论文标题

24模块J-PET原型的同步和校准,具有300 〜mm轴向视场

Synchronisation and calibration of the 24-modules J-PET prototype with 300~mm axial field of view

论文作者

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

论文摘要

在J-PET项目框架中进行的研究旨在开发一种具有成本效益的总体型发射断层扫描仪。作为从长长的塑料闪烁体构造全尺寸J-PET层状的途径的第一步,建造和测试了24架原型。该原型由轴向形成圆柱形诊断室的检测模块组成,内径为360毫米,轴向视野为300 mm。由于塑料闪烁器的轴向排列,Wchich的轴向布置轴向排列,因此打开了体型PET扫描仪的低成本构造的有前途的观点,具有较小的光衰减,出色的时正常特性以及轴向视野的成本效益增加的可能性。提出的原型包括专用的完全数字前端电子电路和无触发数据采集系统,该系统需要开发新的校准方法,包括时间,阈值和增益同步。介绍并讨论了系统和详细的校准方法,包括24模块J-PET原型的第一个结果。实现的巧合分辨时间等于CRT = 490 $ \ pm $ 9 ps。该值可以转化为位置重建精度$σ(ΔL)= $ 18毫米,这是相当独立的。

Research conducted in the framework of the J-PET project aims to develop a cost-effective total-body positron emission tomography scanner. As a first step on the way to construct a full-scale J-PET tomograph from long strips of plastic scintillators, a 24-strip prototype was built and tested. The prototype consists of detection modules arranged axially forming a cylindrical diagnostic chamber with the inner diameter of 360 mm and the axial field-of-view of 300 mm. Promising perspectives for a low-cost construction of a total-body PET scanner are opened due to an axial arrangement of strips of plastic scintillators, wchich have a small light attenuation, superior timing properties, and the possibility of cost-effective increase of the axial field-of-view. The presented prototype comprises dedicated solely digital front-end electronic circuits and a triggerless data acquisition system which required development of new calibration methods including time, thresholds and gain synchronization. The system and elaborated calibration methods including first results of the 24-module J-PET prototype are presented and discussed. The achieved coincidence resolving time equals to CRT = 490 $\pm$ 9 ps. This value can be translated to the position reconstruction accuracy $σ(Δl) =$ 18 mm which is fairly position-independent.

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