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Selection Criteria for Determination of Optimal Reconstruction Method for Cu-64 Trastuzumab Dosimetry on Siemens Inveon PET Scanner

机译:在西门子Inveon PET扫描仪上确定Cu-64曲妥珠单抗剂量的最佳重建方法的选择标准

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摘要

The goal of this study was to suggest criteria for the determination of the optimal image reconstruction algorithm for image-based dosimetry of Cu-64 trastuzumab PET in a mouse model. Image qualities, such as recovery coefficient (RC), spill-over ratio (SOR), and non-uniformity (NU), were measured according to National Electrical Manufacturers Association (NEMA) NU4-2008. Mice bearing a subcutaneous tumor (200 mm3, HER2 NCI N87) were injected with monoclonal antibodies (trastuzumab) with Cu-64. Preclinical mouse PET images were acquired at 4 time points after injection (2, 15, 40 and 64 h). Phantom and Cu-64 trastuzumab PET images were reconstructed using various reconstruction algorithms (filtered back projection (FBP), 3D reprojection algorithm (FBP-3DRP), 2D ordered subset expectation maximization (OSEM 2D), and OSEM 3D maximum a posteriori (OSEM3D-MAP)) and filters. The absorbed dose for the tumor and the effective dose for organs for Cu-64 trastuzumab PET were calculated using the OLINDA/EXM program with various reconstruction algorithms. Absorbed dose for the tumor ranged from 923 mGy/MBq to 1830 mGy/MBq with application of reconstruction algorithms and filters. When OSEM2D was used, the effective osteogenic dose increased from 0.0031 to 0.0245 with an increase in the iteration number (1 to 10). In the region of kidney, the effective dose increased from 0.1870 to 1.4100 when OSEM2D was used with iteration number 1 to 10. To determine the optimal reconstruction algorithms and filters, a correlation between RC and NU was plotted and selection criteria (0.9 < RC < 1.0 and < 10% of NU) were suggested. According to the selection criteria, OSEM2D (iteration 1) was chosen for the optimal reconstruction algorithm. OSEM2D (iteration 10) provided 154.7% overestimated effective dose and FBP with a Butterworth filter provided 20.9% underestimated effective dose. We suggested OSEM2D (iteration 1) for the calculation of the effective dose of Cu-64 trastuzumab on an Inveon PET scanner.
机译:这项研究的目的是为确定基于Cu-64曲妥珠单抗PET的图像剂量学的最佳图像重建算法的确定标准。根据美国国家电气制造商协会(NEMA)NU4-2008测量图像质量,例如恢复系数(RC),溢出比率(SOR)和不均匀性(NU)。患有皮下肿瘤的小鼠(<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1” overflow =“ scroll”> 200 mm 3 HER2 NCI N87)注射含Cu-64的单克隆抗体(曲妥珠单抗)。在注射后4个时间点(2、15、40和64 h)采集临床前小鼠PET图像。幻影和Cu-64曲妥珠单抗PET图像使用各种重建算法(滤波反投影(FBP),3D重投影算法(FBP-3DRP),2D有序子集期望最大化(OSEM 2D)和OSEM 3D最大后验(OSEM3D- MAP))和过滤器。使用OLINDA / EXM程序和各种重建算法,计算了肿瘤的吸收剂量和Cu-64曲妥珠单抗PET的器官有效剂量。应用重建算法和过滤器,肿瘤的吸收剂量范围为923 mGy / MBq至1830 mGy / MBq。当使用OSEM2D时,有效成骨剂量从0.0031增加到0.0245,并且迭代次数增加(1到10)。在OSEM2D的迭代次数为1到10时,在肾脏区域中,有效剂量从0.1870增加到1.4100。为了确定最佳的重建算法和过滤器,绘制了RC和NU之间的相关性以及选择标准(0.9

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