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Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons

Time-of-Flight (TOF) reconstruction in Positron Emission Tomographic (PET) scanners uses a single kernel to reconstruct all events. However, recently developed detectors combining prompt emission and typical scintillation signal produce output events with different timing spreads. One such detectors...

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Autores principales: Efthimiou, Nikos, Kratochwil, Nicolaus, Gundacker, Stefan, Polesel, Andrea, Salomoni, Matteo, Auffray, Etiennette, Pizzichemi, Marco
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1109/NSS/MIC42677.2020.9508046
http://cds.cern.ch/record/2792373
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author Efthimiou, Nikos
Kratochwil, Nicolaus
Gundacker, Stefan
Polesel, Andrea
Salomoni, Matteo
Auffray, Etiennette
Pizzichemi, Marco
author_facet Efthimiou, Nikos
Kratochwil, Nicolaus
Gundacker, Stefan
Polesel, Andrea
Salomoni, Matteo
Auffray, Etiennette
Pizzichemi, Marco
author_sort Efthimiou, Nikos
collection CERN
description Time-of-Flight (TOF) reconstruction in Positron Emission Tomographic (PET) scanners uses a single kernel to reconstruct all events. However, recently developed detectors combining prompt emission and typical scintillation signal produce output events with different timing spreads. One such detectors technology is based on BGO crystals with Cherenkov photons. Thanks to fast silicon photo-multipliers sensitive in the near-ultraviolet and high-frequency electronic readout, the faint Cherenkov signal produced by the interaction of 511 keV gamma photons can be detected as faster pulse rise times. We present initial results from a Monte Carlo simulation and image reconstruction platform for detectors with multiple timing resolutions in this work. Simulated timing spreads show excellent agreement with the experimental measurements. In addition, the reconstruction software can reconstruct images using listmode and projection data. In terms of contrast recovery, the proposed multi-kernel model with BGO-Cherenkov detectors presents a similar recovery as a typical Gaussian model with LYSO detectors and timing resolution 213 ps. To the best of our knowledge, the use of multiple complex TOF kernels in image reconstruction has not been investigated in the past. However, further optimisations are needed in order to obtain the best possible results.
id cern-2792373
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27923732022-03-11T21:41:20Zdoi:10.1109/NSS/MIC42677.2020.9508046http://cds.cern.ch/record/2792373engEfthimiou, NikosKratochwil, NicolausGundacker, StefanPolesel, AndreaSalomoni, MatteoAuffray, EtiennettePizzichemi, MarcoTime-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov PhotonsDetectors and Experimental TechniquesTime-of-Flight (TOF) reconstruction in Positron Emission Tomographic (PET) scanners uses a single kernel to reconstruct all events. However, recently developed detectors combining prompt emission and typical scintillation signal produce output events with different timing spreads. One such detectors technology is based on BGO crystals with Cherenkov photons. Thanks to fast silicon photo-multipliers sensitive in the near-ultraviolet and high-frequency electronic readout, the faint Cherenkov signal produced by the interaction of 511 keV gamma photons can be detected as faster pulse rise times. We present initial results from a Monte Carlo simulation and image reconstruction platform for detectors with multiple timing resolutions in this work. Simulated timing spreads show excellent agreement with the experimental measurements. In addition, the reconstruction software can reconstruct images using listmode and projection data. In terms of contrast recovery, the proposed multi-kernel model with BGO-Cherenkov detectors presents a similar recovery as a typical Gaussian model with LYSO detectors and timing resolution 213 ps. To the best of our knowledge, the use of multiple complex TOF kernels in image reconstruction has not been investigated in the past. However, further optimisations are needed in order to obtain the best possible results.oai:cds.cern.ch:27923732020
spellingShingle Detectors and Experimental Techniques
Efthimiou, Nikos
Kratochwil, Nicolaus
Gundacker, Stefan
Polesel, Andrea
Salomoni, Matteo
Auffray, Etiennette
Pizzichemi, Marco
Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title_full Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title_fullStr Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title_full_unstemmed Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title_short Time-Of-Flight PET Image Reconstruction with Complex Timing Kernels: The Case of BGO Cherenkov Photons
title_sort time-of-flight pet image reconstruction with complex timing kernels: the case of bgo cherenkov photons
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/NSS/MIC42677.2020.9508046
http://cds.cern.ch/record/2792373
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