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通过SIMIND蒙特卡罗程序评估不同准直器和能量窗对Y-90轫致辐射单光子发射计算机断层显像(SPECT)成像的影响。

Evaluation the effect of different collimators and energy window on Y-90 bremsstrahlung SPECT imaging by SIMIND Monte Carlo program.

作者信息

Taherparvar Payvand, Shahmari Nazila

机构信息

Department of Physics, Faculty of Science, University of Guilan, Rasht, Iran.

出版信息

Nucl Med Rev Cent East Eur. 2019;22(2):45-55. doi: 10.5603/NMR.a2019.0016.

Abstract

BACKGROUND

Recently, the treatment efficiency of Yttrium 90 (Y-90) and providing reliable estimates of activity by single photon emission computed tomography (SPECT) imaging of bremsstrahlung radiation released during beta therapy have been evaluated. In the Y-90 bremsstrahlung SPECT imaging, the resulting energy spectrum is very complex and continuous, which creates many difficulties in the imaging protocol and image reconstruction. Furthermore, image quality and quantitative accuracy in the bremsstrahlung SPECT imaging are affected by collimator penetration and scatter. So, the collimator type and its geometry have impressive effects on the spatial resolution, system sensitivity and image contrast.

MATERIAL AND METHODS

Hereby, in this paper, we evaluated the effect of the energy window (three energy windows: 60 to 160 keV, 160 to 400 keV, and 60 to 400 keV) and the commercial parallel-hole collimators with different geometric parameters on the Y-90 bremsstrahlung spectrum and the image quality of the liver tumors based on criteria such as system sensitivity and image contrast. SIMIND Monte Carlo simulation code was used to generate the Y-90 bremsstrahlung SPECT images of the liver tumor with different diameters: 1.36, 2.04, 2.72, 3.4, 4.08, and 4.76 cm by use of the digital Zubal phantom. Furthermore, the tumor size was estimated by evaluating pixel intensity profile on the line drawn through the activity distribution image.

RESULTS

Our results showed that the collimator choice and energy window setting in the bremsstrahlung SPECT imaging have significant effects on the image quality and tumor size estimation. Optimal image quality could be acquired by the energy window of 60 to 400 keV and the SPECT system equipped with a Medium-Energy General-Purpose (MEGP) collimator of Millennium VG Kameran (GV) Company. Moreover, the estimation of distribution size was close to the actual value for tumor sizes larger than 2.04 cm, especially by using the SPECT system equipped with the GV-MEGP collimator in the wide energy window.

CONCLUSIONS

We found an optimal collimator to be more appropriate for improving the imaging quality of Y-90 bremsstrahlung photons, which can be used for reliable activity distribution estimates after radiation therapy.

摘要

背景

最近,对钇90(Y-90)的治疗效率以及通过单光子发射计算机断层扫描(SPECT)成像对β治疗期间释放的轫致辐射进行可靠的活度估计进行了评估。在Y-90轫致辐射SPECT成像中,所得能谱非常复杂且连续,这给成像协议和图像重建带来了许多困难。此外,轫致辐射SPECT成像中的图像质量和定量准确性受准直器穿透和散射的影响。因此,准直器类型及其几何形状对空间分辨率、系统灵敏度和图像对比度有显著影响。

材料与方法

在此,我们基于系统灵敏度和图像对比度等标准,评估了能量窗(三个能量窗:60至160 keV、160至400 keV以及60至400 keV)和具有不同几何参数的商用平行孔准直器对Y-90轫致辐射能谱和肝肿瘤图像质量的影响。使用SIMIND蒙特卡罗模拟代码,通过数字祖巴尔体模生成直径分别为1.36、2.04、2.72、3.4、4.08和4.76 cm的不同肝肿瘤的Y-90轫致辐射SPECT图像。此外,通过评估穿过活度分布图像所画直线上的像素强度剖面来估计肿瘤大小。

结果

我们的结果表明,轫致辐射SPECT成像中的准直器选择和能量窗设置对图像质量和肿瘤大小估计有显著影响。通过60至400 keV的能量窗以及配备了千禧年VG Kameran(GV)公司中能通用(MEGP)准直器的SPECT系统可获得最佳图像质量。此外,对于直径大于2.04 cm的肿瘤,分布大小的估计接近实际值,特别是在宽能量窗中使用配备GV-MEGP准直器的SPECT系统时。

结论

我们发现一种最佳准直器更适合于提高Y-90轫致辐射光子的成像质量,可用于放疗后可靠的活度分布估计。

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