PET重合事件的光学编码与复用

Alexander M. Grant, C. Levin
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引用次数: 2

摘要

我们开发了一种快速光脉冲(130 ps FWHM)序列PET探测器中湮灭光子相互作用的位置、能量和到达时间的光学编码方法,并在双通道重合设置中进行了演示。两个LSO-SiPM探测器通道进行光编码并复用为一个光纤读出通道,并使用定制软件解码所得脉冲序列中的一致性并计算一致性时序分辨率。采用脉冲高度判别法实现了~168 ps的FWHM时序分辨率,表明光学编码引入的时序抖动很小,有望应用于飞行时间(ToF) PET成像。我们已经演示了本质上是双通道光复用巧合检测,只有一个数字化仪。该技术有可能消除对每个探测器通道的巧合处理电子设备的需求,从而降低具有数千个读出通道的高分辨率PET扫描仪的复杂性。它最终可以用几根光纤取代笨重的电子多路复用和读出方案。
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Optical encoding and multiplexing of PET coincidence events
We have developed a method of optically encoding position, energy, and arrival time of annihilation photon interactions in PET detectors with fast optical pulse (130 ps FWHM) trains, and demonstrated it in a two-channel coincidence setup. Two LSO-SiPM detector channels were optically encoded and multiplexed down to one optical fiber readout channel, and custom software was used to decode coincidences in the resulting pulse trains and calculate coincidence timing resolution. Timing resolution of ~168 ps FWHM was achieved using pulse height discrimination, indicating that optical encoding introduces little timing jitter, and showing promise for use in time-of-flight (ToF) PET imaging. We have demonstrated what is essentially two-channel optically multiplexed coincidence detection with only a single digitizer. This technique has the potential to eliminate the need for coincidence processing electronics for every detector channel, thereby reducing the complexity of high-resolution PET scanners with thousands of readout channels. It could eventually replace bulky electronic multiplexing and readout schemes with only a few optical fibers.
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