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Development of correction schemes for a small field of view gamma camera

机译:为小视场伽玛相机开发校正方案

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The goal of this study is to develop data correction schemes for a small field of view (SFOV) high resolution gamma camera detector for a small organ dedicated system such as breast, thyroid and joints. Methods: The gamma camera contains PMTs coupled with single slap of NaI(TI) plate crystal. Correction schemes including energy, linearity and uniformity correction were developed. Energy and linearity correction was performed with ~(57)Co sheet by utilizing same dot pattern phantom used for look up table (LUT) generation. Energy correction aligns the energy peaks of energy spectrum to reference energy by linear transformation. Linearity correction removes spatial distortions based on LUT of X, Y directions. Uniformity correction was executed with ~(99m)Tc flood source to redistribute counts in the image. This correction was based on pixel addition and subtraction for each event. Results: The results showed calibration measure for dot pattern image acquired with ~(57)Co sheet and flood field image obtained with ~(99m)Tc. This system acquired with ~(99m)Tc provided 17. 54% FWHM energy resolution and 2. 5% integral uniformity within a useful field of view (UFOV). Conclusions: The correction schemes in this paper showed good results about linearity and uniformity. The measured energy resolution of the system is not as high as what we had expected due to the limitation of the current version of DAQ in the prototype system. In the future, we will revise the hardware so that we can maximize the performance of the proposed methods.
机译:这项研究的目的是为小型器官专用系统(如乳房,甲状腺和关节)的小型视场(SFOV)高分辨率伽马相机探测器开发数据校正方案。方法:伽马相机包含与单拍NaI(TI)平板晶体耦合的PMT。制定了包括能量,线性和均匀度校正在内的校正方案。通过使用与查找表(LUT)生成相同的点图案体模,对〜(57)Co片材进行了能量和线性校正。能量校正通过线性变换将能量谱的能量峰对准参考能量。线性校正可基于X,Y方向的LUT消除空间失真。使用〜(99m)Tc洪水源执行均匀性校正,以重新分配图像中的计数。此校正基于每个事件的像素加法和减法。结果:结果显示了〜(57)Co片获得的点图案图像和〜(99m)Tc获得的水淹图像的校准措施。用〜(99m)Tc采集的该系统在有用的视场(UFOV)内提供了17. 54%的FWHM能量分辨率和2.5%的整体均匀度。结论:本文的校正方案在线性和均匀性方面显示出良好的效果。由于原型系统中当前版本的DAQ的限制,系统测得的能量分辨率未达到我们的预期。将来,我们将修改硬件,以使所提出方法的性能最大化。

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