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Suggestion for an extended quality assurance in 4D CT and its function in gated radiotherapy using a motion phantom

机译:建议对4D CT扩展质量保证及其在使用运动体模进行门控放射治疗中的功能

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The use of a retrospective 4D CT has many advantages over a conventional CT because of the additional information of tumour and organ motion during one respiratory cycle. This enables the determination of patient individual treatment margins and more reliable estimation of site effects. Furthermore a 4D CT allows the determination of parameters for respiration gated radiotherapy such as gating window and duty cycle. However, the generation of the CT images is quite different in comparison of a conventional CT. 4D CT scans use a multi-slice CT scan, which permits evaluation of all 'bins' of the 4D data set. For this different CT image generation a new quality assurance is necessary, controlling the new features and correlations of the additional components. We have developed an extended quality assurance procedure, which controls the geometric size as well as the extension of motion. Because the external waveform is monitored by a signal provider placed on patient's abdomen or chest, the synchronous motion of external signal provider with internal pictured objects of interests is to be checked. Another important test for the treatment planning system concerns the object density (referring to the Hounsfield Units (HU)) without and with motion.
机译:回顾性4D CT的使用比常规CT具有许多优势,因为在一个呼吸周期中,肿瘤和器官的运动会产生更多信息。这使得能够确定患者的个体治疗余量,并且可以更可靠地估算出部位效应。此外,4D CT可以确定呼吸门控放射疗法的参数,例如门控窗和占空比。然而,与常规CT相比,CT图像的生成是完全不同的。 4D CT扫描使用多层CT扫描,可以评估4D数据集的所有“箱”。对于这种不同的CT图像生成,需要新的质量保证,以控制附加组件的新功能和相关性。我们已经开发了扩展的质量保证程序,该程序可以控制几何尺寸以及运动的扩展。因为外部波形是由放置在患者腹部或胸部的信号提供者监视的,所以要检查外部信号提供者与内部感兴趣的目标对象的同步运动。治疗计划系统的另一个重要测试涉及物体密度(指的是Hounsfield单位(HU))是否有运动。

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