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从外部替代物推断滞后性呼吸肿瘤运动:一种状态增强方法。

Inference of hysteretic respiratory tumor motion from external surrogates: a state augmentation approach.

作者信息

Ruan D, Fessler J A, Balter J M, Berbeco R I, Nishioka S, Shirato H

机构信息

Department of Electrical Engineering and Computer Science, The University of Michigan, Ann Arbor, MI, USA.

出版信息

Phys Med Biol. 2008 Jun 7;53(11):2923-36. doi: 10.1088/0031-9155/53/11/011. Epub 2008 May 6.

Abstract

It is important to monitor tumor movement during radiotherapy. Respiration-induced motion affects tumors in the thorax and abdomen (in particular, those located in the lung region). For image-guided radiotherapy (IGRT) systems, it is desirable to minimize imaging dose, so external surrogates are used to infer the internal tumor motion between image acquisitions. This process relies on consistent correspondence between the external surrogate signal and the internal tumor motion. Respiratory hysteresis complicates the external/internal correspondence because two distinct tumor positions during different breathing phases can yield the same external observation. Previous attempts to resolve this ambiguity often subdivided the data into inhale/exhale stages and restricted the estimation to only one of these directions. In this study, we propose a new approach to infer the internal tumor motion from external surrogate signal using state augmentation. This method resolves the hysteresis ambiguity by incorporating higher-order system dynamics. It circumvents the segmentation of the internal/external trajectory into different phases, and estimates the inference map based on all the available external/internal correspondence pairs. Optimization of the state augmentation is investigated. This method generalizes naturally to adaptive on-line algorithms.

摘要

在放射治疗期间监测肿瘤运动很重要。呼吸引起的运动影响胸部和腹部的肿瘤(特别是位于肺部区域的肿瘤)。对于图像引导放射治疗(IGRT)系统,希望将成像剂量降至最低,因此使用外部替代物来推断图像采集之间的内部肿瘤运动。这个过程依赖于外部替代信号与内部肿瘤运动之间的一致对应关系。呼吸滞后使外部/内部对应关系变得复杂,因为在不同呼吸阶段的两个不同肿瘤位置可以产生相同的外部观察结果。以前解决这种模糊性的尝试通常将数据细分为吸气/呼气阶段,并将估计限制在这些方向中的一个方向上。在本研究中,我们提出了一种使用状态增强从外部替代信号推断内部肿瘤运动的新方法。该方法通过纳入高阶系统动力学来解决滞后模糊性。它避免了将内部/外部轨迹分割成不同阶段,并基于所有可用的外部/内部对应对估计推断映射。研究了状态增强的优化。该方法自然地推广到自适应在线算法。

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