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首页> 外文期刊>IEEE Transactions on Nuclear Science >Fast-channel LSO detectors and fiber-optic encoding for excellent dual photon transmission measurements in PET
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Fast-channel LSO detectors and fiber-optic encoding for excellent dual photon transmission measurements in PET

机译:快速通道LSO检测器和光纤编码可在PET中实现出色的双光子透射测量

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Improved attenuation correction remains critical to PET. Currently with dual photon rotating rod sources, benefits of windowing are limited by counting losses of detectors nearest the rods, the near detectors. With single photon sources, improved statistics are offset by a greater need for collimation and more complex emission background correction. Now, a dual photon point source array with fast-channel, near detectors improves on these earlier techniques-here, adding transmission measurement to dual-head rotating PET. Arrays of collimated point sources (/sup 68/Ge/Ga-3 to 21 per head) are aligned axially and orbit the FOV. With each source is a dedicated near detector (LSO crystal). Crystals couple to photomultipliers (PMTs). As the crystals are not "block" encoded, pulse-processing time is reduced (to 120 ns). Reduced processing time lowers dead time and permits hotter sources. For improved axial sampling, larger arrays (21 sources/head) may be configured. To reduce cost, crystals couple fiber-optically into unique PMT pairs-decreasing the total number of near-detector PMTs by 71%.
机译:改进的衰减校正对于PET仍然至关重要。当前,在使用双光子旋转棒光源的情况下,通过计算距离棒最近的探测器(靠近探测器)的损耗来限制加窗的好处。使用单光子源时,对准直和更复杂的发射背景校正的需求就抵消了改进的统计量。现在,具有快速通道,近探测器的双光子点源阵列在这些早期技术的基础上进行了改进,在此为双头旋转PET添加了透射测量。准直点源阵列(/ sup 68 / Ge / Ga-3 /每头21个)沿轴向对齐并围绕FOV旋转。每个信号源都有一个专用的近探测器(LSO晶体)。晶体耦合到光电倍增管(PMT)。由于未对晶体进行“块”编码,因此脉冲处理时间减少了(至120 ns)。减少的处理时间减少了停滞时间,并允许使用更热的光源。为了改善轴向采样,可以配置更大的阵列(21个源/头)。为了降低成本,晶体将光纤耦合到唯一的PMT对中,从而使近探测器PMT的总数减少了71%。

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