论文标题

使用多阈值读数在塑料闪烁器条中的命中时间和命中位置重建

Hit-time and hit-position reconstruction in strips of plastic scintillators using multi-threshold readouts

论文作者

Sharma, N. G., Silarski, M., Chhokar, J., Czerwinski, E., Curceanu, C., Dulski, K., Farbaniec, K., Gajos, A., Del Grande, R., Gorgol, M., Hiesmayr, B. C., Jasinska, B., Kacprzak, K., Kaplon, L., Kisielewska, D., Klimaszewski, K., Korcyl, G., Kowalski, P., Krawczyk, N., Krzemien, W., Kozik, T., Kubicz, E., Mohammed, M., Niedzwiecki, Sz., Palka, M., Pawlik-Niedzwiecka, M., Raczynski, L., Raj, J., Sharma, S., Shivani, S., Shopa, R. Y., Skurzok, M., Wislicki, W., Zgardzinska, B., Moskal, P.

论文摘要

在本文中,研究了一种新的方法,用于在长闪烁探测器中重建命中位置和光子的命中时间。这项研究是由基于塑料闪烁体的正电子发射断层扫描扫描仪的最新发展所激发的。所提出的方法构成了多压技术中信号处理的一种新方法。它基于确定注册信号与存储在库中的同步模型信号之间的相似程度。该库是为沿闪烁器长度的一组明确定义的命中位置而建立的。 Mahalanobis距离用作比较信号之间相似性的量度。该方法已在使用两率J-PET原型的实验数据上验证,尺寸为5x9x300 mm $ $^3 $。获得的飞行时间(TOF)和空间分辨率分别为325〜PS(FWHM)和25〜mm(FWHM)。还将TOF分辨率与使用线性拟合方法进行的类似研究的结果进行了比较。使用该方法以四个预定义的阈值水平获得了最佳的TOF分辨率,这与在两个预定义阈值水平下从Mahalanobis距离获得的分辨率相当。尽管线性拟合方法的算法比Mahalanobis方法要简单得多,但Mahalanobis距离的应用需要较低的应用阈值水平,因此降低了PET扫描仪中使用的电子成本。

In this article, a new method for the reconstruction of hit-position and hit-time of photons in long scintillator detectors is investigated. This research is motivated by the recent development of the positron emission tomography scanners based on plastic scintillators. The proposed method constitutes a new way of signal processing in Multi-Voltage-Technique. It is based on the determination of the degree of similarity between the registered signals and the synchronized model signals stored in a library. The library was established for a set of well defined hit-positions along the length of the scintillator. The Mahalanobis distance was used as a measure of similarity between the two compared signals. The method was validated on the experimental data measured using two-strips J-PET prototype with dimensions of 5x9x300 mm$^3$. The obtained Time-of-Flight (TOF) and spatial resolutions amount to 325~ps (FWHM) and 25~mm (FWHM), respectively. The TOF resolution was also compared to the results of an analogous study done using Linear Fitting method. The best TOF resolution was obtained with this method at four pre-defined threshold levels which was comparable to the resolution achieved from the Mahalanobis distance at two pre-defined threshold levels. Although the algorithm of Linear Fitting method is much simpler to apply than the Mahalanobis method, the application of the Mahalanobis distance requires a lower number of applied threshold levels and, hence, decreases the costs of electronics used in PET scanner.

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