...
首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Tumor tracking method based on a deformable 4D CT breathing motion model driven by an external surface surrogate
【24h】

Tumor tracking method based on a deformable 4D CT breathing motion model driven by an external surface surrogate

机译:基于外表面代理驱动的可变形4D CT呼吸运动模型的肿瘤跟踪方法

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Purpose To develop a tumor tracking method based on a surrogate-driven motion model, which provides noninvasive dynamic localization of extracranial targets for the compensation of respiration-induced intrafraction motion in high-precision radiation therapy. Methods and Materials The proposed approach is based on a patient-specific breathing motion model, derived a priori from 4-dimensional planning computed tomography (CT) images. Model parameters (respiratory baseline, amplitude, and phase) are retrieved and updated at each treatment fraction according to in-room radiography acquisition and optical surface imaging. The baseline parameter is adapted to the interfraction variations obtained from the daily cone beam (CB) CT scan. The respiratory amplitude and phase are extracted from an external breathing surrogate, estimated from the displacement of the patient thoracoabdominal surface, acquired with a noninvasive surface imaging device. The developed method was tested on a database of 7 lung cancer patients, including the synchronized information on internal and external respiratory motion during a CBCT scan. Results About 30 seconds of simultaneous acquisition of CBCT and optical surface images were analyzed for each patient. The tumor trajectories identified in CBCT projections were used as reference and compared with the target trajectories estimated from surface displacement with the a priori motion model. The resulting absolute differences between the reference and estimated tumor motion along the 2 image dimensions ranged between 0.7 and 2.4 mm; the measured phase shifts did not exceed 7% of the breathing cycle length. Conclusions We investigated a tumor tracking method that integrates breathing motion information provided by the 4-dimensional planning CT with surface imaging at the time of treatment, representing an alternative approach to point-based external-internal correlation models. Although an in-room radiograph-based assessment of the reliability of the motion model is envisaged, the developed technique does not involve the estimation and continuous update of correlation parameters, thus requiring a less intense use of invasive imaging.
机译:目的开发一种基于替代驱动运动模型的肿瘤追踪方法,该方法可提供颅外靶标的无创动态定位,以补偿高精度放射治疗中呼吸诱发的内分形运动。方法和材料所提出的方法基于特定于患者的呼吸运动模型,该模型是从4维规划的计算机断层扫描(CT)图像中得出的。根据室内放射线照相术采集和光学表面成像,在每个治疗部分检索并更新模型参数(呼吸基线,幅度和相位)。基线参数适用于从每日锥形束(CB)CT扫描获得的折射率变化。呼吸幅度和相位是从外部呼吸替代物提取的,该外部呼吸替代物是用无创表面成像设备采集的患者胸腹表面的位移估算出的。在7名肺癌患者的数据库中对开发的方法进行了测试,包括在CBCT扫描过程中有关内部和外部呼吸运动的同步信息。结果对每位患者进行了大约30秒的同时采集CBCT和光学表面图像的分析。将在CBCT投影中确定的肿瘤轨迹用作参考,并与通过先验运动模型根据表面位移估算的目标轨迹进行比较。沿着两个图像尺寸,参考运动与估计肿瘤运动之间的绝对差值介于0.7和2.4 mm之间;测量的相移不超过呼吸周期长度的7%。结论我们研究了一种肿瘤追踪方法,该方法将4维计划CT提供的呼吸运动信息与治疗时的表面成像相结合,代表了基于点的内外相关模型的另一种方法。尽管设想了基于室内射线照相的运动模型可靠性评估,但是开发的技术不涉及相关参数的估计和连续更新,因此需要减少对侵入性成像的使用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号