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Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets

BACKGROUND: An MRI is potentially hazardous for patients with retained ferromagnetic bullets. Recent studies have aimed to develop dual-energy computed tomography (DECT) as a screening tool for recognising highly ferromagnetic bullets. Inconsistent findings have been ascribed to inherent CT technolo...

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Autores principales: van der Merwe, Francois A., Loggenberg, Eugene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AOSIS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10696535/
http://dx.doi.org/10.4102/sajr.v27i1.2701
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author van der Merwe, Francois A.
Loggenberg, Eugene
author_facet van der Merwe, Francois A.
Loggenberg, Eugene
author_sort van der Merwe, Francois A.
collection PubMed
description BACKGROUND: An MRI is potentially hazardous for patients with retained ferromagnetic bullets. Recent studies have aimed to develop dual-energy computed tomography (DECT) as a screening tool for recognising highly ferromagnetic bullets. Inconsistent findings have been ascribed to inherent CT technology differences. Previous research demonstrated significant Hounsfield unit (HU) measurement variation among single-source CT machines. OBJECTIVES: This study investigated the theoretical dual-energy index (DEI) variation between DECT machines when evaluating the potential ferromagnetic properties within the same sample of ex vivo bullets and metal phantoms. METHOD: An experimental ex vivo study was conducted on eight metal phantoms and 10 unused bullets individually positioned in the same Perspex head phantom and scanned on two DECT machines. Two senior radiology registrars independently recorded the HU readings, and DEI values were calculated. Statistical analysis was performed using non-parametric methods for paired data, namely the Signed Rank Test. The DEI values based on mean HU readings between the DECT machines were compared. RESULTS: Inter- and intra-reader agreement was not statistically significant. The metal phantoms had poor interscanner agreement, with an overlap of the ferromagnetic and non-ferromagnetic ranges. The bullets had good interscanner agreement, with a similar ferromagnetic to non-ferromagnetic relationship. CONCLUSION: The use of DEI values negates the previous assumption that significant interscanner variability exists among different DECT technologies while assessing highly attenuative ex vivo bullets. CONTRIBUTION: This investigation demonstrated that even though HU readings may be variable, the implementation of the DEI equation translates this into comparable values with good interscanner agreement.
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spelling pubmed-106965352023-12-06 Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets van der Merwe, Francois A. Loggenberg, Eugene SA J Radiol Original Research BACKGROUND: An MRI is potentially hazardous for patients with retained ferromagnetic bullets. Recent studies have aimed to develop dual-energy computed tomography (DECT) as a screening tool for recognising highly ferromagnetic bullets. Inconsistent findings have been ascribed to inherent CT technology differences. Previous research demonstrated significant Hounsfield unit (HU) measurement variation among single-source CT machines. OBJECTIVES: This study investigated the theoretical dual-energy index (DEI) variation between DECT machines when evaluating the potential ferromagnetic properties within the same sample of ex vivo bullets and metal phantoms. METHOD: An experimental ex vivo study was conducted on eight metal phantoms and 10 unused bullets individually positioned in the same Perspex head phantom and scanned on two DECT machines. Two senior radiology registrars independently recorded the HU readings, and DEI values were calculated. Statistical analysis was performed using non-parametric methods for paired data, namely the Signed Rank Test. The DEI values based on mean HU readings between the DECT machines were compared. RESULTS: Inter- and intra-reader agreement was not statistically significant. The metal phantoms had poor interscanner agreement, with an overlap of the ferromagnetic and non-ferromagnetic ranges. The bullets had good interscanner agreement, with a similar ferromagnetic to non-ferromagnetic relationship. CONCLUSION: The use of DEI values negates the previous assumption that significant interscanner variability exists among different DECT technologies while assessing highly attenuative ex vivo bullets. CONTRIBUTION: This investigation demonstrated that even though HU readings may be variable, the implementation of the DEI equation translates this into comparable values with good interscanner agreement. AOSIS 2023-07-27 /pmc/articles/PMC10696535/ http://dx.doi.org/10.4102/sajr.v27i1.2701 Text en © 2023. The Authors https://creativecommons.org/licenses/by/4.0/Licensee: AOSIS. This work is licensed under the Creative Commons Attribution License.
spellingShingle Original Research
van der Merwe, Francois A.
Loggenberg, Eugene
Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title_full Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title_fullStr Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title_full_unstemmed Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title_short Dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
title_sort dual-energy index variation when evaluating the potential ferromagnetism of ex vivo bullets
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10696535/
http://dx.doi.org/10.4102/sajr.v27i1.2701
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