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首页> 外文期刊>Physics in medicine and biology. >Real-time tracking of tumor motions and deformations along the leaf travel direction with the aid of a synchronized dynamic MLC leaf sequencer
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Real-time tracking of tumor motions and deformations along the leaf travel direction with the aid of a synchronized dynamic MLC leaf sequencer

机译:借助同步动态MLC叶子定序器实时跟踪沿叶子行进方向的肿瘤运动和变形

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Advanced radiotherapeutical techniques like intensity-modulated radiation therapy (IMRT) are based on an accurate knowledge of the location of the radiation target. An accurate dose delivery, therefore, requires a method to account for the inter- and intrafractional target motion and the target deformation occurring during the course of treatment. A method to compensate in real time for changes in the position and shape of the target is the use of a dynamic multileaf collimator (MLC) technique which can be devised to automatically arrange the treatment field according to real-time image information. So far, various approaches proposed for leaf sequencers have had to rely on a priori known target motion data and have aimed to optimize the overall treatment time. Since for a real-time dose delivery the target motion is not known a priori, the velocity range of the leading leaves is restricted by a safety margin to c x v(max) while the following leaves can travel with an additional maximum speed to compensate for the respective target movements. Another aspect to be considered is the tongue and groove effect. A uniform radiation field can only be achieved if the leaf movements are synchronized. The method presented in this note is the first to combine a synchronizing sequencer and real-time tracking with a dynamic MLC. The newly developed algorithm is capable of online optimizing the leaf velocities by minimizing the overall treatment time while at the same time it synchronizes the leaf trajectories in order to avoid the tongue and groove effect. The simultaneous synchronization is performed with the help of an online-calculated mid-time leaf trajectory which is common for all leaf pairs and which takes into account the real-time target motion and deformation information.
机译:诸如强度调制放射治疗(IMRT)之类的先进放射治疗技术是基于对放射目标位置的准确了解。因此,精确的剂量输送需要一种方法来解决分数和分数内目标运动以及在治疗过程中发生的目标变形。一种实时补偿目标位置和形状变化的方法是使用动态多叶准直器(MLC)技术,该技术可设计为根据实时图像信息自动安排治疗区域。到目前为止,为叶序器提出的各种方法必须依靠先验已知的目标运动数据,并且旨在优化总处理时间。由于对于实时剂量输送,目标运动事先不是已知的,因此前叶片的速度范围受安全裕度限制为cxv(max),而随后的叶片可以额外的最大速度行进以补偿各自的目标运动。要考虑的另一个方面是榫槽效应。仅当叶片运动同步时才能获得均匀的辐射场。本说明中介绍的方法是第一种将同步定序器和实时跟踪与动态MLC结合在一起的方法。新开发的算法能够通过使总处理时间最小化来在线优化叶片速度,同时同步叶片轨迹以避免产生舌沟效应。同时同步是通过在线计算的中叶时间轨迹进行的,该轨迹对于所有叶对都是通用的,并且考虑了实时目标运动和变形信息。

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