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首页> 外文期刊>Nuclear Science, IEEE Transactions on >Depth-of-Interaction Compensation Using a Focused-Cut Scintillator for a Pinhole Gamma Camera
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Depth-of-Interaction Compensation Using a Focused-Cut Scintillator for a Pinhole Gamma Camera

机译:针孔伽马相机使用聚焦切割闪烁器进行交互深度补偿

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摘要

Preclinical SPECT offers a powerful means to understand the molecular pathways of drug interactions in animal models by discovering and testing new pharmaceuticals and therapies for potential clinical applications. A combination of high spatial resolution and sensitivity are required in order to map radiotracer uptake within small animals. Pinhole collimators have been investigated, as they offer high resolution by means of image magnification. One of the limitations of pinhole geometries is that increased magnification causes some rays to travel through the detection scintillator at steep angles, introducing parallax errors due to variable depth-of-interaction in scintillator material, especially towards the edges of the detector field of view. These parallax errors ultimately limit the resolution of pinhole preclinical SPECT systems, especially for higher energy isotopes that can easily penetrate through millimeters of scintillator material. A pixellated, focused-cut (FC) scintillator, with its pixels laser-cut so that they are collinear with incoming rays, can potentially compensate for these parallax errors and thus improve the system resolution. We performed the first experimental evaluation of a newly developed focused-cut scintillator. We scanned a Tc-99 m source across the field of view of pinhole gamma camera with a continuous scintillator, a conventional “straight-cut” (SC) pixellated scintillator, and a focused-cut scintillator, each coupled to an electron-multiplying charge coupled device (EMCCD) detector by a fiber-optic taper, and compared the measured full-width half-maximum (FWHM) values. We show that the FWHMs of the focused-cut scintillator projections are comparable to the FWHMs of the thinner SC scintillator, indicating the effectiveness of the focused-cut scintillator in compensating parallax errors.
机译:临床前SPECT通过发现和测试潜在临床应用的新药物和疗法,提供了一种了解动物模型中药物相互作用的分子途径的有力手段。为了映射小型动物体内放射性示踪剂的吸收,需要高空间分辨率和灵敏度的结合。已经对针孔准直仪进行了研究,因为它们可以通过图像放大来提供高分辨率。针孔几何形状的局限性之一是放大率的增加会导致某些光线以陡峭的角度穿过检测闪烁体,由于闪烁体材料中相互作用深度的变化,尤其是朝着检测器视野的边缘,会引入视差误差。这些视差错误最终限制了针孔临床前SPECT系统的分辨率,尤其是对于那些容易穿透毫米级闪烁体材料的高能同位素而言。像素化的聚焦切割(FC)闪烁体,其激光切割后的像素与入射光线共线,可以潜在地补偿这些视差误差,从而提高系统分辨率。我们对新开发的聚焦切割闪烁体进行了首次实验评估。我们使用连续闪烁体,传统的“直角”(SC)像素化闪烁体和聚焦切割闪烁体在针孔伽马相机的整个视场范围内扫描了一个Tc-99 m光源,每个闪烁体均与电子倍增电荷耦合耦合装置(EMCCD)通过光纤锥度检测器,并比较了测得的全宽半最大值(FWHM)值。我们显示聚焦切割闪烁体投影的FWHM与较薄的SC闪烁体的FWHM相当,表明聚焦切割闪烁体在补偿视差误差方面的有效性。

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