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The role of PET/CT scanning in radiotherapy planning

机译:PET / CT扫描在放射治疗计划中的作用

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ABSTRACT. The introduction of functional data into the radiotherapy treatment planning process is currently the focus of significant commercial, technical, scientific and clinical development. The potential of such data from positron emission tomography (PET) was recognized at an early stage and was integrated into the radiotherapy treatment planning process through the use of image fusion software. The combination of PET and CT in a single system (PET/CT) to form an inherently fused anatomical and functional dataset has provided an imaging modality which could be used as the prime tool in the delineation of tumour volumes and the preparation of patient treatment plans, especially when integrated with virtual simulation. PET imaging typically using 18F-Fluorodeoxyglucose (18F-FDG) can provide data on metabolically active tumour volumes. These functional data have the potential to modify treatment volumes and to guide treatment delivery to cells with particular metabolic characteristics. This paper reviews the current status of the integration of PET and PET/CT data into the radiotherapy treatment process. Consideration is given to the requirements of PET/CT data acquisition with reference to patient positioning aids and the limitations imposed by the PET/CT system. It also reviews the approaches being taken to the definition of functional/tumour volumes and the mechanisms available to measure and include physiological motion into the imaging process. The use of PET data must be based upon a clear understanding of the interpretation and limitations of the functional signal. Protocols for the implementation of this development remain to be defined, and outcomes data based upon clinical trials are still awaited.
机译:抽象。将功能数据引入放射治疗计划过程是当前重要的商业,技术,科学和临床开发的重点。这种来自正电子发射断层扫描(PET)的数据的潜力在早期就得到了认可,并通过使用图像融合软件整合到了放射治疗的治疗计划过程中。 PET和CT在单个系统(PET / CT)中的结合形成了固有融合的解剖学和功能数据集,提供了一种成像方式,可以用作描绘肿瘤体积和制定患者治疗计划的主要工具,尤其是与虚拟仿真集成时。通常使用18F-氟脱氧葡萄糖(18F-FDG)进行的PET成像可提供有关代谢活跃肿瘤体积的数据。这些功能数据可能会修改治疗量并指导将治疗传递至具有特定代谢特征的细胞。本文回顾了将PET和PET / CT数据整合到放射治疗过程中的现状。考虑到患者定位辅助设备对PET / CT数据采集的要求以及PET / CT系统施加的限制。它还回顾了用于定义功能/肿瘤体积的方法以及可用于测量生理运动并将其包括在成像过程中的机制。 PET数据的使用必须基于对功能信号解释和限制的清楚理解。实施该开发方案的方案尚待确定,仍在等待基于临床试验的结果数据。

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