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Digital PET compliance to EARL accreditation specifications

BACKGROUND: Our aim was to evaluate if a recently introduced TOF PET system with digital photon counting technology (Philips Healthcare), potentially providing an improved image quality over analogue systems, can fulfil EANM research Ltd (EARL) accreditation specifications for tumour imaging with FD...

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Autores principales: Koopman, Daniëlle, Groot Koerkamp, Maureen, Jager, Pieter L., Arkies, Hester, Knollema, Siert, Slump, Cornelis H., Sanches, Pedro G., van Dalen, Jorn A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5285289/
https://www.ncbi.nlm.nih.gov/pubmed/28144857
http://dx.doi.org/10.1186/s40658-017-0176-5
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author Koopman, Daniëlle
Groot Koerkamp, Maureen
Jager, Pieter L.
Arkies, Hester
Knollema, Siert
Slump, Cornelis H.
Sanches, Pedro G.
van Dalen, Jorn A.
author_facet Koopman, Daniëlle
Groot Koerkamp, Maureen
Jager, Pieter L.
Arkies, Hester
Knollema, Siert
Slump, Cornelis H.
Sanches, Pedro G.
van Dalen, Jorn A.
author_sort Koopman, Daniëlle
collection PubMed
description BACKGROUND: Our aim was to evaluate if a recently introduced TOF PET system with digital photon counting technology (Philips Healthcare), potentially providing an improved image quality over analogue systems, can fulfil EANM research Ltd (EARL) accreditation specifications for tumour imaging with FDG-PET/CT. FINDINGS: We have performed a phantom study on a digital TOF PET system using a NEMA NU2-2001 image quality phantom with six fillable spheres. Phantom preparation and PET/CT acquisition were performed according to the European Association of Nuclear Medicine (EANM) guidelines. We made list-mode ordered-subsets expectation maximization (OSEM) TOF PET reconstructions, with default settings, three voxel sizes (4 × 4 × 4 mm(3), 2 × 2 × 2 mm(3) and 1 × 1 × 1 mm(3)) and with/without point spread function (PSF) modelling. On each PET dataset, mean and maximum activity concentration recovery coefficients (RC(mean) and RC(max)) were calculated for all phantom spheres and compared to EARL accreditation specifications. The RCs of the 4 × 4 × 4 mm(3) voxel dataset without PSF modelling proved closest to EARL specifications. Next, we added a Gaussian post-smoothing filter with varying kernel widths of 1–7 mm. EARL specifications were fulfilled when using kernel widths of 2 to 4 mm. CONCLUSIONS: TOF PET using digital photon counting technology fulfils EARL accreditation specifications for FDG-PET/CT tumour imaging when using an OSEM reconstruction with 4 × 4 × 4 mm(3) voxels, no PSF modelling and including a Gaussian post-smoothing filter of 2 to 4 mm.
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spelling pubmed-52852892017-02-13 Digital PET compliance to EARL accreditation specifications Koopman, Daniëlle Groot Koerkamp, Maureen Jager, Pieter L. Arkies, Hester Knollema, Siert Slump, Cornelis H. Sanches, Pedro G. van Dalen, Jorn A. EJNMMI Phys Short Communication BACKGROUND: Our aim was to evaluate if a recently introduced TOF PET system with digital photon counting technology (Philips Healthcare), potentially providing an improved image quality over analogue systems, can fulfil EANM research Ltd (EARL) accreditation specifications for tumour imaging with FDG-PET/CT. FINDINGS: We have performed a phantom study on a digital TOF PET system using a NEMA NU2-2001 image quality phantom with six fillable spheres. Phantom preparation and PET/CT acquisition were performed according to the European Association of Nuclear Medicine (EANM) guidelines. We made list-mode ordered-subsets expectation maximization (OSEM) TOF PET reconstructions, with default settings, three voxel sizes (4 × 4 × 4 mm(3), 2 × 2 × 2 mm(3) and 1 × 1 × 1 mm(3)) and with/without point spread function (PSF) modelling. On each PET dataset, mean and maximum activity concentration recovery coefficients (RC(mean) and RC(max)) were calculated for all phantom spheres and compared to EARL accreditation specifications. The RCs of the 4 × 4 × 4 mm(3) voxel dataset without PSF modelling proved closest to EARL specifications. Next, we added a Gaussian post-smoothing filter with varying kernel widths of 1–7 mm. EARL specifications were fulfilled when using kernel widths of 2 to 4 mm. CONCLUSIONS: TOF PET using digital photon counting technology fulfils EARL accreditation specifications for FDG-PET/CT tumour imaging when using an OSEM reconstruction with 4 × 4 × 4 mm(3) voxels, no PSF modelling and including a Gaussian post-smoothing filter of 2 to 4 mm. Springer International Publishing 2017-01-31 /pmc/articles/PMC5285289/ /pubmed/28144857 http://dx.doi.org/10.1186/s40658-017-0176-5 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Short Communication
Koopman, Daniëlle
Groot Koerkamp, Maureen
Jager, Pieter L.
Arkies, Hester
Knollema, Siert
Slump, Cornelis H.
Sanches, Pedro G.
van Dalen, Jorn A.
Digital PET compliance to EARL accreditation specifications
title Digital PET compliance to EARL accreditation specifications
title_full Digital PET compliance to EARL accreditation specifications
title_fullStr Digital PET compliance to EARL accreditation specifications
title_full_unstemmed Digital PET compliance to EARL accreditation specifications
title_short Digital PET compliance to EARL accreditation specifications
title_sort digital pet compliance to earl accreditation specifications
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5285289/
https://www.ncbi.nlm.nih.gov/pubmed/28144857
http://dx.doi.org/10.1186/s40658-017-0176-5
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