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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Physical radiotherapy treatment planning based on functional PET/CT data.
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Physical radiotherapy treatment planning based on functional PET/CT data.

机译:基于功能性PET / CT数据的物理放疗治疗计划。

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摘要

Positron emission tomography (PET) provides molecular information about the tumor microenvironment in addition to anatomical imaging. Hence, it seems to be highly beneficial to integrate PET data into radiotherapy (RT) treatment planning. Functional PET images can be used in RT planning following different strategies, with different orders of complexity. In a first instance, PET imaging data can be used for better target volume delineation. A second strategy, dose painting by contours (DPBC), consists of creating an additional PET-based target volume which will then be treated with a higher dose level. In contrast, dose painting by numbers (DPBN) aims for a locally varying dose prescription according to the variation of the PET signal. For both dose painting approaches, isotoxicity planning strategies should be applied in order not to compromise organs at risk compared to conventional modern RT treatment. In terms of physical dose painting treatment planning, several factors that may introduce limitations and uncertainties are of major importance. These are the PET voxel size, uncertainties due to image acquisition and reconstruction, a reproducible image registration, inherent biological uncertainties due to biological and chemical tracer characteristics, accurate dose calculation algorithms and radiation delivery techniques able to apply highly modulated dose distributions. Further research is necessary in order to investigate these factors and their influence on dose painting treatment planning and delivery thoroughly. To date, dose painting remains a theoretical concept which needs further validation. Nevertheless, molecular imaging has the potential to significantly improve target volume delineation and might also serve as a basis for treatment alteration in the future.
机译:正电子发射断层扫描(PET)除了提供解剖学成像之外,还提供有关肿瘤微环境的分子信息。因此,将PET数据整合到放疗(RT)治疗计划中似乎非常有益。功能性PET图像可以按照不同的策略,不同的复杂度顺序用于RT计划中。首先,PET成像数据可以用于更好的目标体积描绘。第二种策略是按轮廓绘制剂量(DPBC),包括创建一个附加的基于PET的目标体积,然后以更高的剂量水平对其进行处理。相反,数字剂量涂装(DPBN)旨在根据PET信号的变化局部改变剂量处方。对于两种剂量涂装方法,均应采用等毒性规划策略,以不损害与传统现代RT治疗相比有风险的器官。就物理剂量喷漆治疗计划而言,可能会引入局限性和不确定性的几个因素至关重要。这些因素包括:PET体素大小,由于图像采集和重建引起的不确定性,可重现的图像配准,由于生物学和化学示踪剂特性引起的固有生物学不确定性,精确的剂量计算算法以及能够应用高度调制的剂量分布的辐射传输技术。为了进一步研究这些因素及其对剂量喷涂治疗计划和交付的影响,有必要进行进一步的研究。迄今为止,剂量涂装仍是一个理论概念,需要进一步验证。然而,分子成像有可能显着改善靶区的轮廓,并且将来还可以作为治疗改变的基础。

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