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A Study on Stereoscopic X-ray Imaging Data Set on the Accuracy of Real-Time Tumor Tracking in External Beam Radiotherapy

机译:立体X射线成像数据集对外束放射治疗中实时肿瘤追踪准确性的研究

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摘要

At external beam radiotherapy, stereoscopic X-ray imaging system is responsible as tumor motion information provider. This system takes X-ray images intermittently from tumor position (1) at pretreatment step to provide training data set for model construction and (2) during treatment to control the accuracy of correlation model performance. In this work, we investigated the effect of imaging data points provided by this system on treatment quality. Because some information is still lacking about (1) the number of imaging data points, (2) shooting time for capturing each data point, and also (3) additional imaging dose delivered by this system. These 3 issues were comprehensively assessed at (1) pretreatment step while training data set is gathered for prediction model construction and (2) during treatment while model is tested and reconstructed using new arrival data points. A group of real patients treated with CyberKnife Synchrony module was chosen in this work, and an adaptive neuro-fuzzy inference system was considered as consistent correlation model. Results show that a proper model can be constructed while the number of imaging data points is highly enough to represent a good pattern of breathing cycles. Moreover, a trade-off between the number of imaging data points and additional imaging dose is considered in this study. Since breathing phenomena are highly variable at different patients, the time for taking some of imaging data points is very important, while their absence at that critical time may yield wrong tumor tracking. In contrast, the sensitivity of another category of imaging data points is not high, while breathing is normal and in the control range. Therefore, an adaptive supervision on the implementation of stereoscopic X-ray imaging is proposed to intelligently accomplish shooting process, based on breathing motion variations.
机译:在外部束放射治疗中,立体X射线成像系统负责提供肿瘤运动信息。该系统从肿瘤位置间歇性地获取X射线图像(1)在预处理步骤中提供训练数据集以进行模型构建,(2)在治疗过程中控制相关模型性能的准确性。在这项工作中,我们调查了该系统提供的成像数据点对治疗质量的影响。因为仍然缺少一些有关(1)成像数据点的数量,(2)捕获每个数据点的拍摄时间以及(3)此系统传递的额外成像剂量的信息。在(1)预处理步骤中收集了训练数据集以进行预测模型构建,(2)在治疗期间使用了新到达的数据点对模型进行了测试和重建时,对这三个问题进行了全面评估。在这项工作中选择了一组使用射波刀同步模块治疗的真实患者,并将自适应神经模糊推理系统视为一致的相关模型。结果表明,可以构建适当的模型,而成像数据点的数量足以代表良好的呼吸周期模式。而且,在这项研究中考虑了成像数据点的数量与额外成像剂量之间的权衡。由于不同患者的呼吸现象变化很大,因此获取一些成像数据点的时间非常重要,而在关键时刻缺少这些数据可能会导致错误的肿瘤追踪。相反,另一类成像数据点的灵敏度不高,而呼吸正常且处于控制范围内。因此,基于呼吸运动的变化,提出了一种对立体X射线成像实施的自适应监督,​​以智能地完成拍摄过程。

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