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Hybrid-Collimator Design for a Small Animal Imager: PEDRO

机译:一个小动物成像仪的混合准直器设计:佩德罗

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The Pixelated Emission Detector for RadiOisotopes (PEDRO) is a hybrid imaging system designed for the measurement of single photon emission from small animal models. The proof-of-principle device consists of a Compton-camera situated behind a mechanical collimator and is intended to provide optimal detection characteristics over a broad spectral range, from 30 keV to 511 keV. An automated routine has been developed for the optimization of the mechanical collimator which consists of pinholes and open slits. The optimization was tested with a Geant4 model of the experimental prototype. The data were blurred with the expected position and energy resolution parameters and a Bayesian interaction ordering algorithm was applied. The results show that the optimization technique allows the large-area slits to sample fully the primary field of view (FoV). The slits were found to provide truncation of the back-projected cones of response and also an increase in the success rate of the interaction ordering algorithm. These factors resulted in an increase in the contrast and signal-to-noise ratios of the reconstructed image estimates.
机译:用于放射性机器(PEDRO)的像素化发射检测器是一种用于测量来自小动物模型的单光子发射的混合成像系统。原则上的装置包括位于机械准直器后面的康普顿相机,旨在在广泛的光谱范围内提供最佳的检测特性,从30kev到511 kev。已经开发了一种自动化程序,用于优化由针孔和开口狭缝组成的机械准直器。用实验原型的GEANT4模型测试优化。数据模糊地模糊了预期的位置和能量分辨率参数,并且应用了贝叶斯交互顺序算法。结果表明,优化技术允许大面积狭缝完全自行样本(FOV)。发现狭缝提供截断的响应截断,并且还增加交互顺序算法的成功率的增加。这些因素导致重建图像估计的对比度和信噪比增加。

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