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A panoramic coded aperture gamma camera for radioactive hotspots localization

A known disadvantage of the coded aperture imaging approach is its limited field-ofview (FOV), which often results insufficient when analysing complex dismantling scenes such as post-accidental scenarios, where multiple measurements are needed to fully characterize the scene. In order to overcome th...

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Autores principales: Paradiso, V, Amgarou, K, Lanaute, N Blanc De, Schoepff, V, Amoyal, G, Mahe, C, Beltramello, O, Liénard, E
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/12/11/P11010
http://cds.cern.ch/record/2301347
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author Paradiso, V
Amgarou, K
Lanaute, N Blanc De
Schoepff, V
Amoyal, G
Mahe, C
Beltramello, O
Liénard, E
author_facet Paradiso, V
Amgarou, K
Lanaute, N Blanc De
Schoepff, V
Amoyal, G
Mahe, C
Beltramello, O
Liénard, E
author_sort Paradiso, V
collection CERN
description A known disadvantage of the coded aperture imaging approach is its limited field-ofview (FOV), which often results insufficient when analysing complex dismantling scenes such as post-accidental scenarios, where multiple measurements are needed to fully characterize the scene. In order to overcome this limitation, a panoramic coded aperture γ-camera prototype has been developed. The system is based on a 1 mm thick CdTe detector directly bump-bonded to a Timepix readout chip, developed by the Medipix2 collaboration (256 × 256 pixels, 55 µm pitch, 14.08 × 14.08 mm2 sensitive area). A MURA pattern coded aperture is used, allowing for background subtraction without the use of heavy shielding. Such system is then combined with a USB color camera. The output of each measurement is a semi-spherical image covering a FOV of 360 degrees horizontally and 80 degrees vertically, rendered in spherical coordinates (θ,φ). The geometrical shapes of the radiation-emitting objects are preserved by first registering and stitching the optical images captured by the prototype, and applying, subsequently, the same transformations to their corresponding radiation images. Panoramic gamma images generated by using the technique proposed in this paper are described and discussed, along with the main experimental results obtained in laboratories campaigns.
id oai-inspirehep.net-1635751
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16357512019-10-15T15:18:49Zdoi:10.1088/1748-0221/12/11/P11010http://cds.cern.ch/record/2301347engParadiso, VAmgarou, KLanaute, N Blanc DeSchoepff, VAmoyal, GMahe, CBeltramello, OLiénard, EA panoramic coded aperture gamma camera for radioactive hotspots localizationNuclear Physics - ExperimentA known disadvantage of the coded aperture imaging approach is its limited field-ofview (FOV), which often results insufficient when analysing complex dismantling scenes such as post-accidental scenarios, where multiple measurements are needed to fully characterize the scene. In order to overcome this limitation, a panoramic coded aperture γ-camera prototype has been developed. The system is based on a 1 mm thick CdTe detector directly bump-bonded to a Timepix readout chip, developed by the Medipix2 collaboration (256 × 256 pixels, 55 µm pitch, 14.08 × 14.08 mm2 sensitive area). A MURA pattern coded aperture is used, allowing for background subtraction without the use of heavy shielding. Such system is then combined with a USB color camera. The output of each measurement is a semi-spherical image covering a FOV of 360 degrees horizontally and 80 degrees vertically, rendered in spherical coordinates (θ,φ). The geometrical shapes of the radiation-emitting objects are preserved by first registering and stitching the optical images captured by the prototype, and applying, subsequently, the same transformations to their corresponding radiation images. Panoramic gamma images generated by using the technique proposed in this paper are described and discussed, along with the main experimental results obtained in laboratories campaigns.A known disadvantage of the coded aperture imaging approach is its limited field-of-view (FOV), which often results insufficient when analysing complex dismantling scenes such as post-accidental scenarios, where multiple measurements are needed to fully characterize the scene. In order to overcome this limitation, a panoramic coded aperture γ-camera prototype has been developed. The system is based on a 1 mm thick CdTe detector directly bump-bonded to a Timepix readout chip, developed by the Medipix2 collaboration (256 × 256 pixels, 55 μm pitch, 14.08 × 14.08 mm2 sensitive area). A MURA pattern coded aperture is used, allowing for background subtraction without the use of heavy shielding. Such system is then combined with a USB color camera. The output of each measurement is a semi-spherical image covering a FOV of 360 degrees horizontally and 80 degrees vertically, rendered in spherical coordinates (θ,). The geometrical shapes of the radiation-emitting objects are preserved by first registering and stitching the optical images captured by the prototype, and applying, subsequently, the same transformations to their corresponding radiation images. Panoramic gamma images generated by using the technique proposed in this paper are described and discussed, along with the main experimental results obtained in laboratories campaigns.oai:inspirehep.net:16357512017
spellingShingle Nuclear Physics - Experiment
Paradiso, V
Amgarou, K
Lanaute, N Blanc De
Schoepff, V
Amoyal, G
Mahe, C
Beltramello, O
Liénard, E
A panoramic coded aperture gamma camera for radioactive hotspots localization
title A panoramic coded aperture gamma camera for radioactive hotspots localization
title_full A panoramic coded aperture gamma camera for radioactive hotspots localization
title_fullStr A panoramic coded aperture gamma camera for radioactive hotspots localization
title_full_unstemmed A panoramic coded aperture gamma camera for radioactive hotspots localization
title_short A panoramic coded aperture gamma camera for radioactive hotspots localization
title_sort panoramic coded aperture gamma camera for radioactive hotspots localization
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1088/1748-0221/12/11/P11010
http://cds.cern.ch/record/2301347
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