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Kilovoltage CT using a linac-CT scanner combination

机译:使用直线加速器-CT扫描仪组合的千伏CT

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ABSTRACT. Modern radiotherapy techniques such as intensity modulation are capable of generating complex dose distributions whose high dose areas tightly conform to the tumour target volume, sparing critical organs even when they are located in close proximity. This potential can only be exploited to its full extent when the accumulated dose actually delivered over the complete treatment course is sufficiently close to the dose computed on the initial CT scan used for treatment planning. Exact patient repositioning is mandatory, but also other sources of error, e.g. changes of the patient's anatomy under therapy, should be taken into account. At the German Cancer Research Center, we use a combination of a linear accelerator and a CT scanner installed in one room and sharing the same couch. It allows the quantification and correction of interfractional variations between planning and treatment delivery. In this paper, we describe treatments of prostate, paraspinal and head and neck tumours. All patients were immobilized by customized fixation devices and treated in a stereotactic setup. For each patient, frequent CT scans were taken during the treatment course. Each scan was compared with the original planning CT using manual checks and automatic rigid matching algorithms. Depending on the individual case, the adaptation to variations was carried out offline after several fractions or in real-time between the CT scan and linac irradiation. We discuss the techniques for detecting and correcting interfractional errors and outline the procedural steps of a linac-CT scanner-supported radiation treatment course.
机译:抽象。诸如强度调制之类的现代放射疗法技术能够产生复杂的剂量分布,其高剂量区域紧密地符合肿瘤目标体积,即使当它们紧邻时也能保留关键器官。只有在整个治疗过程中实际输送的累积剂量足够接近用于治疗计划的初始CT扫描所计算的剂量时,才能充分利用这一潜力。准确的患者重新定位是强制性的,但也有其他错误来源,例如:应考虑患者在治疗过程中解剖结构的变化。在德国癌症研究中心,我们将线性加速器和CT扫描仪组合安装在一个房间中,并共享同一张沙发。它允许对计划和治疗提供之间的分数变化进行量化和校正。在本文中,我们描述了前列腺,脊柱旁和头颈部肿瘤的治疗方法。所有患者均通过定制的固定装置固定并接受立体定向治疗。对于每个患者,在治疗过程中都要进行频繁的CT扫描。使用手动检查和自动刚性匹配算法将每次扫描与原始计划CT进行比较。根据情况的不同,在CT扫描和直线加速器辐照之间经过几次分割后或实时地进行脱机适应。我们讨论了检测和校正分数误差的技术,并概述了直线加速器CT扫描仪支持的放射治疗课程的程序步骤。

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