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首页> 外文期刊>IEEE Transactions on Nuclear Science >Design of a high-resolution and high-sensitivity scintillation crystal array for PET with nearly complete light collection
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Design of a high-resolution and high-sensitivity scintillation crystal array for PET with nearly complete light collection

机译:用于PET的高分辨率,高灵敏度闪烁晶体阵列的设计,具有几乎完整的光收集

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Spatial resolution improvements in positron emission tomography (PET) can be achieved by developing detector arrays with finer resolution elements. To maintain high sensitivity and image quality, the challenge is to develop a finely pixellated scintillation crystal array with both high detection efficiency and high light collection. High detection efficiency means the crystals must be relatively long and tightly packed. Extracting a high fraction of the available scintillation light from the ends of long and skinny crystals proves to be very difficult and there is a strong variation with light source depth. The result is inadequate energy resolution. To facilitate light collection, the crystals must be highly polished, which significantly increases costs and complexity. In this paper, we examine this poor light collection phenomenon in more detail. We also describe a novel solution we are developing for readout of an array of 1 mm crystals using avalanche photodiodes (APD). We demonstrate through optical photon tracking simulations that the crystal light collection for this new design is nearly perfect (/spl ges/ 95 %) and is independent of the crystal length, width, and surface treatment and origin of the light created.
机译:通过开发具有更高分辨率元件的探测器阵列,可以实现正电子发射断层扫描(PET)的空间分辨率提高。为了保持高灵敏度和图像质量,挑战在于开发一种具有高检测效率和高集光率的精细像素化闪烁晶体阵列。高检测效率意味着晶体必须相对较长且紧密堆积。从长而细的晶体的末端提取大量可用的闪烁光被证明是非常困难的,并且随光源深度的变化很大。结果是能量分辨率不足。为了促进光收集,必须对晶体进行高度抛光,这会大大增加成本和复杂性。在本文中,我们将更详细地研究这种不良的集光现象。我们还描述了一种我们正在开发的新颖解决方案,用于使用雪崩光电二极管(APD)读取1 mm晶体阵列。我们通过光学光子跟踪仿真证明,这种新设计的晶体光收集几乎是完美的(/ spl ges / 95%),并且与晶体的长度,宽度,表面处理和所产生的光的来源无关。

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