Kamomae Takeshi, Monzen Hajime, Nakayama Shinichi, Mizote Rika, Oonishi Yuuichi, Kaneshige Soichiro, Sakamoto Takashi
Department of Therapeutic Radiology, Nagoya University Graduate School of Medicine, Nagoya, Japan; Department of Radiation Oncology, Okayama Central Hospital, Okayama, Japan.
Department of Radiation Oncology, Graduate School of Medical Science, Kinki University, Osaka, Japan.
PLoS One. 2015 May 8;10(5):e0126152. doi: 10.1371/journal.pone.0126152. eCollection 2015.
Movement of the target object during cone-beam computed tomography (CBCT) leads to motion blurring artifacts. The accuracy of manual image matching in image-guided radiotherapy depends on the image quality. We aimed to assess the accuracy of target position localization using free-breathing CBCT during stereotactic lung radiotherapy. The Vero4DRT linear accelerator device was used for the examinations. Reference point discrepancies between the MV X-ray beam and the CBCT system were calculated using a phantom device with a centrally mounted steel ball. The precision of manual image matching between the CBCT and the averaged intensity (AI) images restructured from four-dimensional CT (4DCT) was estimated with a respiratory motion phantom, as determined in evaluations by five independent operators. Reference point discrepancies between the MV X-ray beam and the CBCT image-guidance systems, categorized as left-right (LR), anterior-posterior (AP), and superior-inferior (SI), were 0.33 ± 0.09, 0.16 ± 0.07, and 0.05 ± 0.04 mm, respectively. The LR, AP, and SI values for residual errors from manual image matching were -0.03 ± 0.22, 0.07 ± 0.25, and -0.79 ± 0.68 mm, respectively. The accuracy of target position localization using the Vero4DRT system in our center was 1.07 ± 1.23 mm (2 SD). This study experimentally demonstrated the sufficient level of geometric accuracy using the free-breathing CBCT and the image-guidance system mounted on the Vero4DRT. However, the inter-observer variation and systematic localization error of image matching substantially affected the overall geometric accuracy. Therefore, when using the free-breathing CBCT images, careful consideration of image matching is especially important.
锥形束计算机断层扫描(CBCT)期间目标物体的移动会导致运动模糊伪影。图像引导放射治疗中手动图像匹配的准确性取决于图像质量。我们旨在评估立体定向肺部放射治疗期间使用自由呼吸CBCT进行目标位置定位的准确性。使用Vero4DRT直线加速器设备进行检查。使用带有中心安装钢球的体模设备计算MV X射线束与CBCT系统之间的参考点差异。由五名独立操作员进行评估,使用呼吸运动体模估计CBCT与从四维CT(4DCT)重建的平均强度(AI)图像之间手动图像匹配的精度。MV X射线束与CBCT图像引导系统之间的参考点差异,分为左右(LR)、前后(AP)和上下(SI),分别为0.33±0.09、0.16±0.07和0.05±0.04mm。手动图像匹配的残余误差的LR、AP和SI值分别为-0.03±0.22、0.07±0.25和-0.79±0.68mm。我们中心使用Vero4DRT系统进行目标位置定位的准确性为1.07±1.23mm(2标准差)。本研究通过实验证明了使用自由呼吸CBCT和安装在Vero4DRT上的图像引导系统具有足够的几何精度水平。然而,观察者间差异和图像匹配的系统定位误差对整体几何精度有重大影响。因此,在使用自由呼吸CBCT图像时,仔细考虑图像匹配尤为重要。