Department of Radiation Oncology, The University of Texas Southwestern Medical Center, Dallas, TX 75235, USA.
Med Phys. 2012 May;39(5):2569-77. doi: 10.1118/1.3702592.
Repeated use of cone beam CT (CBCT) in radiotherapy introduces extra imaging dose to patients. In this work, the authors propose a method to effectively reduce the imaging dose of on-treatment CBCT by incorporating previously acquired CBCT.
The Karhunen-Loève (KL) transform was used to consider the correlation among the on-treatment low-dose CBCT and prior CBCTs in the projection domain. Following the KL transform, the selected CBCT projection data were decomposed into uncorrelated, ordered principal components. Then, a penalized weighted least-squares (PWLS) criterion was applied to restore each KL component using different penalty strengths, where the penalty parameter was inversely proportional to its corresponding KL eigenvalue. Following the inverse KL transform on the processed data, the FDK algorithm was used to reconstruct the on-treatment CBCT image. The proposed algorithm was evaluated using both phantom and patient data.
The proposed algorithm demonstrated the ability to suppress noise while preserving edge information effectively. This new strategy outperforms the PWLS algorithm without considering prior information based on the noise-resolution tradeoff measurement and analyze of the reconstructed small objects.
Information extracted from previously acquired CBCT can be effectively utilized to suppress noise in on-treatment low-dose CBCT. The presented strategy can significantly lower the patient CBCT radiation dose.
放射治疗中多次使用锥形束 CT(CBCT)会给患者带来额外的成像剂量。在这项工作中,作者提出了一种方法,通过整合先前获得的 CBCT,有效地降低治疗中 CBCT 的成像剂量。
Karhunen-Loève(KL)变换用于考虑治疗中低剂量 CBCT 与先前 CBCT 在投影域中的相关性。KL 变换后,选择的 CBCT 投影数据被分解为不相关的、有序的主分量。然后,应用惩罚加权最小二乘法(PWLS)准则,使用不同的惩罚强度来恢复每个 KL 分量,其中惩罚参数与其相应的 KL 特征值成反比。对处理后的数据进行逆 KL 变换后,使用 FDK 算法重建治疗中 CBCT 图像。使用体模和患者数据评估了所提出的算法。
所提出的算法表现出有效抑制噪声同时保留边缘信息的能力。与不考虑先前信息的 PWLS 算法相比,根据噪声分辨率权衡测量和对重建小物体的分析,该新策略具有更好的性能。
从先前获得的 CBCT 中提取的信息可以有效地用于抑制治疗中低剂量 CBCT 的噪声。所提出的策略可以显著降低患者的 CBCT 辐射剂量。