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Optimal PET acquisition setting of I-124 with Siemens Inveon PET: comparative simulation study with F-18 and microPET R4

机译:具有西门子inveon PET的I-124优化宠物采集设置:F-18和Micropet R4的比较仿真研究

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Purpose: I-124 has a long half life of 4.2 days that is suitable for imaging over several days during the biological uptake and washout of radioiodine. However I-124 has a low positron branching ratio (23%). High-energy γ- photons (602 keV to 1,326 keV) are emitted in cascade with the positrons. These cascade γ- photons degrade the image quality. In this study, noise equivalent count rate (NECR) was measured with the various energy window settings to find the optimal energy window setting in I-124 PET on newly released Siemens Inveon PET. Sensitivity and scatter fraction (SF) on Inveon PET were also assessed with the same energy windows. In addition, NECRs of I-124 on microPET R4 (R4) scanner were also assessed for the comparison. Methods: Monte Carlo simulation studies were performed to find the optimal energy window setting. System performance such as the sensitivity and scatter fraction was measured in both I-124 and 18F. NEMA NU-4 rat phantom and mouse phantom were simulated. Source activity was 1 MBq to 150 MBq. NECR in I-124 PET was calculated as following equation: NECR = T~2/(T + S + 2fR + fD) Where, T, S, R, D, and f is dirty coincidence corrected true, scatter, random, dirty coincidence count rate, and average fraction of the projection taken up by the object. Simulation for NECR were repeated under four different conditions (energy window: 250~550, 250~650, 350~550 and 350~650 keV). Results and Discussion: Within an energy window of 350~550 keV, dirty coincidence fraction was dramatically reduced by 50% on Inveon. Comparing two microPET systems, Inveon has 10 times higher NECR than those of R4. This would be due to improved electronics which enable to minimize the system dead time. Considering NECR of I-124, optimal energy window was 250~650 and 350~550 keV for mouse and rat, respectively. The proposed optimal energy window setting would boost the image quality of I-124 PET.
机译:目的:I-124具有4.2天的漫长半衰期,适用于在生物摄取和放射性碘的冲洗过程中几天的成像。然而,I-124具有低正向支化率(23%)。高能量γ-光子(602keV至1,326keV)在级联用正极发射。这些级联γ-光子降低了图像质量。在该研究中,用各种能量窗口设置测量噪声等价计率(NECR),以在新释放的西门子纵向宠物上找到I-124 PET中的最佳能量窗口设置。还通过相同的能量窗口评估镜片宠物上的敏感性和散射分数(SF)。此外,还评估了Micropet R4(R4)扫描仪I-124的NECR,以进行比较。方法:进行Monte Carlo仿真研究以找到最佳能量窗口设置。在I-124和18F中测量了系统性能,例如灵敏度和散射分数。模拟了NEMA NU-4大鼠幻影和小鼠幻影。源活动为1 MBQ至150 MBQ。 I-124 PET中的NECR计算为以下等式:NECR = T〜2 /(T + S + 2FR + FD)在其中,T,S,R,D和F是肮脏的巧合真实,分散,随机,脏污重合计数率,对象占据的投影平均分数。在四种不同的条件下重复NECR模拟(能源窗口:250〜550,250〜650,350〜550和350〜650 kev)。结果与讨论:在350〜550keV的能量窗口内,芯片上的脏巧合馏分大幅减少50%。比较两种微呼吸系统,inveon比R4更高的10倍。这将是由于改进的电子产品,这使得能够最小化系统死区时间。考虑到I-124的NECR,最佳能量窗口为250〜650和350〜550 keV,分别用于老鼠和大鼠。所提出的最佳能量窗口设置将提高I-124 PET的图像质量。

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