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评估放疗计划系统中 SUV 值计算和 4D PET 整合的性能。

Evaluation of the SUV values calculation and 4D PET integration in the radiotherapy treatment planning system.

机构信息

Klinik für Strahlentherapie und Radiologische Onkologie, Klinikum rechts der Isar, Munich, Germany.

出版信息

Radiother Oncol. 2011 Mar;98(3):323-9. doi: 10.1016/j.radonc.2011.01.001. Epub 2011 Feb 4.

Abstract

BACKGROUND AND PURPOSE

To evaluate the SUV calculation and integration of the gated (4D) PET in the iPlan 4.0 treatment planning software (BrainLAB).

MATERIALS AND METHODS

Phantom and patient data for different tracers were used. Two comparisons were performed for each patient: for the delineated VOI, the maximum value of SUV in iPlan was compared with the results from TrueD software. For 10 patients lesion volumes were defined in both systems for a given SUV threshold and differences were calculated. For four patients examined with respiratory gated PET, SUV(max) and volume analysis was performed in each phase of the breathing cycle in the gated and the ungated PET.

RESULTS

Maximum differences of 6% and 10% were found for phantom and patient measurements of SUV(max). For patient data, maximal differences in delineated volume of 10% for ungated and up to 27% for gated PET were found in both systems.

CONCLUSION

This study suggests that for the safe implementation of PET data and delineation algorithms in the radiotherapy planning system, one has to be aware of the differences in SUVs and volumes found in the two systems.

摘要

背景与目的

评估门控(4D)PET 在 iPlan 4.0 治疗计划软件(BrainLAB)中的 SUV 计算和积分。

材料与方法

使用了不同示踪剂的体模和患者数据。对每位患者进行了两次比较:对于勾画的 VOI,iPlan 中的 SUV 最大值与 TrueD 软件的结果进行了比较。对于 10 位患者,在两个系统中为给定 SUV 阈值定义了病变体积,并计算了差异。对于 4 位接受呼吸门控 PET 检查的患者,在门控和非门控 PET 的呼吸周期的每个阶段进行了 SUV(max)和体积分析。

结果

在体模和患者 SUV(max)测量中发现了最大 6%和 10%的差异。对于患者数据,在两个系统中,非门控 PET 的勾画体积最大差异为 10%,而门控 PET 的最大差异可达 27%。

结论

本研究表明,为了在放疗计划系统中安全地实施 PET 数据和勾画算法,必须意识到两个系统中 SUV 和体积的差异。

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