Suppr超能文献

发展具有钨平行孔准直器的像素化 GSO 伽马相机系统,用于单光子成像。

Development of a pixelated GSO gamma camera system with tungsten parallel hole collimator for single photon imaging.

机构信息

Kobe City College of Technology, Nishi-ku, Kobe, Japan.

出版信息

Med Phys. 2012 Feb;39(2):581-8. doi: 10.1118/1.3673774.

Abstract

PURPOSE

In small animal imaging using a single photon emitting radionuclide, a high resolution gamma camera is required. Recently, position sensitive photomultiplier tubes (PSPMTs) with high quantum efficiency have been developed. By combining these with nonhygroscopic scintillators with a relatively low light output, a high resolution gamma camera can become useful for low energy gamma photons. Therefore, the authors developed a gamma camera by combining a pixelated Ce-doped Gd(2)SiO(5) (GSO) block with a high quantum efficiency PSPMT.

METHODS

GSO was selected for the scintillator, because it is not hygroscopic and does not contain any natural radioactivity. An array of 1.9 mm × 1.9 mm × 7 mm individual GSO crystal elements was constructed. These GSOs were combined with a 0.1-mm thick reflector to form a 22 × 22 matrix and optically coupled to a high quantum efficiency PSPMT (H8500C-100 MOD8). The GSO gamma camera was encased in a tungsten gamma-ray shield with tungsten pixelated parallel hole collimator, and the basic performance was measured for Co-57 gamma photons (122 keV).

RESULTS

In a two-dimensional position histogram, all pixels were clearly resolved. The energy resolution was ∼15% FWHM. With the 20-mm thick tungsten pixelated collimator, the spatial resolution was 4.4-mm FWHM 40 mm from the collimator surface, and the sensitivity was ∼0.05%. Phantom and small animal images were successfully obtained with our developed gamma camera.

CONCLUSIONS

These results confirmed that the developed pixelated GSO gamma camera has potential as an effective instrument for low energy gamma photon imaging.

摘要

目的

在使用单光子发射放射性核素的小动物成像中,需要高分辨率的伽马相机。最近,开发出了具有高量子效率的位置灵敏光电倍增管(PSPMT)。通过将这些与光输出相对较低的非吸湿性闪烁体结合使用,高分辨率伽马相机可用于低能量伽马光子。因此,作者开发了一种伽马相机,该相机将像素化的掺 Ce 的 Gd(2)SiO(5)(GSO)块与具有高量子效率的 PSPMT 相结合。

方法

选择 GSO 作为闪烁体,因为它不吸潮并且不含任何天然放射性。构建了一个由 1.9mm×1.9mm×7mm 个体 GSO 晶体元件组成的阵列。这些 GSO 与 0.1mm 厚的反射器结合在一起,形成 22×22 矩阵,并与高量子效率 PSPMT(H8500C-100 MOD8)光学耦合。GSO 伽马相机被包裹在钨伽马射线屏蔽中,带有钨像素化平行孔准直器,并对 Co-57 伽马光子(122keV)进行了基本性能测量。

结果

在二维位置直方图中,所有像素都清晰可辨。能量分辨率约为 15%FWHM。使用 20mm 厚的钨像素化准直器,在距准直器表面 40mm 处的空间分辨率为 4.4mm FWHM,灵敏度约为 0.05%。成功使用我们开发的伽马相机获得了幻影和小动物图像。

结论

这些结果证实,开发的像素化 GSO 伽马相机具有作为低能量伽马光子成像有效仪器的潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验