Title :
Trigger Performance Simulation of a High Speed ADC-Based TOF-PET Read-Out System
Author :
Brekke, Njål ; Röhrich, Dieter ; Ullaland, Kjetil ; Gruner, Renate
Author_Institution :
Dept. of Phys. & Technol., Univ. of Bergen, Bergen, Norway
Abstract :
Monte Carlo simulations of a time-of-flight Positron Emission Tomography front end readout system (TOF-PET) are performed to investigate obtainable timing resolution at different ADC sample times using LYSO scintillators. Results from simulations with different combinations of ADC sample times and analog filter time constants are presented. To determine the coincidence resolving time (CRT), a trigger system based on a digital constant fraction zero crossing discriminator (CFD) is investigated. Such a trigger system would be suitable for running real time in a field-programmable gate array (FPGA). It is seen that below a certain sample time, the time resolution is limited by the scintillator and MPPC combination, and not the readout system.
Keywords :
Monte Carlo methods; analogue-digital conversion; field programmable gate arrays; photon counting; position sensitive particle detectors; positron emission tomography; readout electronics; solid scintillation detectors; ADC sample times; CFD; CRT; FPGA; LYSO scintillators; MPPC combination; Monte Carlo simulations; analog filter time constants; coincidence resolving time; digital constant fraction zero crossing discriminator; field-programmable gate array; high speed ADC-based TOF-PET read-out system; multi pixel photon counters; obtainable timing resolution; real time running; sample time; time resolution; time-of-flight positron emission tomography front end readout system; trigger performance simulation; trigger system; Detectors; Logic gates; Optical sensors; Photonics; Positron emission tomography; Signal resolution; Timing; GEANT4; positron Emission Tomography (PET) instrumentation; simulation; time-of-flight PET; trigger algorithms;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2012.2197413