Schöffel Philipp J, Harms Wolfgang, Sroka-Perez Gabriele, Schlegel Wolfgang, Karger Christian P
German Cancer Research Center (DKFZ), Department of Medical Physics in Radiation Oncology, Im Neuenheimer Feld 280, 69120 Heidelberg, Germany.
Phys Med Biol. 2007 Jul 7;52(13):3949-63. doi: 10.1088/0031-9155/52/13/019. Epub 2007 Jun 6.
Accurate and reproducible patient setup is a prerequisite to fractionated radiotherapy. To evaluate the applicability and technical performance of a commercial 3D surface imaging system for repositioning of breast cancer patients, measurements were performed in a rigid anthropomorphic phantom as well as in healthy volunteers. The camera system records a respiration-gated surface model of the imaged object, which may be registered to a previously recorded reference model. A transformation is provided, which may be applied to the treatment couch to correct the setup of the patient. The system showed a high stability and detected pre-defined shifts of phantoms and healthy volunteers with an accuracy of 0.40 +/- 0.26 mm and 1.02 +/- 0.51 mm, respectively (spatial deviation between pre-defined shift and suggested correction). The accuracy of the suggested rotational correction around the vertical axis was always better than 0.3 degrees in phantom measurements and 0.8 degrees in volunteers, respectively. Comparison of the suggested setup correction with that detected by a second and independently operated marker-based optical system provided consistent results. The results demonstrate that the camera system provides highly accurate setup corrections in a phantom and healthy volunteers. The most efficient use of the system for improving the setup accuracy in breast cancer patients has to be investigated in routine patient treatments.
精确且可重复的患者摆位是分次放疗的前提条件。为评估一款商用三维表面成像系统对乳腺癌患者重新定位的适用性和技术性能,我们在刚性人体模型以及健康志愿者身上进行了测量。该摄像系统记录成像对象的呼吸门控表面模型,此模型可与先前记录的参考模型进行配准。系统会提供一个变换,可应用于治疗床以校正患者的摆位。该系统显示出高稳定性,检测到人体模型和健康志愿者的预定义位移,其精度分别为0.40±0.26毫米和1.02±0.51毫米(预定义位移与建议校正之间的空间偏差)。在人体模型测量中,围绕垂直轴的建议旋转校正精度始终优于0.3度,在志愿者测量中优于0.8度。将建议的摆位校正与由第二个独立操作的基于标记的光学系统检测到的校正进行比较,结果一致。结果表明,该摄像系统在人体模型和健康志愿者中能提供高度精确的摆位校正。在常规患者治疗中,必须研究如何最有效地利用该系统来提高乳腺癌患者的摆位精度。