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首页> 外文期刊>Iranian Journal of Nuclear Medicine >Collimator-detector response compensation in molecular SPECT reconstruction using STIR framework
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Collimator-detector response compensation in molecular SPECT reconstruction using STIR framework

机译:使用STIR框架进行分子SPECT重建时的准直检测器响应补偿

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Introduction:It is well-recognized that collimator-detector response (CDR) is the main image blurring factor in SPECT. In this research, we compensated the images for CDR in molecular SPECT by using STIR reconstruction framework. Methods: To assess resolution recovery capability of the STIR, a phantom containing five point sources along with a micro Derenzo phantom were investigated. Influence of the lesion size on SPECT quantification was addressed by calculating recovery coefficients (RCs) as well as spill-over ratios (SORs) for reconstructed NEMA image-quality phantom. Impact of the resolution modeling on noise properties was also studied. The RCs were then compared with those of experimentally obtained. In all cases, the images were iteratively reconstructed using an OSEM algorithm with 4 subsets and 32 subiterations. Results: CDR compensation gives rise to a significant drop in tomographic resolution from 2.45 mm to 1.55 mm. RC for hot rods of the NEMA IQ phantom monotonically grows as rod diameter increases, and results in an improvement of the RC up to a factor of 1.24 for the 5-mm rod diameter. PSF modeling also leads to a reduction in SOR from 0.24 to 0.16 averaged for the two cold cylinders. As a consequence of resolution recovery, a 15.5% overshoot near sharp edges imposing Gibbs ringing artifact occurs. In addition, a blobby noise texture is also observed. Furthermore, STIR results are consistent with the experimental ones. Conclusion: Our findings demonstrate that resolution recovery is required for quantitative molecular SPECT imaging, and CDR compensation by the STIR framework offers superior SPECT image quality.
机译:简介:众所周知,准直检测器响应(CDR)是SPECT中的主要图像模糊因素。在这项研究中,我们通过使用STIR重建框架来补偿分子SPECT中CDR的图像。方法:为了评估STIR的分辨率恢复能力,研究了包含五个点光源的幻像以及微型Derenzo幻像。通过计算恢复的NEMA图像质量体模的恢复系数(RC)以及溢出比率(SOR),解决了病变大小对SPECT量化的影响。还研究了分辨率建模对噪声特性的影响。然后将RC与实验获得的RC进行比较。在所有情况下,均使用具有4个子集和32个子迭代的OSEM算法来迭代地重建图像。结果:CDR补偿使断层扫描分辨率从2.45 mm显着下降到1.55 mm。 NEMA IQ幻象的热棒的RC随着棒直径的增加而单调增长,并导致RC的提高,对于5毫米棒直径,其RC可达1.24倍。 PSF建模还可以将两个冷缸的平均SOR从0.24降低到0.16。作为分辨率恢复的结果,强加吉布斯振铃伪影的尖锐边缘附近出现15.5%的过冲。另外,还观察到过大的噪声纹理。此外,STIR结果与实验结果一致。结论:我们的发现表明,定量分子SPECT成像需要分辨率的恢复,而STIR框架的CDR补偿可提供出色的SPECT图像质量。

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