Biomedical MRI, Department of Imaging and Pathology, KU Leuven, Leuven, Belgium.
Nuclear Molecular Imaging, Bruker BioSpin Preclinical Imaging Division, Ettlingen, Germany.
Phys Med Biol. 2020 Dec 10;65(24):245016. doi: 10.1088/1361-6560/aba08c.
This study evaluates the performance of the Bruker positron emission tomograph (PET) insert combined with a BioSpec 70/30 USR magnetic resonance imaging (MRI) scanner using the manufacturer acceptance protocol and the NEMA NU 4-2008 for small animal PET. The PET insert is made of 3 rings of 8 monolithic LYSO crystals (50 × 50 × 10 mm) coupled to silicon photomultipliers (SiPM) arrays, conferring an axial and transaxial FOV of 15 cm and 8 cm. The MRI performance was evaluated with and without the insert for the following radiofrequency noise, magnetic field homogeneity and image quality. For the PET performance, we extended the NEMA protocol featuring system sensitivity, count rates, spatial resolution and image quality to homogeneity and accuracy for quantification using several MRI sequences (RARE, FLASH, EPI and UTE). The PET insert does not show any adverse effect on the MRI performances. The MR field homogeneity is well preserved (Diameter Spherical Volume, for 20 mm of 1.98 ± 4.78 without and -0.96 ± 5.16 Hz with the PET insert). The PET insert has no major effect on the radiofrequency field. The signal-to-noise ratio measurements also do not show major differences. Image ghosting is well within the manufacturer specifications (<2.5%) and no RF noise is visible. Maximum sensitivity of the PET insert is 11.0% at the center of the FOV even with simultaneous acquisition of EPI and RARE. PET MLEM resolution is 0.87 mm (FWHM) at 5 mm off-center of the FOV and 0.97 mm at 25 mm radial offset. The peaks for true/noise equivalent count rates are 410/240 and 628/486 kcps for the rat and mouse phantoms, and are reached at 30.34/22.85 and 27.94/22.58 MBq. PET image quality is minimally altered by the different MRI sequences. The Bruker PET insert shows no adverse effect on the MRI performance and demonstrated a high sensitivity, sub-millimeter resolution and good image quality even during simultaneous MRI acquisition.
本研究使用制造商验收协议和 NEMA NU 4-2008 对小动物 PET 评估 Bruker 正电子发射断层扫描(PET)插入物与 BioSpec 70/30 USR 磁共振成像(MRI)扫描仪的性能。PET 插入物由 3 个环的 8 个整体 LYSO 晶体(50×50×10mm)组成,与硅光电倍增管(SiPM)阵列耦合,提供 15cm 和 8cm 的轴向和横向视野。评估了插入物前后的 MRI 性能,包括射频噪声、磁场均匀性和图像质量。对于 PET 性能,我们扩展了 NEMA 协议,包括系统灵敏度、计数率、空间分辨率和图像质量,以使用几种 MRI 序列(RARE、FLASH、EPI 和 UTE)进行均匀性和定量准确性。PET 插入物对 MRI 性能没有任何不利影响。MR 磁场均匀性得到很好的保持(直径球形体积,20mm 处为 1.98±4.78,无插入物时为-0.96±5.16Hz)。PET 插入物对射频场没有重大影响。信噪比测量也没有显示出重大差异。图像重影在制造商规格范围内(<2.5%),并且看不到射频噪声。即使同时采集 EPI 和 RARE,PET 插入物的最大灵敏度也为 FOV 中心的 11.0%。在 FOV 中心 5mm 处,PET MLEM 分辨率为 0.87mm(FWHM),在 25mm 径向偏移处为 0.97mm。鼠和鼠模型的真实/噪声等效计数率峰值分别为 410/240 和 628/486kcps,达到 30.34/22.85 和 27.94/22.58MBq。不同的 MRI 序列对 PET 图像质量的影响最小。Bruker PET 插入物对 MRI 性能没有不利影响,即使在同时进行 MRI 采集时,也表现出高灵敏度、亚毫米分辨率和良好的图像质量。