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用于高灵敏度小动物单光子发射计算机断层扫描的旋转狭缝孔准直:使用GATE模拟进行设计与评估

Spinning slithole collimation for high-sensitivity small animal SPECT: Design and assessment using GATE simulation.

作者信息

Mahani Hojjat, Raisali Gholamreza, Kamali-Asl Alireza, Ay Mohammad Reza

机构信息

Radiation Application Research School, Nuclear Science and Technology Research Institute, Tehran, Iran; Research Center for Molecular and Cellular Imaging, Tehran University of Medical Science, Tehran, Iran.

Radiation Application Research School, Nuclear Science and Technology Research Institute, Tehran, Iran.

出版信息

Phys Med. 2017 Aug;40:42-50. doi: 10.1016/j.ejmp.2017.07.005. Epub 2017 Jul 13.

Abstract

PURPOSE

While traditional collimations are widely used in preclinical SPECT imaging, they usually suffer from possessing a low system sensitivity leading to noisy images. In this study, we are aiming at introducing a novel collimator, the slithole, offering a superior resolution-sensitivity tradeoff for small animal SPECT.

METHODS

The collimator was designed for a molecular SPECT scanner, the HiReSPECT. The slithole is a knife-edge narrow long aperture extended across long-axis of the camera's head. To meet the data completeness requirement, the collimator-detector assembly spins at each regular SPECT angle. The collimator was modeled within GATE Monte Carlo simulator and the data acquisition was performed for NEMA Image Quality (IQ) phantom. In addition, a dedicated 3D iterative reconstruction algorithm based upon plane-integral projections was also developed.

RESULTS

The mean sensitivity of the slithole is 285cps/MBq while the current parallel-hole collimator holds a sensitivity of 36cps/MBq at a 30mm distance. The slithole collimation gives rise to a tomographic resolution of 1.8mm compared to a spatial resolution of∼1.7mm for the parallel-hole one (even after resolution modeling). A 1.75 reduction factor in the noise level was observed when the current parallel-hole collimator is replaced by the slithole. Furthermore, quantitative analysis proves that 3 full-iterations of our dedicated image reconstruction lead to optimal image quality. For the largest rod in the NEMA IQ phantom, a recovery coefficient of∼0.83 was obtained.

CONCLUSION

The slithole collimator outperforms the current parallel-hole collimation by exhibiting a better resolution-sensitivity compromise for preclinical SPECT studies.

摘要

目的

虽然传统准直器在临床前SPECT成像中被广泛使用,但它们通常存在系统灵敏度低的问题,导致图像有噪声。在本研究中,我们旨在引入一种新型准直器——狭缝孔准直器,为小动物SPECT提供更好的分辨率-灵敏度权衡。

方法

该准直器是为分子SPECT扫描仪HiReSPECT设计的。狭缝孔准直器是一个刀刃状的狭长孔径,沿相机头部的长轴延伸。为满足数据完整性要求,准直器-探测器组件在每个常规SPECT角度旋转。在GATE蒙特卡罗模拟器中对该准直器进行建模,并对NEMA图像质量(IQ)体模进行数据采集。此外,还开发了一种基于平面积分投影的专用三维迭代重建算法。

结果

狭缝孔准直器的平均灵敏度为285cps/MBq,而当前的平行孔准直器在30mm距离处的灵敏度为36cps/MBq。狭缝孔准直产生的断层分辨率为1.8mm,而平行孔准直器的空间分辨率约为1.7mm(即使经过分辨率建模)。当用狭缝孔准直器取代当前的平行孔准直器时,噪声水平降低了1.75倍。此外,定量分析证明,我们的专用图像重建进行3次全迭代可获得最佳图像质量。对于NEMA IQ体模中最大的棒,获得的恢复系数约为0.83。

结论

狭缝孔准直器在临床前SPECT研究中表现出更好的分辨率-灵敏度折衷,优于当前的平行孔准直。

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