FPGA-based digitizer for BGO-based time-of-flight PET
Daehee Lee, Sun Il Kwon

TL;DR
This paper introduces an FPGA-based BGO time-of-flight PET digitizer capable of precise energy and timing measurements, validated through experiments, with performance comparable to oscilloscopes and suitable for scalable multi-channel systems.
Contribution
The paper presents a novel FPGA-based digitizer that independently processes scintillation and Cerenkov photons for BGO PET, achieving high timing resolution with low resource usage.
Findings
Achieved a 407 ps FWHM coincidence timing resolution.
Validated performance with BGO pixels coupled to SiPMs.
Demonstrated scalability potential for multi-channel PET systems.
Abstract
We present a novel FPGA-based bismuth germanate (BGO) time-of-flight (TOF) digitizer, implemented on an FPGA (VC707 evaluation kit, Xilinx). This digitizer was designed to address the recently highlighted characteristics of BGO, which generates scintillation and prompt Cerenkov photons when 511-keV photon interacts with BGO. The developed digitizer independently processes these two types of photons for precise energy and timing measurements. The digitizer incorporates a noise-resistant binary counter that measures energy signals using a time-over-threshold (TOT) method. For timing measurement, we employ an embedded dual-side monitoring time-to-digital converter (TDC), which efficiently captures timing information while maintaining low resource usage. We validated the efficacy of our FPGA-based TOF digitizer through extensive experiments, including both an electrical setup and a…
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Taxonomy
TopicsMedical Imaging Techniques and Applications · Radiation Detection and Scintillator Technologies · Radiation Effects in Electronics
