适用于临床成像的不同处理和SiPMs半单片探测器的时间和能量表征

IF 4.6 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING IEEE Transactions on Radiation and Plasma Medical Sciences Pub Date : 2023-11-01 DOI:10.1109/TRPMS.2023.3300747
J. Barrio, N. Cucarella, M. Freire, C. Valladares, J. Benlloch, Antonio J. Gonzalez
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引用次数: 0

摘要

由于其飞行时间(TOF)和相互作用深度(DOI)能力,基于半单片晶体的探测器的使用可以引起临床正电子发射断层扫描仪的兴趣。在这项工作中,基于8块分别耦合到硅光电倍增管(SiPMs)的25.4\ × 3.1\ × 20$ mm3的氧化硅酸镥钇板阵列,进行了四种不同探测器配置的时间和能量表征。一方面,研究了两种不同的表面处理方法。在一种配置中,所有板表面都用增强镜面反射器(称为ESR)进行处理。在另一种配置中,在入口面添加了一个后向反射器层,并将像素化的外部面涂成黑色(命名为ESR+B+RR)。另一方面,比较了滨松光电公司S13系列和S14系列两种不同的SiPM阵列模型。在所有情况下,读出由TOFPET2应用专用集成电路执行。结果表明,ESR处理和S13光敏器的能量分辨率和探测器时间分辨率(DTR)分别达到12.5%和193 ps。ESR+B+RR处理和S13处理的能量分辨率和DTR分别为14.6%和238 ps。当使用S14时,ESR处理的能量分辨率和dtr分别为11.6%和219 ps, ESR+B+RR处理的能量分辨率和dtr分别为14.2%和339 ps。
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Time and Energy Characterization of Semi-Monolithic Detectors With Different Treatments and SiPMs Suitable for Clinical Imaging
The use of detectors based on semi-monolithic crystals can be of interest to clinical positron emission tomography scanners due to their time of flight (TOF) and depth of interaction (DOI) capabilities. In this work, timing and energy characterization of four different detector configurations based on arrays of eight lutetium yttrium oxyorthosilicate slabs of $25.4\times 3.1\times 20$ mm3 each coupled to silicon photomultipliers (SiPMs) have been carried out. On the one hand, two different surface treatments have been studied. In one configuration, all the slab surfaces were treated with enhanced specular reflector (named ESR). In the other configuration, a retroreflector layer was added to the entrance face and the pixelated external faces were painted black (named ESR+B+RR). On the other hand, two different SiPM array models belonging to the series S13 and S14 from Hamamatsu Photonics were also compared. In all cases, the readout was performed by the TOFPET2 application specific integrated circuit. The results show an energy resolution and a detector time resolution (DTR) as good as 12.5% and 193 ps, respectively, for the ESR treatment and the S13 photosensor. For the ESR+B+RR treatment and S13, the energy resolution and DTR are 14.6% and 238 ps, respectively. When using the S14, the energy resolutions and DTRs are, respectively, 11.6% and 219 ps for the ESR treatment, and 14.2% and 339 ps for the ESR+B+RR treatment.
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IEEE Transactions on Radiation and Plasma Medical Sciences
IEEE Transactions on Radiation and Plasma Medical Sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
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8.00
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18.20%
发文量
109
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