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与治疗剂量的¹³¹I同时给药的¹²⁴I进行正电子发射断层显像(PET)的采集设置。

Acquisition settings for PET of 124I administered simultaneously with therapeutic amounts of 131I.

作者信息

Lubberink Mark, van Schie Annelies, de Jong Hugo W A M, van Dongen Guus A M S, Teule Gerrit J J

机构信息

Department of Nuclear Medicine and PET Research, VU University Medical Centre, Amsterdam, The Netherlands.

出版信息

J Nucl Med. 2006 Aug;47(8):1375-81.

Abstract

UNLABELLED

Radiation dosimetry of thyroid cancer therapy with 131I can be performed by coadministration of 124I followed by longitudinal PET scans over several days. The photons emitted by 131I may affect PET image quality. The aim of this study was to assess the influence of large amounts of 131I on PET image quality and accuracy with various acquisition settings.

METHODS

Noise equivalent count (NEC) rates of 124I only were measured with a standard clinical PET scanner. Apart from the standard 350- to 650-keV energy window, 425- to 650-keV and 460- to 562-keV windows were used and data were acquired both with (2-dimensional) and without (3-dimensional [3D]) septa. A phantom containing 6 hot spheres, filled with a combination of 131I and 124I and with a sphere-to-background ratio of 18:1, was scanned repeatedly with energy window settings as indicated and emission and transmission scan durations of 7 and 3 min, respectively. NEC rates were calculated and compared with those measured with the phantom filled with only 124I. Sphere-to-background ratios in the reconstructed images were determined. One patient with known metastatic thyroid cancer was scanned using energy window settings and scan times as indicated 3 and 6 d after administration of 5.5 GBq of 131I and 75 MBq of 124I.

RESULTS

The highest 124I-only NEC rates were obtained using a 425- to 650-keV energy window in 3D mode. In the presence of (131)I, the settings giving the highest NEC rate and contrast were 425-650 keV and 460-562 keV in 3D mode, with the clinical scans giving the highest quality images with the same settings.

CONCLUSION

Acquisition in 3D mode with a 425- to 650-keV or 460- to 562-keV window leads to the highest image quality and contrast when imaging 124I in the presence of large amounts of 131I using a standard clinical PET scanner.

摘要

未标注

用¹³¹I进行甲状腺癌治疗的辐射剂量测定可通过同时给予¹²⁴I,随后进行数天的纵向PET扫描来完成。¹³¹I发射的光子可能会影响PET图像质量。本研究的目的是评估大量¹³¹I对不同采集设置下PET图像质量和准确性的影响。

方法

使用标准临床PET扫描仪测量仅¹²⁴I的噪声等效计数(NEC)率。除了标准的350至650 keV能量窗,还使用了425至650 keV和460至562 keV能量窗,并且分别在有(二维)和没有(三维[3D])隔板的情况下采集数据。使用包含6个热球体的体模,球体填充有¹³¹I和¹²⁴I的混合物,球体与背景的比例为18:1,按照所示能量窗设置重复扫描,发射和透射扫描持续时间分别为7分钟和3分钟。计算NEC率并与仅填充¹²⁴I的体模测量的NEC率进行比较。确定重建图像中的球体与背景比例。在给予5.5 GBq的¹³¹I和75 MBq的¹²⁴I后3天和6天,使用所示能量窗设置和扫描时间对一名已知有转移性甲状腺癌的患者进行扫描。

结果

在3D模式下使用425至650 keV能量窗获得了仅¹²⁴I的最高NEC率。在存在¹³¹I的情况下,在3D模式下给出最高NEC率和对比度的设置是425 - 650 keV和460 - 562 keV,临床扫描在相同设置下给出了最高质量的图像。

结论

当使用标准临床PET扫描仪在大量¹³¹I存在的情况下对¹²⁴I进行成像时,在3D模式下使用425至650 keV或460至562 keV能量窗可获得最高的图像质量和对比度。

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