首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Real-time target position estimation using stereoscopic kilovoltage/megavoltage imaging and external respiratory monitoring for dynamic multileaf collimator tracking.
【24h】

Real-time target position estimation using stereoscopic kilovoltage/megavoltage imaging and external respiratory monitoring for dynamic multileaf collimator tracking.

机译:使用立体千伏/兆电压成像和外部呼吸监测进行实时目标位置估计,以动态跟踪多叶准直仪。

获取原文
获取原文并翻译 | 示例
           

摘要

PURPOSE: To develop a real-time target position estimation method using stereoscopic kilovoltage (kV)/megavoltage (MV) imaging and external respiratory monitoring, and to investigate the performance of a dynamic multileaf collimator tracking system using this method. METHODS AND MATERIALS: The real-time three-dimensional internal target position estimation was established by creating a time-varying correlation model that connected the external respiratory signals with the internal target motion measured intermittently using kV/MV imaging. The method was integrated into a dynamic multileaf collimator tracking system. Tracking experiments were performed for 10 thoracic/abdominal traces. A three-dimensional motion platform carrying a gold marker and a separate one-dimensional motion platform were used to reproduce the target and external respiratory motion, respectively. The target positions were detected by kV (1 Hz) and MV (5.2 Hz) imaging, and external respiratory motion was captured by an optical system (30 Hz). The beam-target alignment error was quantified as the positional difference between the target and circular beam center on the MV images acquired during tracking. The correlation model error was quantified by comparing a model estimate and measured target positions. RESULTS: The root-mean-square errors in the beam-target alignment that had ranged from 3.1 to 7.6 mm without tracking were reduced to <1.5 mm with tracking, except during the model building period (6 s). The root-mean-square error in the correlation model was submillimeters in all directions. CONCLUSION: A novel real-time target position estimation method was developed and integrated into a dynamic multileaf collimator tracking system and demonstrated an average submillimeter geometric accuracy after initializing the internal/external correlation model. The method used hardware tools available on linear accelerators and therefore shows promise for clinical implementation.
机译:目的:开发一种使用立体千伏(kV)/兆伏(MV)成像和外部呼吸监测的实时目标位置估计方法,并研究使用该方法的动态多叶准直仪跟踪系统的性能。方法和材料:通过建立时变相关模型,建立实时三维内部目标位置估计,该模型将外部呼吸信号与使用kV / MV成像间歇测量的内部目标运动联系起来。该方法已集成到动态多叶准直仪跟踪系统中。跟踪实验进行了10胸/腹痕迹。带有金标记的三维运动平台和单独的一维运动平台分别用于复制目标呼吸和外部呼吸运动。通过kV(1 Hz)和MV(5.2 Hz)成像检测目标位置,并通过光学系统(30 Hz)捕获外部呼吸运动。束-目标对准误差被量化为在跟踪期间获取的MV图像上的目标和圆形束中心之间的位置差。通过比较模型估计值和测得的目标位置来量化相关模型误差。结果:除了在模型构建期间(6 s)外,在没有跟踪的情况下,光束目标对准的均方根误差在3.1至7.6 mm范围内减少至<1.5 mm。相关模型中的均方根误差在所有方向上都是亚毫米。结论:开发了一种新颖的实时目标位置估计方法,并将其集成到动态多叶准直仪跟踪系统中,并在初始化内部/外部相关模型后证明了平均亚毫米的几何精度。该方法使用了线性加速器上可用的硬件工具,因此显示出有望用于临床。

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