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Investigation of the Intrinsic Spatial Resolution of an Intensified EMCCD Scintillation Camera

机译:增强型EMCCD闪烁相机的固有空间分辨率的研究

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摘要

In this paper, we present an experimental and Monte Carlo investigation of the intrinsic spatial resolution that can be achieved with the intensified electron-multiplying charge-coupled device (I-EMCCD) gamma camera . This detector has a very low readout noise, an ultra-high spatial resolution and a large active area of ${sim 80}~{rm mm}$ diameter, which is well-suited for small animal imaging applications. The intrinsic detector resolutions achieved with different scintillators and under different experimental conditions were compared. In this study, the simple centroiding method was compared with two model-fitting approaches for finding the locations of gamma ray interactions. The results from Monte Carlo simulation have demonstrated that with an appropriate detector configuration, it is possible to achieve an intrinsic resolution of ${sim 30}~mu{rm m}$ FWHM for detecting 27-35 keV gamma rays. The I-EMCCD scintillation camera offers a promising candidate for future ultra-high resolution SPECT imaging applications.
机译:在本文中,我们对增强型电子倍增电荷耦合器件(I-EMCCD)伽马相机可实现的固有空间分辨率进行了实验和蒙特卡洛研究。该检测器具有非常低的读出噪声,超高的空间分辨率以及直径为{sim 80}〜{rm mm} $的大有效面积,非常适合小型动物成像应用。比较了使用不同闪烁体和在不同实验条件下获得的固有检测器分辨率。在这项研究中,将简单的质心分析方法与两种模型拟合方法进行了比较,以找到伽马射线相互作用的位置。蒙特卡洛模拟的结果表明,采用适当的检测器配置,可以检测到27-35 keV伽马射线的固有分辨率为$ {sim 30}〜mu {rm m} $ FWHM。 I-EMCCD闪烁相机为未来的超高分辨率SPECT成像应用提供了有希望的候选者。

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