We developed a new FPGA-based method for coincidence detection in positron emission tomography. The method requires low device resources and no specific peripherals in order to resolve coincident digital pulses within a time window of a few nanoseconds. This method has been validated with a low-end Xilinx Spartan-3E and provided coincidence resolutions lower than 6 ns. This resolution depends directly on the signal propagation properties of the target device and the maximum available clock frequency, therefore it is expected to improve considerably on higher-end FPGAs.

Low-resource synchronous coincidence processor for positron emission tomography

SPORTELLI, GIANCARLO;BELCARI, NICOLA;
2011-01-01

Abstract

We developed a new FPGA-based method for coincidence detection in positron emission tomography. The method requires low device resources and no specific peripherals in order to resolve coincident digital pulses within a time window of a few nanoseconds. This method has been validated with a low-end Xilinx Spartan-3E and provided coincidence resolutions lower than 6 ns. This resolution depends directly on the signal propagation properties of the target device and the maximum available clock frequency, therefore it is expected to improve considerably on higher-end FPGAs.
2011
Sportelli, Giancarlo; Belcari, Nicola; Guerra, P; Santos, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/144531
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