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Assessment of metal implant induced artefacts using photon counting spectral CT

The aim is to perform qualitative and quantitative assessment of metal induced artefacts of small titanium biomaterials using photon counting spectral CT. The energy binning feature of some photon counting detectors enables the measured spectrum to be segmented into low, mid and high energy bins in...

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Autores principales: Amma, Maya Rajeswari, Butler, Anthony P H, Raja, Aamir Y, Bamford, Benjamin, Butler, Philip, Walker, E Peter, Matanaghi, Aysouda, Adebileje, Sikiru A, Anderson, Nigel, Anjomrouz, Marzieh, Asghariomabad, Fatemeh, Atharifard, Ali, Bell, Stephen T, Bheesette, Srinidhi, Chernoglazov, Alexander I, Dalefield, Tara, de Ruiter, Neils J A, Duncan, Neryda, Doesburg, Robert M N, Gieseg, Steven, Goulter, Brian P, Alexander, Steven D, Gurney, Sam, Healy, Joseph L, Hilton, Peter J, Dahal, Shishir, Carbonez, Pierre, Damet, Jerome, Chambers, Claire, Kanithi, Praveenkumar, Kirkbride, Tracy, Lansley, Stuart P, Lowe, Chiara, Mandalika, V B H, Marfo, Emmanuel, Moghiseh, Mahdieh, Palmer, David, Panta, Raj K, Prebble, Hannah M, Ramyar, Mohsen, Renaud, Peter, Schleich, Nanette, Searle, Emily, Shamshad, Muhammed, Sheeja, Jereena S, Uddin, Rayhan, Broeke, Lieza Vanden, S , Vivek V, Wijesooriya, Manoj, Walsh, Michael F, Baer, Kenzie, Tredinnick, Seamus, Woodfield, Tim
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1117/12.2531003
http://cds.cern.ch/record/2704704
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author Amma, Maya Rajeswari
Butler, Anthony P H
Raja, Aamir Y
Bamford, Benjamin
Butler, Philip
Walker, E Peter
Matanaghi, Aysouda
Adebileje, Sikiru A
Anderson, Nigel
Anjomrouz, Marzieh
Asghariomabad, Fatemeh
Atharifard, Ali
Bell, Stephen T
Bheesette, Srinidhi
Chernoglazov, Alexander I
Dalefield, Tara
de Ruiter, Neils J A
Duncan, Neryda
Doesburg, Robert M N
Gieseg, Steven
Goulter, Brian P
Alexander, Steven D
Gurney, Sam
Healy, Joseph L
Hilton, Peter J
Dahal, Shishir
Carbonez, Pierre
Damet, Jerome
Chambers, Claire
Kanithi, Praveenkumar
Kirkbride, Tracy
Lansley, Stuart P
Lowe, Chiara
Mandalika, V B H
Marfo, Emmanuel
Moghiseh, Mahdieh
Palmer, David
Panta, Raj K
Prebble, Hannah M
Ramyar, Mohsen
Renaud, Peter
Schleich, Nanette
Searle, Emily
Shamshad, Muhammed
Sheeja, Jereena S
Uddin, Rayhan
Broeke, Lieza Vanden
S , Vivek V
Wijesooriya, Manoj
Walsh, Michael F
Baer, Kenzie
Tredinnick, Seamus
Woodfield, Tim
author_facet Amma, Maya Rajeswari
Butler, Anthony P H
Raja, Aamir Y
Bamford, Benjamin
Butler, Philip
Walker, E Peter
Matanaghi, Aysouda
Adebileje, Sikiru A
Anderson, Nigel
Anjomrouz, Marzieh
Asghariomabad, Fatemeh
Atharifard, Ali
Bell, Stephen T
Bheesette, Srinidhi
Chernoglazov, Alexander I
Dalefield, Tara
de Ruiter, Neils J A
Duncan, Neryda
Doesburg, Robert M N
Gieseg, Steven
Goulter, Brian P
Alexander, Steven D
Gurney, Sam
Healy, Joseph L
Hilton, Peter J
Dahal, Shishir
Carbonez, Pierre
Damet, Jerome
Chambers, Claire
Kanithi, Praveenkumar
Kirkbride, Tracy
Lansley, Stuart P
Lowe, Chiara
Mandalika, V B H
Marfo, Emmanuel
Moghiseh, Mahdieh
Palmer, David
Panta, Raj K
Prebble, Hannah M
Ramyar, Mohsen
Renaud, Peter
Schleich, Nanette
Searle, Emily
Shamshad, Muhammed
Sheeja, Jereena S
Uddin, Rayhan
Broeke, Lieza Vanden
S , Vivek V
Wijesooriya, Manoj
Walsh, Michael F
Baer, Kenzie
Tredinnick, Seamus
Woodfield, Tim
author_sort Amma, Maya Rajeswari
collection CERN
description The aim is to perform qualitative and quantitative assessment of metal induced artefacts of small titanium biomaterials using photon counting spectral CT. The energy binning feature of some photon counting detectors enables the measured spectrum to be segmented into low, mid and high energy bins in a single exposure. In this study, solid and porous titanium implants submerged in different concentrations of calcium solution were scanned using the small animal MARS photon counting spectral scanner equipped with a polyenergetic X-ray source operated at 118 kVp. Five narrow energy bins (7-45 keV, 45-55 keV, 55-65 keV, 65-75 keV and 75-118 keV) in charge summing mode were utilised. Images were evaluated in the energy domain (spectroscopic images) as well as material domain (material segmentation and quantification). Results show that calcium solution outside titanium implants can be accurately quantified. However, there was an overestimation of calcium within the pores of the scaffold. This information is critical as it can severely limit the assessment of bone ingrowth within metal structures. The energy binning feature of the spectral scanner was exploited and a correction factor, based on calcium concentrations adjacent to and within metal structures, was used to minimise the variation. Qualitative and quantitative evaluation of bone density and morphology with and without titanium screw shows that photon counting spectral CT can assess bone-metal interface with less pronounced artefacts. Quantification of bone growth in and around the implants would help in orthopaedic applications to determine the effectiveness of implant treatment and assessment of fracture healing.
id oai-inspirehep.net-1769161
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17691612020-01-10T08:51:34Zdoi:10.1117/12.2531003http://cds.cern.ch/record/2704704engAmma, Maya RajeswariButler, Anthony P HRaja, Aamir YBamford, BenjaminButler, PhilipWalker, E PeterMatanaghi, AysoudaAdebileje, Sikiru AAnderson, NigelAnjomrouz, MarziehAsghariomabad, FatemehAtharifard, AliBell, Stephen TBheesette, SrinidhiChernoglazov, Alexander IDalefield, Tarade Ruiter, Neils J ADuncan, NerydaDoesburg, Robert M NGieseg, StevenGoulter, Brian PAlexander, Steven DGurney, SamHealy, Joseph LHilton, Peter JDahal, ShishirCarbonez, PierreDamet, JeromeChambers, ClaireKanithi, PraveenkumarKirkbride, TracyLansley, Stuart PLowe, ChiaraMandalika, V B HMarfo, EmmanuelMoghiseh, MahdiehPalmer, DavidPanta, Raj KPrebble, Hannah MRamyar, MohsenRenaud, PeterSchleich, NanetteSearle, EmilyShamshad, MuhammedSheeja, Jereena SUddin, RayhanBroeke, Lieza VandenS , Vivek VWijesooriya, ManojWalsh, Michael FBaer, KenzieTredinnick, SeamusWoodfield, TimAssessment of metal implant induced artefacts using photon counting spectral CTDetectors and Experimental TechniquesThe aim is to perform qualitative and quantitative assessment of metal induced artefacts of small titanium biomaterials using photon counting spectral CT. The energy binning feature of some photon counting detectors enables the measured spectrum to be segmented into low, mid and high energy bins in a single exposure. In this study, solid and porous titanium implants submerged in different concentrations of calcium solution were scanned using the small animal MARS photon counting spectral scanner equipped with a polyenergetic X-ray source operated at 118 kVp. Five narrow energy bins (7-45 keV, 45-55 keV, 55-65 keV, 65-75 keV and 75-118 keV) in charge summing mode were utilised. Images were evaluated in the energy domain (spectroscopic images) as well as material domain (material segmentation and quantification). Results show that calcium solution outside titanium implants can be accurately quantified. However, there was an overestimation of calcium within the pores of the scaffold. This information is critical as it can severely limit the assessment of bone ingrowth within metal structures. The energy binning feature of the spectral scanner was exploited and a correction factor, based on calcium concentrations adjacent to and within metal structures, was used to minimise the variation. Qualitative and quantitative evaluation of bone density and morphology with and without titanium screw shows that photon counting spectral CT can assess bone-metal interface with less pronounced artefacts. Quantification of bone growth in and around the implants would help in orthopaedic applications to determine the effectiveness of implant treatment and assessment of fracture healing.oai:inspirehep.net:17691612019
spellingShingle Detectors and Experimental Techniques
Amma, Maya Rajeswari
Butler, Anthony P H
Raja, Aamir Y
Bamford, Benjamin
Butler, Philip
Walker, E Peter
Matanaghi, Aysouda
Adebileje, Sikiru A
Anderson, Nigel
Anjomrouz, Marzieh
Asghariomabad, Fatemeh
Atharifard, Ali
Bell, Stephen T
Bheesette, Srinidhi
Chernoglazov, Alexander I
Dalefield, Tara
de Ruiter, Neils J A
Duncan, Neryda
Doesburg, Robert M N
Gieseg, Steven
Goulter, Brian P
Alexander, Steven D
Gurney, Sam
Healy, Joseph L
Hilton, Peter J
Dahal, Shishir
Carbonez, Pierre
Damet, Jerome
Chambers, Claire
Kanithi, Praveenkumar
Kirkbride, Tracy
Lansley, Stuart P
Lowe, Chiara
Mandalika, V B H
Marfo, Emmanuel
Moghiseh, Mahdieh
Palmer, David
Panta, Raj K
Prebble, Hannah M
Ramyar, Mohsen
Renaud, Peter
Schleich, Nanette
Searle, Emily
Shamshad, Muhammed
Sheeja, Jereena S
Uddin, Rayhan
Broeke, Lieza Vanden
S , Vivek V
Wijesooriya, Manoj
Walsh, Michael F
Baer, Kenzie
Tredinnick, Seamus
Woodfield, Tim
Assessment of metal implant induced artefacts using photon counting spectral CT
title Assessment of metal implant induced artefacts using photon counting spectral CT
title_full Assessment of metal implant induced artefacts using photon counting spectral CT
title_fullStr Assessment of metal implant induced artefacts using photon counting spectral CT
title_full_unstemmed Assessment of metal implant induced artefacts using photon counting spectral CT
title_short Assessment of metal implant induced artefacts using photon counting spectral CT
title_sort assessment of metal implant induced artefacts using photon counting spectral ct
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1117/12.2531003
http://cds.cern.ch/record/2704704
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