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Low-Dose CBCT Reconstruction Using Hessian Schatten Penalties

机译:使用Hessian Schatten罚分的低剂量CBCT重建

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摘要

Cone-beam computed tomography (CBCT) has been widely used in radiation therapy. For accurate patient setup and treatment target localization, it is important to obtain high-quality reconstruction images. The total variation (TV) penalty has shown the state-of-the-art performance in suppressing noise and preserving edges for statistical iterative image reconstruction, but it sometimes leads to the so-called staircase effect. In this paper, we proposed to use a new family of penalties-the Hessian Schatten (HS) penalties-forthe CBCT reconstruction.Consisting of the second-order derivatives, the HS penalties are able to reflect the smooth intensity transitions of the underlying image without introducing the staircase effect. We discussed and compared the behaviors of several convex HS penalties with orders 1, 2, and + ∞ for CBCT reconstruction. We used the majorization-minimization approach with a primal-dual formulation for the corresponding optimization problem. Experiments on two digital phantoms and two physical phantoms demonstrated the proposed penalty family's outstanding performance over TV in suppressing the staircase effect, and the HS penalty with order 1 had the best performance among the HS penalties tested.
机译:锥形束计算机断层扫描(CBCT)已广泛用于放射治疗中。对于准确的患者设置和治疗目标的定位,获取高质量的重建图像非常重要。总变异数(TV)惩罚已显示出在抑制噪声和保留边缘以进行统计迭代图像重建方面的最新性能,但有时会导致所谓的阶梯效应。在本文中,我们提议使用新的惩罚族-Hessian Schatten(HS)惩罚-用于CBCT重建.HS惩罚由二阶导数组成,能够反映基础图像的平滑强度过渡而无需引入阶梯效应。我们讨论并比较了CBCT重构的几种凸HS罚分1、2和+∞的行为。对于相应的优化问题,我们使用具有主对偶公式的主化最小化方法。在两个数字幻像和两个物理幻像上进行的实验表明,拟议的刑罚系列在抑制阶梯效应方面优于电视,并且在测试的HS刑罚中,第1级的HS刑罚表现最佳。

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