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The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions

OBJECTIVES: To assess the effect of iodine attenuation on pulmonary nodule volumetry using virtual non-contrast (VNC) and mono-energetic reconstructions. METHODS: A consecutive series of patients who underwent a contrast-enhanced chest CT scan were included. Images were acquired on a novel dual-laye...

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Autores principales: den Harder, A. M., Bangert, F., van Hamersvelt, R. W., Leiner, T., Milles, Julien, Schilham, A. M. R., Willemink, M. J., de Jong, P. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5674131/
https://www.ncbi.nlm.nih.gov/pubmed/28677062
http://dx.doi.org/10.1007/s00330-017-4938-1
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author den Harder, A. M.
Bangert, F.
van Hamersvelt, R. W.
Leiner, T.
Milles, Julien
Schilham, A. M. R.
Willemink, M. J.
de Jong, P. A.
author_facet den Harder, A. M.
Bangert, F.
van Hamersvelt, R. W.
Leiner, T.
Milles, Julien
Schilham, A. M. R.
Willemink, M. J.
de Jong, P. A.
author_sort den Harder, A. M.
collection PubMed
description OBJECTIVES: To assess the effect of iodine attenuation on pulmonary nodule volumetry using virtual non-contrast (VNC) and mono-energetic reconstructions. METHODS: A consecutive series of patients who underwent a contrast-enhanced chest CT scan were included. Images were acquired on a novel dual-layer spectral CT system. Conventional reconstructions as well as VNC and mono-energetic images at different keV levels were used for nodule volumetry. RESULTS: Twenty-four patients with a total of 63 nodules were included. Conventional reconstructions showed a median (interquartile range) volume and diameter of 174 (87 – 253) mm(3) and 6.9 (5.4 – 9.9) mm, respectively. VNC reconstructions resulted in a significant volume reduction of 5.5% (2.6 – 11.2%; p<0.001). Mono-energetic reconstructions showed a correlation between nodule attenuation and nodule volume (Spearman correlation 0.77, (0.49 – 0.94)). Lowering the keV resulted in increased volumes while higher keV levels resulted in decreased pulmonary nodule volumes compared to conventional CT. CONCLUSIONS: Novel dual-layer spectral CT offers the possibility to reconstruct VNC and mono-energetic images. Those reconstructions show that higher pulmonary nodule attenuation results in larger nodule volumes. This may explain the reported underestimation in nodule volume on non-contrast enhanced compared to contrast-enhanced acquisitions. KEY POINTS: • Pulmonary nodule volumes were measured on virtual non-contrast and mono-energetic reconstructions • Mono-energetic reconstructions showed that higher attenuation results in larger volumes • This may explain the reported nodule volume underestimation on non-contrast enhanced CT • Mostly metastatic pulmonary nodules were evaluated, results might differ for benign nodules
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spelling pubmed-56741312017-11-20 The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions den Harder, A. M. Bangert, F. van Hamersvelt, R. W. Leiner, T. Milles, Julien Schilham, A. M. R. Willemink, M. J. de Jong, P. A. Eur Radiol Computed Tomography OBJECTIVES: To assess the effect of iodine attenuation on pulmonary nodule volumetry using virtual non-contrast (VNC) and mono-energetic reconstructions. METHODS: A consecutive series of patients who underwent a contrast-enhanced chest CT scan were included. Images were acquired on a novel dual-layer spectral CT system. Conventional reconstructions as well as VNC and mono-energetic images at different keV levels were used for nodule volumetry. RESULTS: Twenty-four patients with a total of 63 nodules were included. Conventional reconstructions showed a median (interquartile range) volume and diameter of 174 (87 – 253) mm(3) and 6.9 (5.4 – 9.9) mm, respectively. VNC reconstructions resulted in a significant volume reduction of 5.5% (2.6 – 11.2%; p<0.001). Mono-energetic reconstructions showed a correlation between nodule attenuation and nodule volume (Spearman correlation 0.77, (0.49 – 0.94)). Lowering the keV resulted in increased volumes while higher keV levels resulted in decreased pulmonary nodule volumes compared to conventional CT. CONCLUSIONS: Novel dual-layer spectral CT offers the possibility to reconstruct VNC and mono-energetic images. Those reconstructions show that higher pulmonary nodule attenuation results in larger nodule volumes. This may explain the reported underestimation in nodule volume on non-contrast enhanced compared to contrast-enhanced acquisitions. KEY POINTS: • Pulmonary nodule volumes were measured on virtual non-contrast and mono-energetic reconstructions • Mono-energetic reconstructions showed that higher attenuation results in larger volumes • This may explain the reported nodule volume underestimation on non-contrast enhanced CT • Mostly metastatic pulmonary nodules were evaluated, results might differ for benign nodules Springer Berlin Heidelberg 2017-07-04 2017 /pmc/articles/PMC5674131/ /pubmed/28677062 http://dx.doi.org/10.1007/s00330-017-4938-1 Text en © The Author(s) 2017 Open Access This 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 Computed Tomography
den Harder, A. M.
Bangert, F.
van Hamersvelt, R. W.
Leiner, T.
Milles, Julien
Schilham, A. M. R.
Willemink, M. J.
de Jong, P. A.
The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title_full The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title_fullStr The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title_full_unstemmed The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title_short The Effects of Iodine Attenuation on Pulmonary Nodule Volumetry using Novel Dual-Layer Computed Tomography Reconstructions
title_sort effects of iodine attenuation on pulmonary nodule volumetry using novel dual-layer computed tomography reconstructions
topic Computed Tomography
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5674131/
https://www.ncbi.nlm.nih.gov/pubmed/28677062
http://dx.doi.org/10.1007/s00330-017-4938-1
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