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Characterization of a PET prototype based on monolithic detectors

We have characterized a PET prototype based on monolithic scintillator detectors. The prototype has a modular design with 8 identical detector cassettes, each housing 4 monolithic blocks. The cassettes are mounted on a gantry in 2 groups of 4 cassettes facing each other, totaling 32 detectors. Each...

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Autores principales: Marin, Jesus, Morcillo, Miguel Angel, Navarrete, Javier, Oller, Juan Carlos, Oteo, Marta, Perez, Jose Manuel, Rato Mendes, Pedro, Romero, Luciano, Sarasola, Iciar, Vela, Oscar
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1109/NSSMIC.2016.8069437
http://cds.cern.ch/record/2318767
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author Marin, Jesus
Morcillo, Miguel Angel
Navarrete, Javier
Oller, Juan Carlos
Oteo, Marta
Perez, Jose Manuel
Rato Mendes, Pedro
Romero, Luciano
Sarasola, Iciar
Vela, Oscar
author_facet Marin, Jesus
Morcillo, Miguel Angel
Navarrete, Javier
Oller, Juan Carlos
Oteo, Marta
Perez, Jose Manuel
Rato Mendes, Pedro
Romero, Luciano
Sarasola, Iciar
Vela, Oscar
author_sort Marin, Jesus
collection CERN
description We have characterized a PET prototype based on monolithic scintillator detectors. The prototype has a modular design with 8 identical detector cassettes, each housing 4 monolithic blocks. The cassettes are mounted on a gantry in 2 groups of 4 cassettes facing each other, totaling 32 detectors. Each detector block is composed of a trapezoidal LYSO:Ce scintillator glued to a pair of Hamamatsu S8550-02 APD matrices, which are read out by dedicated VATA 241 ASICs from Gamma Medica Ideas. The ASIC collects and amplifies the charge pulses from the 64 photosensors in each detector block, sums them into 8 rows and 8 column outputs and generates a trigger signal whenever the charge in a channel is above a user-defined threshold. Positioning algorithms based on supervised training neural networks are used for the detector blocks. A rotating platform with precise movement control is aligned with the system axis allowing acquisition of coincidence data along different projection angles. Using this system, Na22 point sources and a NEMA NU4-2008 image quality phantom filled with F18-FDG have been imaged and the images obtained have been characterized and compared with those from a Sedecal Argus PET/CT small-animal scanner, used as reference. Results show that the data acquisition system performs according to specifications and that PET imaging based on a large number of monolithic detector blocks is an alternative to designs based on segmented detectors.
id oai-inspirehep.net-1664498
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16644982019-09-30T06:29:59Zdoi:10.1109/NSSMIC.2016.8069437http://cds.cern.ch/record/2318767engMarin, JesusMorcillo, Miguel AngelNavarrete, JavierOller, Juan CarlosOteo, MartaPerez, Jose ManuelRato Mendes, PedroRomero, LucianoSarasola, IciarVela, OscarCharacterization of a PET prototype based on monolithic detectorsDetectors and Experimental TechniquesWe have characterized a PET prototype based on monolithic scintillator detectors. The prototype has a modular design with 8 identical detector cassettes, each housing 4 monolithic blocks. The cassettes are mounted on a gantry in 2 groups of 4 cassettes facing each other, totaling 32 detectors. Each detector block is composed of a trapezoidal LYSO:Ce scintillator glued to a pair of Hamamatsu S8550-02 APD matrices, which are read out by dedicated VATA 241 ASICs from Gamma Medica Ideas. The ASIC collects and amplifies the charge pulses from the 64 photosensors in each detector block, sums them into 8 rows and 8 column outputs and generates a trigger signal whenever the charge in a channel is above a user-defined threshold. Positioning algorithms based on supervised training neural networks are used for the detector blocks. A rotating platform with precise movement control is aligned with the system axis allowing acquisition of coincidence data along different projection angles. Using this system, Na22 point sources and a NEMA NU4-2008 image quality phantom filled with F18-FDG have been imaged and the images obtained have been characterized and compared with those from a Sedecal Argus PET/CT small-animal scanner, used as reference. Results show that the data acquisition system performs according to specifications and that PET imaging based on a large number of monolithic detector blocks is an alternative to designs based on segmented detectors.oai:inspirehep.net:16644982017
spellingShingle Detectors and Experimental Techniques
Marin, Jesus
Morcillo, Miguel Angel
Navarrete, Javier
Oller, Juan Carlos
Oteo, Marta
Perez, Jose Manuel
Rato Mendes, Pedro
Romero, Luciano
Sarasola, Iciar
Vela, Oscar
Characterization of a PET prototype based on monolithic detectors
title Characterization of a PET prototype based on monolithic detectors
title_full Characterization of a PET prototype based on monolithic detectors
title_fullStr Characterization of a PET prototype based on monolithic detectors
title_full_unstemmed Characterization of a PET prototype based on monolithic detectors
title_short Characterization of a PET prototype based on monolithic detectors
title_sort characterization of a pet prototype based on monolithic detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/NSSMIC.2016.8069437
http://cds.cern.ch/record/2318767
work_keys_str_mv AT marinjesus characterizationofapetprototypebasedonmonolithicdetectors
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AT romeroluciano characterizationofapetprototypebasedonmonolithicdetectors
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