Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time

Abstract Volumes of usual PET phantoms are about four to sixfold that of a human liver. In order to avoid count rate saturation and handling of very high 90Y activity, reported TOF-PET phantom studies are performed using specific activities lower than those observed in liver radioembolization. Howev...

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Main Authors: Michel Hesse, Stephan Walrand
Format: Article
Language:English
Published: SpringerOpen 2019-11-01
Series:EJNMMI Physics
Online Access:https://doi.org/10.1186/s40658-019-0259-6
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spelling doaj-5b62602ff0604706aba11bbeff35c50c2020-11-29T12:03:43ZengSpringerOpenEJNMMI Physics2197-73642019-11-01611410.1186/s40658-019-0259-6Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition timeMichel Hesse0Stephan Walrand1Universite Catholique de LouvainUniversite Catholique de LouvainAbstract Volumes of usual PET phantoms are about four to sixfold that of a human liver. In order to avoid count rate saturation and handling of very high 90Y activity, reported TOF-PET phantom studies are performed using specific activities lower than those observed in liver radioembolization. However, due to the constant random coincidence rate induced by the natural crystal radioactivity, reduction of 90Y specific activity in TOF-PET imaging cannot be counterbalanced by increasing the acquisition time. As a result, most 90Y phantom studies reported images noisier than those obtained in whole-body 18F-FDG, and thus advised to use dedicated noise control in TOF-PET imaging post 90Y liver radioembolization. We performed acquisitions of the Jaszczak Deluxe phantom in which the hot rod insert was only partially filled with 2.6 GBq of 90Y. Standard reconstruction parameters recommended by the manufacturer for whole-body 18F-FDG PET were used. Low specific activity setups, although exactly compensated by increasing the acquisition time in order to get the same number of detected true coincidences per millilitre, were impacted by significant noise. On the other hand, specific activity and acquisition time setup similar to that used in post 90Y liver radioembolization provided image quality very close to that of whole-body 18F-FDG. This result clearly discards the use of low specific activity phantoms intended to TOF-PET reconstruction parameter optimization. Volume reduction of large phantoms can be achieved by vertically setting the phantoms or by adding Styrofoam inserts.https://doi.org/10.1186/s40658-019-0259-6
collection DOAJ
language English
format Article
sources DOAJ
author Michel Hesse
Stephan Walrand
spellingShingle Michel Hesse
Stephan Walrand
Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
EJNMMI Physics
author_facet Michel Hesse
Stephan Walrand
author_sort Michel Hesse
title Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
title_short Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
title_full Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
title_fullStr Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
title_full_unstemmed Significant artefactual noise in 90Y TOF-PET imaging of low specific activity phantoms arises despite increased acquisition time
title_sort significant artefactual noise in 90y tof-pet imaging of low specific activity phantoms arises despite increased acquisition time
publisher SpringerOpen
series EJNMMI Physics
issn 2197-7364
publishDate 2019-11-01
description Abstract Volumes of usual PET phantoms are about four to sixfold that of a human liver. In order to avoid count rate saturation and handling of very high 90Y activity, reported TOF-PET phantom studies are performed using specific activities lower than those observed in liver radioembolization. However, due to the constant random coincidence rate induced by the natural crystal radioactivity, reduction of 90Y specific activity in TOF-PET imaging cannot be counterbalanced by increasing the acquisition time. As a result, most 90Y phantom studies reported images noisier than those obtained in whole-body 18F-FDG, and thus advised to use dedicated noise control in TOF-PET imaging post 90Y liver radioembolization. We performed acquisitions of the Jaszczak Deluxe phantom in which the hot rod insert was only partially filled with 2.6 GBq of 90Y. Standard reconstruction parameters recommended by the manufacturer for whole-body 18F-FDG PET were used. Low specific activity setups, although exactly compensated by increasing the acquisition time in order to get the same number of detected true coincidences per millilitre, were impacted by significant noise. On the other hand, specific activity and acquisition time setup similar to that used in post 90Y liver radioembolization provided image quality very close to that of whole-body 18F-FDG. This result clearly discards the use of low specific activity phantoms intended to TOF-PET reconstruction parameter optimization. Volume reduction of large phantoms can be achieved by vertically setting the phantoms or by adding Styrofoam inserts.
url https://doi.org/10.1186/s40658-019-0259-6
work_keys_str_mv AT michelhesse significantartefactualnoisein90ytofpetimagingoflowspecificactivityphantomsarisesdespiteincreasedacquisitiontime
AT stephanwalrand significantartefactualnoisein90ytofpetimagingoflowspecificactivityphantomsarisesdespiteincreasedacquisitiontime
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