Medwig J, Gaede S, Battista J J, Yartsev S
London Regional Cancer Program, London Health Sciences Centre, London, Ontario, Canada.
J Med Imaging Radiat Oncol. 2010 Jun;54(3):280-6. doi: 10.1111/j.1754-9485.2010.02171.x.
Optimisation of imaging modes for kilovoltage CT (kVCT) used for treatment planning and megavoltage CT (MVCT) image guidance used in ungated helical tomotherapy was investigated for laterally moving targets. Computed tomography images of the QUASAR Respiratory Motion Phantom were acquired without target motion and for lateral motion of the target, with 2-cm peak-to-peak amplitude and a period of 4 s. Reference kVCT images were obtained using a 16-slice CT scanner in standard fast helical CT mode, untagged average CT mode and various post-processed 4D-CT modes (0% phase, average and maximum intensity projection). Three sets of MVCT images with different inter-slice spacings of were obtained on a Hi-Art tomotherapy system with the phantom displaced by a known offset position. Eight radiation therapists performed co-registration of MVCT obtained with 2-, 4- and 6-mm slice spacing and kVCT studies independently for all 15 CT imaging combinations. In the investigated case, the untagged average kVCT and 4-mm slice spacing for the MVCT yielded more accurate registration in the transverse plane. The average residual uncertainty of this combination of imaging procedures was 0.61 +/- 0.16 mm in the longitudinal direction, 0.45 +/- 0.14 mm in the anterior-posterior direction and insignificant in the lateral direction. Manual registration of MVCT-kVCT study pairs is necessary to account for a target in significant lateral motion with respect to bony structures.
针对横向移动的靶区,研究了用于治疗计划的千伏CT(kVCT)成像模式以及用于非门控螺旋断层放射治疗的兆伏CT(MVCT)图像引导的优化。在无靶区运动以及靶区横向运动(峰峰值幅度为2 cm,周期为4 s)的情况下,采集了QUASAR呼吸运动体模的计算机断层扫描图像。使用16层CT扫描仪,在标准快速螺旋CT模式、未标记平均CT模式以及各种后处理的4D-CT模式(0%相位、平均强度投影和最大强度投影)下获得了参考kVCT图像。在Hi-Art断层放射治疗系统上,通过将体模移动到已知的偏移位置,获得了三组层间距不同的MVCT图像。八名放射治疗师针对所有15种CT成像组合,分别对层间距为2 mm、4 mm和6 mm的MVCT与kVCT研究进行了配准。在所研究的病例中,未标记平均kVCT和层间距为4 mm的MVCT在横断面产生了更准确的配准。这种成像程序组合在纵向的平均残余不确定性为0.61±0.16 mm,在前后方向为0.45±0.14 mm,在横向不显著。对于相对于骨性结构有显著横向运动的靶区,需要手动配准MVCT-kVCT研究对。