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The high resolution gamma imager (HRGI): a CCD based camera for medical imaging

机译:高分辨率伽玛成像仪(HRGI):基于CCD的医学成像相机

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We describe the High Resolution Gamma Imager (HRGI): a Charge Coupled Device (CCD) based camera for imaging small volumes of radionuclide uptake in tissues. The HRGI is a collimated, scintillator-coated, low cost, high performance imager using low noise CCDs that will complement whole-body imaging Gamma Cameras in nuclear medicine. Using 59.5 keV radiation from a ~(241)Am source we have measured the spatial resolution and relative efficiency of test CCDs from E2V Technologies (formerly EEV Ltd.) coated with Gadox (Gd_2O_2S(Tb)) layers of varying thicknesses. The spatial resolution degrades from 0.44 to 0.6 mm and the detection efficiency increases (x 3) as the scintillator thickness increases from 100 to 500 μm. We also describe our first image using the clinically important isotope ~(99m)Tc. The final HRGI will have intrinsic sub-mm spatial resolution (~0.7mm) and good energy resolution over the energy range 30-160 keV.
机译:我们描述了高分辨率伽玛成像器(HRGI):基于电荷耦合器件(CCD)的相机,用于对组织中少量放射性核素的摄取进行成像。 HRGI是使用低噪声CCD的准直,闪烁体涂层,低成本,高性能成像仪,可补充核医学中的全身成像伽马相机。使用来自〜(241)Am光源的59.5 keV辐射,我们测量了E2V Technologies(前身为EEV Ltd.)涂有厚度不同的Gadox(Gd_2O_2S(Tb))层的测试CCD的空间分辨率和相对效率。空间分辨率从0.44降低到0.6 mm,并且随着闪烁体厚度从100到500μm的增加,检测效率也会提高(x 3)。我们还使用临床上重要的同位素〜(99m)Tc描述了我们的第一张图像。最终的HRGI在30-160 keV的能量范围内具有固有的亚毫米空间分辨率(〜0.7mm)和良好的能量分辨率。

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