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Source location and dose verification for X-ray intra-operative radiotherapy (IORT)

机译:X线术中放射治疗(IORT)的放射源位置和剂量验证

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A recent development in radiotherapy has been the introduction of the PRS Intrabeam system (Karl Zeiss LtD) for the treatment of both brain and breast tumours. This is essentially a miniaturized, electron-driven photon generator that allows high intensity, soft-energy x-rays to be delivered directly to the tumour site in a single fraction. The isotropical distribution of these photons about the tip of a magnetically shielded needle can be viewed as a point source buried in the body. This work has looked into ways of localizing the source in the body in an Emission Computerized Tomography (ECT) procedure. Various detection systems have been considered as possible candidates for this work. The accuracy with which the source can be localized has been investigated. Furthermore, Monte Carlo studies have been employed in order to extract information on the dosimetric aspect of the resulting image. The final goal of this work is to formulate a direct mathematical relation (Transform Map) between the image created by the escaping photons and the dose map as predicted by the theoretical model. This could allow for a real-time monitoring system of the radiation delivery during the treatment and provide dose verification maps for patient records
机译:放射疗法的最新进展是引入了PRS束内系统(Karl Zeiss LtD),用于治疗脑和乳腺肿瘤。这本质上是一种小型的电子驱动光子发生器,可将高强度,软能X射线以单个比例直接传递到肿瘤部位。这些光子围绕磁屏蔽针尖端的各向同性分布可以看作是掩埋在体内的点源。这项工作研究了通过放射计算机断层扫描(ECT)程序在体内定位放射源的方法。各种检测系统已被认为是这项工作的可能候选者。已经研究了可以定位源的准确性。此外,已采用蒙特卡洛研究以提取关于所得图像的剂量学方面的信息。这项工作的最终目标是在逃逸光子产生的图像与理论模型所预测的剂量图之间建立直接的数学关系(变换图)。这可以允许在治疗期间对放射线的传输进行实时监控,并为患者记录提供剂量验证图。

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