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Molecular Imaging in the College of Optical Sciences - An Overview of Two Decades of Instrumentation Development

机译:光学学院分子成像 - 概述了二十年的仪器发展

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During the past two decades, researchers at the University of Arizona's Center for Gamma-Ray Imaging (CGRI) have explored a variety of approaches to gamma-ray detection, including scintillation cameras, solid-state detectors, and hybrids such as the intensified Quantum Imaging Device (iQID) configuration where a scintillator is followed by optical gain and a fast CCD or CMOS camera. We have combined these detectors with a variety of collimation schemes, including single and multiple pinholes, parallel-hole collimators, synthetic apertures, and anamorphic crossed slits, to build a large number of preclinical molecular-imaging systems that perform Single-Photon Emission Computed Tomography (SPECT), Positron Emission Tomography (PET), and X-Ray Computed Tomography (CT). In this paper, we discuss the themes and methods we have developed over the years to record and fully use the information content carried by every detected gamma-ray photon.
机译:在过去的二十年中,亚利桑那州伽马射线成像中心(CGRI)的研究人员已经探索了各种方法,包括伽马射线射线检测,包括闪烁相机,固态探测器和杂种,例如强化量子成像设备(IQID)配置,其中闪烁器之后是光学增益和快速CCD或CMOS相机。我们已将这些探测器与各种准直方案组合,包括单个和多个针孔,平行孔准直器,合成孔和变形交叉狭缝,以构建大量执行单光子发射计算机断层扫描的临床前分子成像系统(SPECT),正电子发射断层扫描(PET)和X射线计算机断层扫描(CT)。在本文中,我们讨论了多年来我们开发的主题和方法,以记录并充分利用每个检测到的伽马射线光子携带的信息内容。

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