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通过动态多叶准直器跟踪将调强放疗应用于移动靶区:适用于在射野视观中二维移动的靶区的放疗。

IMRT delivery to a moving target by dynamic MLC tracking: delivery for targets moving in two dimensions in the beam's eye view.

作者信息

McQuaid D, Webb S

机构信息

Joint Department of Physics, Institute of Cancer Research and Royal Marsden NHSF Trust, Downs Road, Sutton, Surrey SM2 5PT, UK.

出版信息

Phys Med Biol. 2006 Oct 7;51(19):4819-39. doi: 10.1088/0031-9155/51/19/007. Epub 2006 Sep 14.

Abstract

A new modification of the dynamic multileaf collimator (dMLC) delivery technique for intensity-modulated therapy (IMRT) is outlined. This technique enables the tracking of a target moving through rigid-body translations in a 2D trajectory in the beam's eye view. The accuracy of the delivery versus that of deliveries with no tracking and of 1D tracking techniques is quantified with clinically derived intensity-modulated beams (IMBs). Leaf trajectories calculated in the target-reference frame were iteratively synchronized assuming regular target motion. This allowed the leaves defined in the lab-reference frame to simultaneously follow the target motion and to deliver the required IMB without violation of the leaf maximum-velocity constraint. The leaves are synchronized until the gradient of the leaf position at every instant is less than a calculated maximum. The delivered fluence in the target-reference frame was calculated with a simple primary-fluence model. The new 2D tracking technique was compared with the delivered fluence produced by no-tracking deliveries and by 1D tracking deliveries for 33 clinical IMBs. For the clinical IMBs normalized to a maximum fluence of 200 MUs, the rms difference between the desired and the delivered IMB was 15.6 +/- 3.3 MU for the case of a no-tracking delivery, 7.9 +/- 1.6 MU for the case where only the primary component of motion was corrected and 5.1 +/- 1.1 MU for the 2D tracking delivery. The residual error is due to interpolation and sampling effects. The 2D tracking delivery technique requires an increase in the delivery time evaluated as between 0 and 50% of the unsynchronized delivery time for each beam with a mean increase of 13% for the IMBs tested. The 2D tracking dMLC delivery technique allows an optimized IMB to be delivered to moving targets with increased accuracy and with acceptable increases in delivery time. When combined with real-time knowledge of the target motion at delivery time, this technique facilitates improved target conformality relative to no-tracking deliveries and allows PTV margin reduction.

摘要

本文概述了一种用于调强放射治疗(IMRT)的动态多叶准直器(dMLC)递送技术的新改进。该技术能够在射野视角下跟踪目标在二维轨迹中进行刚体平移的运动。利用临床导出的调强射束(IMB)对有跟踪递送与无跟踪递送以及一维跟踪技术递送的精度进行了量化。假设目标进行规则运动,在目标参考系中计算的叶片轨迹被迭代同步。这使得在实验室参考系中定义的叶片能够同时跟踪目标运动,并递送所需的IMB,而不会违反叶片最大速度约束。叶片同步直至每个时刻的叶片位置梯度小于计算出的最大值。使用简单的原发射束模型计算目标参考系中的递送注量。将新的二维跟踪技术与33个临床IMB的无跟踪递送和一维跟踪递送产生的递送注量进行了比较。对于归一化至最大注量为200 MU的临床IMB,无跟踪递送情况下期望IMB与递送IMB之间的均方根差为15.6±3.3 MU,仅校正运动主要分量时为7.9±1.6 MU,二维跟踪递送时为5.1±1.1 MU。残余误差归因于插值和采样效应。二维跟踪递送技术需要增加递送时间,对于每束射束,增加的时间评估为非同步递送时间的0%至50%,测试的IMB平均增加13%。二维跟踪dMLC递送技术能够以更高的精度将优化的IMB递送至移动目标,且递送时间增加在可接受范围内。当与递送时目标运动的实时信息相结合时,该技术相对于无跟踪递送有助于改善目标适形性,并允许减少计划靶体积(PTV)边界。

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