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低剂量 CBCT 降噪的惩罚加权最小二乘法中惩罚参数的逆确定。

Inverse determination of the penalty parameter in penalized weighted least-squares algorithm for noise reduction of low-dose CBCT.

机构信息

Department of Radiation Oncology, UT Southwestern Medical Center, Dallas, Texas 5390, USA.

出版信息

Med Phys. 2011 Jul;38(7):4066-72. doi: 10.1118/1.3600696.

Abstract

PURPOSE

A statistical projection restoration algorithm based on the penalized weighted least-squares (PWLS) criterion can substantially improve the image quality of low-dose CBCT images. The performance of PWLS is largely dependent on the choice of the penalty parameter. Previously, the penalty parameter was chosen empirically by trial and error. In this work, the authors developed an inverse technique to calculate the penalty parameter in PWLS for noise suppression of low-dose CBCT in image guided radiotherapy (IGRT).

METHODS

In IGRT, a daily CBCT is acquired for the same patient during a treatment course. In this work, the authors acquired the CBCT with a high-mAs protocol for the first session and then a lower mAs protocol for the subsequent sessions. The high-mAs projections served as the goal (ideal) toward, which the low-mAs projections were to be smoothed by minimizing the PWLS objective function. The penalty parameter was determined through an inverse calculation of the derivative of the objective function incorporating both the high and low-mAs projections. Then the parameter obtained can be used for PWLS to smooth the noise in low-dose projections. CBCT projections for a CatPhan 600 and an anthropomorphic head phantom, as well as for a brain patient, were used to evaluate the performance of the proposed technique.

RESULTS

The penalty parameter in PWLS was obtained for each CBCT projection using the proposed strategy. The noise in the low-dose CBCT images reconstructed from the smoothed projections was greatly suppressed. Image quality in PWLS-processed low-dose CBCT was comparable to its corresponding high-dose CBCT.

CONCLUSIONS

A technique was proposed to estimate the penalty parameter for PWLS algorithm. It provides an objective and efficient way to obtain the penalty parameter for image restoration algorithms that require predefined smoothing parameters.

摘要

目的

基于惩罚加权最小二乘(PWLS)准则的统计投影重建算法可以显著提高低剂量 CBCT 图像的质量。PWLS 的性能在很大程度上取决于惩罚参数的选择。以前,通过反复试验来经验性地选择惩罚参数。在这项工作中,作者开发了一种反演技术,用于计算图像引导放疗(IGRT)中低剂量 CBCT 噪声抑制的 PWLS 惩罚参数。

方法

在 IGRT 中,在治疗过程中每天为同一患者获取 CBCT。在这项工作中,作者在第一次治疗中使用高 mAs 协议获取 CBCT,然后在随后的治疗中使用较低的 mAs 协议。高 mAs 投影作为目标(理想),通过最小化 PWLS 目标函数,低 mAs 投影将被平滑。通过反演计算目标函数的导数,并结合高和低 mAs 投影来确定惩罚参数。然后可以将获得的参数用于 PWLS 来平滑低剂量投影中的噪声。使用 CatPhan 600 和人体头部模拟体模以及脑部患者的 CBCT 投影来评估所提出技术的性能。

结果

使用提出的策略为每个 CBCT 投影获得了 PWLS 中的惩罚参数。从平滑投影重建的低剂量 CBCT 图像中的噪声得到了很大的抑制。PWLS 处理后的低剂量 CBCT 的图像质量与相应的高剂量 CBCT 相当。

结论

提出了一种估计 PWLS 算法惩罚参数的技术。它为需要预定义平滑参数的图像恢复算法提供了一种客观有效的获取惩罚参数的方法。

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