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Collection of scintillation light from small BGO crystals

机译:从小型BGO晶体收集闪烁光

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We propose to develop a high resolution positron emission tomography (PET) detector designed for animal imaging. The detector consists of a 2-D array of small bismuth germanate (BGO) crystals coupled via optical fibers to a multi-channel photomultiplier tube (MC-PMT). Though this approach offers several advantages over the conventional BGO block design, it does require that a sufficient number of scintillation photons be transported from the crystal, down the fiber and into the PMT. In this study we use simulations and experimental data to determine how to maximize the signal reaching the PMT. This involves investigating factors such as crystal geometry, crystal surface treatment, the use of reflectors, choice of optical fiber, coupling of crystal to the optical fiber and optical fiber properties. Our results indicate that using 2/spl times/2/spl times/10 mm BGO crystals coupled to 30 cm of clad optical fiber, roughly 50 photoelectrons are produced at the PMT photocathode for a 511 keV interaction. This is sufficient to clearly visualize the photopeak and provide adequate timing resolution for PET. Based on these encouraging results, a prototype detector will now be constructed.
机译:我们建议开发一种专为动物成像设计的高分辨率正电子发射断层扫描(PET)检测器。该检测器由一个小锗酸铋(BGO)晶体的二维阵列组成,该二维阵列通过光纤耦合到多通道光电倍增管(MC-PMT)。尽管这种方法比常规的BGO块设计具有多个优势,但确实需要从晶体中传输足够数量的闪烁光子,沿着光纤向下传输到PMT中。在这项研究中,我们使用仿真和实验数据来确定如何最大化到达PMT的信号。这涉及调查因素,例如晶体的几何形状,晶体的表面处理,反射器的使用,光纤的选择,晶体与光纤的耦合以及光纤的性能。我们的结果表明,使用2 / spl次/ 2 / spl次/ 10毫米BGO晶体与30 cm包层光纤耦合,在PMT光电阴极上产生约511 keV相互作用的约50个光电子。这足以清楚地显示光电峰并为PET提供足够的定时分辨率。基于这些令人鼓舞的结果,现在将构建原型探测器。

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