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西门子 mMR 集成式全身 PET/MR 扫描仪的性能测量。

Performance measurements of the Siemens mMR integrated whole-body PET/MR scanner.

机构信息

Nuklearmedizin, Klinikum Rechts der Isar, Technische Universität München, München, Germany.

出版信息

J Nucl Med. 2011 Dec;52(12):1914-22. doi: 10.2967/jnumed.111.092726. Epub 2011 Nov 11.

Abstract

UNLABELLED

The recently released Biograph mMR is the first commercially available integrated whole-body PET/MR scanner. There are considerable advantages to integrating both modalities in a single scanner that enables truly simultaneous acquisition. However, there are also concerns about the possible degradation of both PET and MR performance in an integrated system. This paper evaluates the performance of the Biograph mMR during independent and simultaneous acquisition of PET and morphologic MR data.

METHODS

The NEMA NU 2-2007 protocol was followed for studying the PET performance. The following measurements were performed: spatial resolution; scatter fraction, count losses, and randoms; sensitivity; accuracy of the correction for count losses and randoms; and image quality. The quality control manual of the American College of Radiology was followed for studying the MR performance. The following measurements were performed: geometric accuracy, spatial resolution, low-contrast detectability, signal-to-noise ratio, static field (B(0)) homogeneity, radiofrequency field (B(1)) homogeneity, and radiofrequency noise.

RESULTS

An average spatial resolution of 4.3 mm in full width at half maximum was measured at 1 cm offset from the center of the field of view. The system sensitivity was 15.0 kcps/MBq along the center of the scanner. The scatter fraction was 37.9%, and the peak noise-equivalent count rate was 184 kcps at 23.1 kBq/mL. The maximum absolute value of the relative count rate error due to dead-time losses and randoms was 5.5%. The average residual error in scatter and attenuation correction was 12.1%. All MR parameters were within the tolerances defined by the American College of Radiology. B(0) inhomogeneities below 1 ppm were measured in a 120-mm radius. B(1) homogeneity and signal-to-noise ratio were equivalent to those of a standard MR scanner. No radiofrequency interference was detected.

CONCLUSION

These results compare favorably with other state-of-the-art PET/CT and PET/MR scanners, indicating that the integration of the PET detectors in the MR scanner and their operation within the magnetic field do not have a perceptible impact on the overall performance. The MR subsystem performs essentially like a standalone system. However, further work is necessary to evaluate the more advanced MR applications, such as functional imaging and spectroscopy.

摘要

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最近发布的 Biograph mMR 是首款商用一体化全身 PET/MR 扫描仪。将两种模式集成在一个能够真正同时采集的扫描仪中具有相当大的优势。然而,在集成系统中,对 PET 和磁共振性能可能出现的退化也存在一些担忧。本文评估了 Biograph mMR 在独立和同时采集 PET 和形态学磁共振数据时的性能。

方法

遵循 NEMA NU 2-2007 协议研究 PET 性能。进行了以下测量:空间分辨率;散射分数、计数损失和随机计数;灵敏度;计数损失和随机计数校正的准确性;以及图像质量。遵循美国放射学院质量控制手册研究磁共振性能。进行了以下测量:几何精度、空间分辨率、低对比度检测能力、信噪比、静磁场(B0)均匀性、射频场(B1)均匀性和射频噪声。

结果

在视场中心 1cm 偏移处测量到的平均空间分辨率为 4.3mm 全宽半高。系统灵敏度沿扫描仪中心为 15.0 kcps/MBq。散射分数为 37.9%,在 23.1 kBq/mL 时峰值噪声等效计数率为 184 kcps。由于死时间损失和随机计数引起的最大绝对值相对计数率误差为 5.5%。散射和衰减校正的平均残余误差为 12.1%。所有磁共振参数均在放射学院定义的容差范围内。在 120mm 半径内测量到低于 1ppm 的 B0 不均匀性。B1 均匀性和信噪比与标准磁共振扫描仪相当。未检测到射频干扰。

结论

这些结果与其他最先进的 PET/CT 和 PET/MR 扫描仪相比表现出色,表明 PET 探测器在磁共振扫描仪中的集成及其在磁场中的运行不会对整体性能产生明显影响。磁共振子系统的性能基本上与独立系统相同。然而,需要进一步的工作来评估更先进的磁共振应用,如功能成像和光谱学。

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