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Timing resolution improvement using DOI information in a four-layer scintillation detector for TOF-PET

机译:在TOF-PET的四层闪烁检测器中使用DOI信息改善时序分辨率

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Depth-of-interaction (DOI) detectors are considered to be advantageous for time-of-flight positron emission tomography (TOF-PET) because they can correct timing errors arising in the scintillation crystals due to a propagation speed difference between annihilation radiation and scintillation photons. We experimentally measured this timing error, using our four-layer DOI encoding method. The upper layers exhibited the larger timing delays due to the longer path lengths after conversion from annihilation radiation into scintillation photons that traveled by zigzag paths at a speed decreased by a factor of the refractive index (n). The maximum timing delay between the uppermost and the lowermost layers was evaluated as 164 ps when n = 1.47. A TOF error correction was demonstrated to improve the timing resolution of the four-layer DOI detector by 10.3%, which would increase the effective sensitivity of the scanner by about 12% comparison with a non-DOI TOF-PET scanner. This is the first step towards combining these two important fields in PET instrumentation, namely DOI and TOF, for the purpose of achieving a higher sensitivity as well as a more uniform spatial resolution.
机译:相互作用深度(DOI)检测器被认为对飞行时间正电子发射断层扫描(TOF-PET)有利,因为它们可以纠正由于an灭辐射和闪烁之间的传播速度差异而在闪烁晶体中出现的定时误差。光子。我们使用四层DOI编码方法实验性地测量了此时序误差。由于从from灭辐射转换成以之字形路径传播的闪烁光子的路径长度较长,上层层显示出较大的时间延迟,该路径以锯齿形路径传播,其速度降低了折射率(n)。当n = 1.47时,最上层和最下层之间的最大时序延迟估计为164 ps。事实证明,TOF误差校正可将四层DOI检测器的定时分辨率提高10.3%,与非DOI TOF-PET扫描仪相比,它将使扫描仪的有效灵敏度提高约12%。这是在PET仪器中将这两个重要领域(即DOI和TOF)结合起来的第一步,以实现更高的灵敏度和更均匀的空间分辨率。

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