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Count-Rate Performance of the Discovery STE PET Scanner Using Partial Collimation

机译:使用部分准直的Discovery STE PET扫描仪的计数率性能

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摘要

We investigated the use of partial collimation on a clinical PET scanner by removing septa from conventional 2D collimators. The goal is to improve noise equivalent count-rates (NEC) compared to 2D and 3D scans for clinically relevant activity concentrations. We evaluated two cases: removing half of the septa (2.5D); and removing two-thirds of the septa (2.7D). System performance was first modeled using the SimSET simulation package, and then measured with the NEMA NU2-2001 count-rate cylinder (20 cm dia., 70 cm long), and 27 cm and 35 cm diameter cylinders of the same length. An image quality phantom was also imaged with the 2.7D collimator. SimSET predicted the relative NEC curves very well, as confirmed by measurements, with 2.5D and 2.7D NEC greater than 2D and 3D NEC in the range of ~5–20 mCi in the phantom. We successfully reconstructed images of the image quality phantom from measured 2.7D data using custom 2.7D normalization. Partial collimation shows promise for optimized clinical imaging in a fixed-collimator system.
机译:我们通过从常规2D准直仪上去除隔垫,研究了在临床PET扫描仪上使用部分准直仪的情况。目标是与临床相关活动浓度的2D和3D扫描相比,提高噪声等效计数率(NEC)。我们评估了两种情况:移除隔垫的一半(2.5D);并移除三分之二的隔垫(2.7D)。首先使用SimSET仿真软件包对系统性能进行建模,然后使用NEMA NU2-2001计数率圆柱体(直径20厘米,长70厘米)以及相同长度的27厘米和35厘米直径的圆柱体进行测量。还使用2.7D准直仪对图像质量的幻像进行了成像。正如测量所证实的那样,SimSET很好地预测了相对NEC曲线,在幻像中〜2.5–20 mCi范围内,2.5D和2.7D NEC大于2D和3D NEC。我们使用自定义2.7D归一化从测量的2.7D数据成功重建了图像质量幻像的图像。部分准直显示了在固定准直仪系统中优化临床成像的希望。

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