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首页> 外文期刊>Medical Physics >Algorithm and simulation for real-time positron emission based tumor tracking using a linear fiducial marker.
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Algorithm and simulation for real-time positron emission based tumor tracking using a linear fiducial marker.

机译:使用线性基准标记基于实时正电子发射的肿瘤跟踪的算法和仿真。

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摘要

The effectiveness of radiotherapy in cancer treatment remains significantly limited by the accuracy of tumor dose delivery. The ideal solution lies in real-time localization of patient tumors during therapy; one such method is by tracking implanted low-activity positron emitters using two pairs of orthogonally placed gamma-ray detectors. Prior studies have examined multiple point sources, which have potential patient complications during implantation. A linear source geometry is proposed as a less invasive alternative, with potential higher-precision tracking. A source localization algorithm has been devised using cost-function minimization of the source position estimate relative to annihilation gamma coincidence lines. The algorithm was tested via Monte Carlo simulation methods using a Geant4 application for emission tomography (GATE) package for a source of length of 2.00 cm and width of 0.1 mm. The midpoint of the linear marker was located within submillimeter accuracy at 200 coincidence events and the orientation of the source determined with less than 5 degrees (0.087 rad) angular deviation at 300 events. At an optimal event count of 700, tracking had mean midpoint error of 0.48 +/- 0.26 mm and mean angular deviation of 0.041 +/- 0.023 rad (1.4 degrees +/- 0.8 degree). The source and tracking algorithm may prove effective for future clinical implementation in radiotherapy treatment.
机译:放射治疗在癌症治疗中的有效性仍然受到肿瘤剂量传递准确性的明显限制。理想的解决方案在于在治疗过程中实时定位患者肿瘤。一种这样的方法是通过使用两对正交放置的伽马射线探测器跟踪植入的低活度正电子发射器。先前的研究已经检查了多个点源,这些点在植入期间可能会给患者带来并发症。线性光源的几何形状被提议作为一种侵入性较小的替代方法,并具有潜在的高精度跟踪功能。已经使用成本函数最小化相对于an灭伽玛重合线的源位置估计来设计源定位算法。该算法通过Monte Carlo模拟方法进行了测试,该方法使用的是Geant4应用程序(用于发射层析成像(GATE)包),源长度为2.00 cm,宽度为0.1 mm。线性标记的中点在200个重合事件中位于亚毫米精度内,并且在300个事件中以小于5度(0.087 rad)的角度偏差确定源的方向。在最佳事件计数为700时,跟踪的平均中点误差为0.48 +/- 0.26 mm,平均角度偏差为0.041 +/- 0.023 rad(1.4度+/- 0.8度)。源和跟踪算法可能被证明对于放射治疗中的未来临床实施是有效的。

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