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Characteristics of compact detectors based on pixellated NaI(Tl) crystal arrays

机译:基于像素化NaI(Tl)晶体阵列的紧凑型探测器的特性

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Results are presented on the preliminary evaluation of the pixellated NaI(Tl) crystal arrays for use in high-resolution small field-of-view gamma cameras. A prototype detector was developed using the pixellated NaI(Tl) arrays attached to a 5" diameter position-sensitive photomultiplier tube (PSPMT). Two 5.3 cm square pixellated NaI(Tl) crystal arrays from Saint-Gobain with pixel sizes of 1/spl times/1/spl times/6 mm and 2/spl times/2/spl times/6 mm were tested. A conventional charge division readout using a resistive chain was used with the PSPMT. The detector was tested using a uniform flood source and a /spl sim/0.8 mm diameter collimated Tc-99m source. The collimated source was scanned over both crystal arrays. The performance characteristics including spatial resolution, energy resolution and the ability to resolve the pixellated crystal elements were determined. The response of the pixellated detector was also measured. With the conventional resistive-chain readout the individual pixels were well resolved for the 2 mm pixellated crystal array but not for the 1 mm pixellated crystal array from the images of a uniform flood source. An average FWHM of 1.4 mm was obtained with a 0.8 mm diameter pencil-beam over the active crystal area for both crystal arrays. The energy resolutions from the individual pixels were 10.8% and 10.0% at 140-keV photon energy for the 1 mm and 2 mm pixellated crystals, respectively. Our study indicates that using conventional resistive-chain readout, a compact detector comprised of a pixellated NaI(Tl) crystal array and a 5" diameter PSPMT at best can achieve a spatial resolution of /spl sim/1.1 mm. We conclude that the use of pixellated crystal arrays with /spl sim/1.5 mm pixel element is likely to be an optimal choice for the combination of this PSPMT with resistive chain readout technology for development of high resolution small field-of-view gamma cameras.
机译:结果展示了用于高分辨率小型视场伽马相机的像素化NaI(Tl)晶体阵列的初步评估。使用连接到直径为5英寸的位置敏感光电倍增管(PSPMT)的像素化NaI(Tl)阵列开发了原型检测器。圣戈班的两个5.3平方厘米像素化NaI(Tl)晶体阵列,像素大小为1 / spl测试了1 / spls / 6mm和2 / spls / 2 / spls / 6mm的时间,PSPMT使用了使用电阻链的常规电荷分配读数,使用了均匀的泛光源对探测器进行了测试, / spl sim / 0.8 mm直径的准直Tc-99m光源,在两个晶体阵列上扫描准直光源,确定了包括空间分辨率,能量分辨率和分辨像素化晶体元素的能力在内的性能特征,像素化后的响应通过常规的电阻链读数,对于2mm像素化晶体阵列,单个像素可以得到很好的分辨,而对于1mm像素化晶体阵列,则无法从均匀溢流源的图像中分辨出单个像素。对于两个晶体阵列,均在有源晶体区域上以0.8毫米直径的笔形光束获得了1.4毫米的平均FWHM。对于1mm和2mm像素化晶体,在140keV光子能量下,来自单个像素的能量分辨率分别为10.8%和10.0%。我们的研究表明,使用常规的电阻链读数,由像素化NaI(Tl)晶体阵列和直径最大为5英寸的PSPMT组成的紧凑型检测器最多可实现/ spl sim / 1.1 mm的空间分辨率。带有/ spl sim / 1.5 mm像素元件的像素化晶体阵列的组合可能是此PSPMT与电阻链读出技术相结合以开发高分辨率小视场伽玛相机的最佳选择。

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