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基于 CT 的全身放射治疗定位设备在 PET/MRI 混合成像中的衰减校正。

CT-based attenuation correction of whole-body radiotherapy treatment positioning devices in PET/MRI hybrid imaging.

机构信息

Division of Medical Physics in Radiation Oncology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

National Center for Radiation Research in Oncology (NCRO), Heidelberg Institute for Radiation Oncology (HIRO), Heidelberg, Germany.

出版信息

Phys Med Biol. 2020 Nov 27;65(23):23NT02. doi: 10.1088/1361-6560/abb7c3.

Abstract

OBJECTIVE

To implement computed tomography (CT)-based attenuation maps of radiotherapy (RT) positioning hardware and radiofrequency (RF) coils to enable hybrid positron emission tomography/magnetic resonance imaging (PET/MRI)-based RT treatment planning.

MATERIALS AND METHODS

The RT positioning hardware consisted of a flat RT table overlay, coil holders for abdominal scans, coil holders for head and neck scans and an MRI compatible hip and leg immobilization device. CT images of each hardware element were acquired on a CT scanner. Based on the CT images, attenuation maps of the devices were created. Validation measurements were performed on a PET/MR scanner using a Ge phantom (48 MBq, 10 min scan time). Scans with each device in treatment position were performed. Then, reference scans containing only the phantom were taken. The scans were reconstructed online (at the PET/MRI scanner) and offline (via e7tools on a PC) using identical reconstruction parameters. Average reconstructed activity concentrations of the device and reference scans were compared.

RESULTS

The device attenuation maps were successfully implemented. The RT positioning devices caused an average decrease of reconstructed PET activity concentration in the range between -8.3 ± 2.1% (mean ± SD) (head and neck coil holder with coils) to -1.0 ± 0.5% (abdominal coil holder). With attenuation correction taking into account RT hardware, these values were reduced to -2.0 ± 1.2% and -0.6 ± 0.5%, respectively. The results of the offline and online reconstructions were nearly identical, with a difference of up to 0.2%.

CONCLUSION

The decrease in reconstructed activity concentration caused by the RT positioning devices is clinically relevant and can successfully be corrected using CT-based attenuation maps. Both the offline and online reconstruction methods are viable options.

摘要

目的

实现放射治疗(RT)定位硬件和射频(RF)线圈的基于计算机断层扫描(CT)的衰减图,以实现基于正电子发射断层扫描/磁共振成像(PET/MRI)的 RT 治疗计划。

材料与方法

RT 定位硬件包括一个平板 RT 台覆盖物、腹部扫描线圈支架、头颈部扫描线圈支架和一个与 MRI 兼容的髋部和腿部固定装置。每个硬件元件的 CT 图像均在 CT 扫描仪上采集。基于 CT 图像,为设备创建了衰减图。在 PET/MR 扫描仪上使用 Ge 体模(48MBq,10 分钟扫描时间)进行验证测量。在治疗位置进行带有每个设备的扫描,然后进行仅包含体模的参考扫描。使用相同的重建参数在 PET/MRI 扫描仪上在线(在 PET/MRI 扫描仪上)和离线(通过 PC 上的 e7tools)重建扫描。比较设备和参考扫描的平均重建活性浓度。

结果

成功实施了设备衰减图。RT 定位设备导致重建的 PET 活性浓度平均降低范围为-8.3±2.1%(平均值±标准差)(带有线圈的头颈部线圈支架)至-1.0±0.5%(腹部线圈支架)。考虑到 RT 硬件,这些值分别降低至-2.0±1.2%和-0.6±0.5%。离线和在线重建的结果几乎相同,差异最大可达 0.2%。

结论

RT 定位设备引起的重建活性浓度降低具有临床相关性,并且可以使用基于 CT 的衰减图成功校正。离线和在线重建方法都是可行的选择。

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