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Design and performance tests of the calorimetric tract of a Compton Camera for small-animals imaging

机译:用于小动物成像的康普顿相机量热线的设计和性能测试

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摘要

The bio-distribution and targeting capability of Pharmaceuticals may be assessed in small animals by imaging gamma-rays emitted from radio-isotope markers. Detectors that exploit the Compton concept allow higher gamma-ray efficiency compared to conventional Anger cameras employing collimators, and feature sub-millimeter spatial resolution and compact geometry. We are developing a Compton Camera that has to address several requirements: the high rates typical of the Compton concept; detection of gamma-rays of different energies that may range from 140keV (~(99m)Tc) to 511 keV (β+ emitters); presence of gamma and beta radiation with energies up to 2 MeV in case of ~(188)Re. The camera consists of a thin position-sensitive Tracker that scatters the gamma ray, and a second position-sensitive detection system to totally absorb the energy of the scattered photons (Calorimeter). In this paper we present the design and discuss the realization of the calorimetric tract, including the choice of scintillator crystal, pixel size, and detector geometry. Simulations of the gamma-ray trajectories from source to detectors have helped to assess the accuracy of the system and decide on camera design. Crystals of different materials, such as LaBr_3 GSO and YAP, and of different size, in continuous or segmented geometry, have been optically coupled to a multi-anode Hamamatsu H8500 detector, allowing measurements of spatial resolution and efficiency.
机译:可以通过对从放射性同位素标记物发出的伽玛射线成像来评估小型动物中药物的生物分布和靶向能力。与采用准直仪的传统Anger摄像机相比,采用Compton概念的探测器可提供更高的伽马射线效率,并具有亚毫米级的空间分辨率和紧凑的几何形状。我们正在开发必须满足以下几个要求的康普顿相机:康普顿概念的典型高速率;检测范围从140keV(〜(99m)Tc)到511keV(β+发射器)的不同能量的伽马射线;在〜(188)Re的情况下,存在能量高达2 MeV的伽马和β辐射。该相机由散射伽玛射线的薄型位置敏感追踪器和第二个位置敏感检测系统组成,该系统可完全吸收散射光子的能量(量热仪)。在本文中,我们介绍了设计并讨论了量热线的实现,包括闪烁体晶体的选择,像素大小和检测器几何形状。从源到探测器的伽马射线轨迹的仿真有助于评估系统的准确性,并决定相机的设计。已将具有连续或分段几何形状的不同材料(例如LaBr_3 GSO和YAP)和不同大小的晶体光学耦合到多阳极Hamamatsu H8500检测器,从而可以测量空间分辨率和效率。

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