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从基于光电倍增管(PMT)到基于硅光电倍增管(SiPM)的正电子发射断层扫描(PET)系统:一项关于确定Biograph Vision 450匹配的采集/重建参数和NEMA性能的研究。

From a PMT-based to a SiPM-based PET system: a study to define matched acquisition/reconstruction parameters and NEMA performance of the Biograph Vision 450.

作者信息

Carlier Thomas, Ferrer Ludovic, Conti Maurizio, Bodet-Milin Caroline, Rousseau Caroline, Bercier Yanic, Bendriem Bernard, Kraeber-Bodéré Françoise

机构信息

Nuclear Medicine Department, University Hospital of Nantes, Place Alexis Ricordeau, Nantes, France.

Université de Nantes, CNRS, INSERM, CRCINA, Nantes, France.

出版信息

EJNMMI Phys. 2020 Sep 3;7(1):55. doi: 10.1186/s40658-020-00323-w.

Abstract

BACKGROUND

The purpose of this work was to propose an approach based on noise measurement to adapt present clinical acquisition and reconstruction parameters adapted to a PMT-based system (Biograph mCT) to a SiPM-based system (Biograph Vision 450) sharing identical geometrical properties. The NEMA performance (NEMA) of the recently released Biograph Vision 450 PET/CT (Vision) was also derived.

METHODS

All measurements were conducted on Vision and Biograph mCT with TrueV (mCT). A full NEMA-based performance was derived for Vision only. The adaptation of acquisition and reconstruction parameters from mCT to Vision was done using the NEMA image quality phantom. The noise level reached using mCT was set as the reference value for six different numbers of net true coincidences. The noise level computed using Vision was matched to the reference noise level (within 0.01%) using a different reconstruction set-up to determine the potential reduction of count numbers for the same noise level.

RESULTS

Vision sensitivity was 9.1 kcps/MBq for a timing resolution of 213 ps at 5.3 kBq/mL. The NEMA-based CR for the 10-mm sphere was better than 75% regardless the reconstruction set-up studied. The mCT reference noise properties could be achieved using Vision with a scan time reduction (STR) of 1.34 with four iterations and a 440 × 440 matrix size (or STR = 1.89 with a 220 × 220 matrix size) together with a 3D CR improvement of 53% for the 10-mm sphere (24% using 220 × 220).

CONCLUSION

The Vision exhibited improved NEMA performances compared to mCT. Using the proposed approach, the time acquisition could be divided by almost two, while keeping the same noise properties as that of mCT with a marked improvement of contrast recovery.

摘要

背景

本研究的目的是提出一种基于噪声测量的方法,以使适用于基于光电倍增管(PMT)的系统(Biograph mCT)的当前临床采集和重建参数,能够应用于具有相同几何特性的基于硅光电倍增管(SiPM)的系统(Biograph Vision 450)。还得出了最近发布的Biograph Vision 450 PET/CT(Vision)的NEMA性能(NEMA)。

方法

所有测量均在Vision和带有TrueV(mCT)的Biograph mCT上进行。仅针对Vision得出了基于完整NEMA的性能。使用NEMA图像质量体模完成了从mCT到Vision的采集和重建参数的调整。将使用mCT达到的噪声水平设置为六个不同净真符合数的参考值。使用不同的重建设置,将使用Vision计算出的噪声水平与参考噪声水平匹配(在0.01%以内),以确定相同噪声水平下计数数量的潜在减少。

结果

在5.3 kBq/mL时,Vision的灵敏度为9.1 kcps/MBq,定时分辨率为213 ps。无论所研究的重建设置如何,10毫米球体的基于NEMA的对比度恢复(CR)均优于75%。使用Vision,通过四次迭代和440×440矩阵大小可将扫描时间减少(STR)1.34(或使用220×220矩阵大小时STR = 1.89),同时10毫米球体的3D CR提高53%(使用220×220时为24%),从而实现mCT的参考噪声特性。

结论

与mCT相比,Vision展现出更好的NEMA性能。使用所提出的方法,采集时间可减少近一半,同时保持与mCT相同的噪声特性,并显著提高对比度恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeb6/7471223/b1d3e51bcb7b/40658_2020_323_Fig1_HTML.jpg

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