Department of Physics & Astronomy, University of Manitoba, Manitoba, Winnipeg, Canada.
Medical Physics, Cancer Care Manitoba, Manitoba, Winnipeg, Canada.
J Appl Clin Med Phys. 2023 Sep;24(9):e14038. doi: 10.1002/acm2.14038. Epub 2023 Jul 14.
Deep Inspiration Breath Hold (DIBH) is a respiratory-gating technique adopted in radiation therapy to lower cardiac irradiation. When performing DIBH treatments, it is important to have a monitoring system to ensure the patient's breath hold level is stable and reproducible at each fraction. In this retrospective study, we developed a system capable of monitoring DIBH breast treatments by utilizing cine EPID images taken during treatment. Setup error and intrafraction motion were measured for all fractions of 20 left-sided breast patients. All patients were treated with a hybrid static-IMRT technique, with EPID images from the static fields analyzed. Ten patients had open static fields and the other ten patients had static fields partially blocked with the multileaf collimator (MLC). Three image-processing algorithms were evaluated on their ability to accurately measure the chest wall position (CWP) in EPID images. CWP measurements were recorded along a 61-pixel region of interest centered along the midline of the image. The median and standard deviation of the CWP were recorded for each image. The algorithm showing the highest agreement with manual measurements was then used to calculate intrafraction motion and setup error. To measure intrafraction motion, the median CWP of the first EPID frame was compared with that of the subsequent EPID images of the treatment. The maximum difference was recorded as the intrafraction motion. The setup error was calculated as the difference in median CWP between the MV DRR and the first EPID image of the lateral tangential field. The results showed that the most accurate image-processing algorithm can identify the chest wall within 1.2 mm on both EPID and MV DRR images, and measures intrafraction motion and setup errors within 1.4 mm.
深吸气屏气(DIBH)是放射治疗中采用的一种呼吸门控技术,用于降低心脏照射剂量。在进行 DIBH 治疗时,重要的是要有一个监测系统,以确保患者在每个分次的屏气水平稳定且可重复。在这项回顾性研究中,我们开发了一种能够通过在治疗期间拍摄的电影 EPID 图像监测 DIBH 乳房治疗的系统。测量了 20 例左侧乳房患者所有分次的摆位误差和分次内运动。所有患者均采用混合静态调强放疗技术进行治疗,分析静态野的 EPID 图像。10 例患者采用开放静态野,另外 10 例患者采用多叶准直器(MLC)部分遮挡静态野。评估了三种图像处理算法在准确测量 EPID 图像中胸腔壁位置(CWP)的能力。CWP 测量记录在图像中线中心的 61 个像素感兴趣区沿线。记录了每个图像的 CWP 中位数和标准差。然后,使用与手动测量最一致的算法来计算分次内运动和摆位误差。为了测量分次内运动,将第一帧 EPID 的中位 CWP 与治疗过程中后续 EPID 图像的中位 CWP 进行比较。记录最大差异作为分次内运动。摆位误差计算为 MV DRR 与外侧切线野第一 EPID 图像的中位 CWP 之间的差异。结果表明,最准确的图像处理算法可以在 EPID 和 MV DRR 图像上识别胸腔壁,误差在 1.2mm 以内,并可以测量 1.4mm 以内的分次内运动和摆位误差。