Evaluation of Single-Chip, Real-Time Tomographic Data Processing on FPGA SoC Devices

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Abstract

A novel approach to tomographic data processing has been developed and evaluated using the Jagiellonian positron emission tomography scanner as an example. We propose a system in which there is no need for powerful, local to the scanner processing facility, capable to reconstruct images on the fly. Instead, we introduce a field programmable gate array system-on-chip platform connected directly to data streams coming from the scanner, which can perform event building, filtering, coincidence search, and region-of-response reconstruction by the programmable logic and visualization by the integrated processors. The platform significantly reduces data volume converting raw data to a list-mode representation, while generating visualization on the fly.

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Korcyl, G., Bialas, P., Curceanu, C., Czerwinski, E., Dulski, K., Flak, B., … Moskal, P. (2018). Evaluation of Single-Chip, Real-Time Tomographic Data Processing on FPGA SoC Devices. IEEE Transactions on Medical Imaging, 37(11), 2526–2535. https://doi.org/10.1109/TMI.2018.2837741

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