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Lutetium oxyorthosilicate (LSO) intrinsic activity correction and minimal detectable target activity study for SPECT imaging with a LSO-based animal PET scanner.

机译:用基于LSO的动物PET扫描仪进行SPECT成像时,原硅酸((LSO)固有活性校正和最小可检测目标活性研究。

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This work is part of a feasibility study to develop SPECT imaging capability on a lutetium oxyorthosilicate (LSO) based animal PET system. The SPECT acquisition was enabled by inserting a collimator assembly inside the detector ring and acquiring data in singles mode. The same LSO detectors were used for both PET and SPECT imaging. The intrinsic radioactivity of (176)Lu in the LSO crystals, however, contaminates the SPECT data, and can generate image artifacts and introduce quantification error. The objectives of this study were to evaluate the effectiveness of a LSO background subtraction method, and to estimate the minimal detectable target activity (MDTA) of image object for SPECT imaging. For LSO background correction, the LSO contribution in an image study was estimated based on a pre-measured long LSO background scan and subtracted prior to the image reconstruction. The MDTA was estimated in two ways. The empirical MDTA (eMDTA) was estimated from screening the tomographic images at different activity levels. The calculated MDTA (cMDTA) was estimated from using a formula based on applying a modified Currie equation on an average projection dataset. Two simulated and two experimental phantoms with different object activity distributions and levels were used in this study. The results showed that LSO background adds concentric ring artifacts to the reconstructed image, and the simple subtraction method can effectively remove these artifacts-the effect of the correction was more visible when the object activity level was near or above the eMDTA. For the four phantoms studied, the cMDTA was consistently about five times of the corresponding eMDTA. In summary, we implemented a simple LSO background subtraction method and demonstrated its effectiveness. The projection-based calculation formula yielded MDTA results that closely correlate with that obtained empirically and may have predicative value for imaging applications.
机译:这项工作是可行性研究的一部分,该可行性研究旨在开发基于氧正硅酸lut(LSO)的动物PET系统的SPECT成像功能。通过将准直仪组件插入检测器环内并以单打模式采集数据,可以进行SPECT采集。相同的LSO检测器用于PET和SPECT成像。但是,LSO晶体中(176)Lu的固有放射性会污染SPECT数据,并且会生成图像伪像并引入量化误差。这项研究的目的是评估LSO背景扣除方法的有效性,并估计SPECT成像的图像对象的最小可检测目标活性(MDTA)。对于LSO背景校正,图像研究中的LSO贡献是根据预先测量的长LSO背景扫描估算的,并在重建图像之前减去。通过两种方式估算了MDTA。经验MDTA(eMDTA)是通过筛选不同活动水平的断层图像来估计的。使用基于在平均投影数据集上应用修改后的Currie方程的公式,可以计算出MDTA(cMDTA)。在这项研究中使用了两个模拟的和两个实验的幻像,它们具有不同的对象活动分布和水平。结果表明,LSO背景向重建图像中添加了同心环伪影,并且简单的减影方法可以有效地消除这些伪影-当对象活动水平接近或高于eMDTA时,校正效果更加明显。对于所研究的四个模型,cMDTA始终是相应eMDTA的五倍左右。总之,我们实现了一种简单的LSO背景扣除方法,并证明了其有效性。基于投影的计算公式得出的MDTA结果与凭经验获得的结果紧密相关,并且可能对成像应用具有预测价值。

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