of time for motion artifact to occur if the sample moves during image acquisition. Use of this reconstruction algorithm to reduce the required number of projections in synchrotron source propagation-based X-ray phase contrast computed tomography is an effective form of dose reduction that may pave the way for imaging of in-vivo samples.
机译:基于同步加速器源传播的X射线相位对比计算机断层扫描越来越多地用于临床前成像。然而,通常需要大量的投影,并且随后需要大量的辐射剂量,以产生高质量的图像。为了提高这种成像技术的适用性,需要可以减少辐射剂量和采集时间而不降低图像质量的重建算法。拟议的研究集中于使用道格拉斯-拉奇福德分裂和随机化的Kaczmarz算法的新颖组合,在压缩传感框架中解决基于大规模总变化的优化,以从减少的投影数量中重建2D图像。合成腹部体模的视觉评估和定量性能评估以及犬前列腺组织的离体切片的真实重建图像表明,与其他知名算法相比,该算法在重建过程中具有竞争力。减少投影数量的另一个潜在好处是,如果样本在图像采集过程中移动,则可以减少运动伪影发生的时间。使用这种重建算法来减少基于同步加速器源传播的X射线相位对比计算机断层扫描中所需投影的数量,是减少剂量的有效形式,可以为体内样本成像铺平道路。

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