Department of Oncology, University of Alberta, Edmonton, AB, Canada.
Department of Oncology, University of Alberta, Edmonton, AB, Canada.
Int J Radiat Oncol Biol Phys. 2014 Jul 1;89(3):682-9. doi: 10.1016/j.ijrobp.2014.02.040. Epub 2014 Apr 18.
To evaluate the metal artifacts in diagnostic kilovoltage computed tomography (kVCT) images of patients that are corrected by use of a normalized metal artifact reduction (NMAR) method with megavoltage CT (MVCT) prior images: MVCT-NMAR.
MVCT-NMAR was applied to images from 5 patients: 3 with dual hip prostheses, 1 with a single hip prosthesis, and 1 with dental fillings. The corrected images were evaluated for visualization of tissue structures and their interfaces and for radiation therapy dose calculations. They were compared against the corresponding images corrected by the commercial orthopedic metal artifact reduction algorithm in a Phillips CT scanner.
The use of MVCT images for correcting kVCT images in the MVCT-NMAR technique greatly reduces metal artifacts, avoids secondary artifacts, and makes patient images more useful for correct dose calculation in radiation therapy. These improvements are significant, provided the MVCT and kVCT images are correctly registered. The remaining and the secondary artifacts (soft tissue blurring, eroded bones, false bones or air pockets, CT number cupping within the metal) present in orthopedic metal artifact reduction corrected images are removed in the MVCT-NMAR corrected images. A large dose reduction was possible outside the planning target volume (eg, 59.2 Gy to 52.5 Gy in pubic bone) when these MVCT-NMAR corrected images were used in TomoTherapy treatment plans without directional blocks for a prostate cancer patient.
The use of MVCT-NMAR corrected images in radiation therapy treatment planning could improve the treatment plan quality for patients with metallic implants.
评估使用兆伏 CT(MVCT)预先图像对校正归一化金属伪影减少(NMAR)方法校正的患者诊断千伏计算机断层扫描(kVCT)图像中的金属伪影:MVCT-NMAR。
将 MVCT-NMAR 应用于 5 名患者的图像:3 名双髋关节假体患者,1 名单髋关节假体患者和 1 名牙填充物患者。评估校正后的图像,以观察组织结构及其界面,并进行放射治疗剂量计算。将其与飞利浦 CT 扫描仪中商业矫形金属伪影减少算法校正的相应图像进行比较。
在 MVCT-NMAR 技术中,使用 MVCT 图像校正 kVCT 图像可大大减少金属伪影,避免二次伪影,并使患者图像更有助于正确计算放射治疗中的剂量。这些改进是显著的,前提是 MVCT 和 kVCT 图像正确注册。在 MVCT-NMAR 校正图像中,去除了矫形金属伪影减少校正图像中存在的剩余和二次伪影(软组织模糊,侵蚀骨,假骨或气腔,金属内 CT 数凹陷)。当在 TomoTherapy 治疗计划中为前列腺癌患者使用这些 MVCT-NMAR 校正图像而不使用定向块时,在计划靶体积外部可以进行大量剂量减少(例如,耻骨从 59.2Gy 减少到 52.5Gy)。
在放射治疗计划中使用 MVCT-NMAR 校正图像可改善有金属植入物的患者的治疗计划质量。