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CT-Based Attenuation Correction in I-123-Ioflupane SPECT

PURPOSE: Attenuation correction (AC) based on low-dose computed tomography (CT) could be more accurate in brain single-photon emission computed tomography (SPECT) than the widely used Chang method, and, therefore, has the potential to improve both semi-quantitative analysis and visual image interpre...

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Autores principales: Lange, Catharina, Seese, Anita, Schwarzenböck, Sarah, Steinhoff, Karen, Umland-Seidler, Bert, Krause, Bernd J., Brenner, Winfried, Sabri, Osama, Kurth, Jens, Hesse, Swen, Buchert, Ralph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182457/
https://www.ncbi.nlm.nih.gov/pubmed/25268228
http://dx.doi.org/10.1371/journal.pone.0108328
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author Lange, Catharina
Seese, Anita
Schwarzenböck, Sarah
Steinhoff, Karen
Umland-Seidler, Bert
Krause, Bernd J.
Brenner, Winfried
Sabri, Osama
Kurth, Jens
Hesse, Swen
Buchert, Ralph
author_facet Lange, Catharina
Seese, Anita
Schwarzenböck, Sarah
Steinhoff, Karen
Umland-Seidler, Bert
Krause, Bernd J.
Brenner, Winfried
Sabri, Osama
Kurth, Jens
Hesse, Swen
Buchert, Ralph
author_sort Lange, Catharina
collection PubMed
description PURPOSE: Attenuation correction (AC) based on low-dose computed tomography (CT) could be more accurate in brain single-photon emission computed tomography (SPECT) than the widely used Chang method, and, therefore, has the potential to improve both semi-quantitative analysis and visual image interpretation. The present study evaluated CT-based AC for dopamine transporter SPECT with I-123-ioflupane. MATERIALS AND METHODS: Sixty-two consecutive patients in whom I-123-ioflupane SPECT including low-dose CT had been performed were recruited retrospectively at 3 centres. For each patient, 3 different SPECT images were reconstructed: without AC, with Chang AC and with CT-based AC. Distribution volume ratio (DVR) images were obtained by scaling voxel intensities using the whole brain without striata as reference. For assessing the impact of AC on semi-quantitative analysis, specific-to-background ratios (SBR) in caudate and putamen were obtained by fully automated SPM8-based region of interest (ROI) analysis and tested for their diagnostic power using receiver-operator-characteristic (ROC) analysis. For assessing the impact of AC on visual image reading, screenshots of stereotactically normalized DVR images presented in randomized order were interpreted independently by two raters at each centre. RESULTS: CT-based AC resulted in intermediate SBRs about half way between no AC and Chang. Maximum area under the ROC curve was achieved by the putamen SBR, with negligible impact of AC (0.924, 0.935 and 0.938 for no, CT-based and Chang AC). Diagnostic accuracy of visual interpretation also did not depend on AC. CONCLUSIONS: The impact of CT-based versus Chang AC on the interpretation of I-123-ioflupane SPECT is negligible. Therefore, CT-based AC cannot be recommended for routine use in clinical patient care, not least because of the additional radiation exposure.
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spelling pubmed-41824572014-10-07 CT-Based Attenuation Correction in I-123-Ioflupane SPECT Lange, Catharina Seese, Anita Schwarzenböck, Sarah Steinhoff, Karen Umland-Seidler, Bert Krause, Bernd J. Brenner, Winfried Sabri, Osama Kurth, Jens Hesse, Swen Buchert, Ralph PLoS One Research Article PURPOSE: Attenuation correction (AC) based on low-dose computed tomography (CT) could be more accurate in brain single-photon emission computed tomography (SPECT) than the widely used Chang method, and, therefore, has the potential to improve both semi-quantitative analysis and visual image interpretation. The present study evaluated CT-based AC for dopamine transporter SPECT with I-123-ioflupane. MATERIALS AND METHODS: Sixty-two consecutive patients in whom I-123-ioflupane SPECT including low-dose CT had been performed were recruited retrospectively at 3 centres. For each patient, 3 different SPECT images were reconstructed: without AC, with Chang AC and with CT-based AC. Distribution volume ratio (DVR) images were obtained by scaling voxel intensities using the whole brain without striata as reference. For assessing the impact of AC on semi-quantitative analysis, specific-to-background ratios (SBR) in caudate and putamen were obtained by fully automated SPM8-based region of interest (ROI) analysis and tested for their diagnostic power using receiver-operator-characteristic (ROC) analysis. For assessing the impact of AC on visual image reading, screenshots of stereotactically normalized DVR images presented in randomized order were interpreted independently by two raters at each centre. RESULTS: CT-based AC resulted in intermediate SBRs about half way between no AC and Chang. Maximum area under the ROC curve was achieved by the putamen SBR, with negligible impact of AC (0.924, 0.935 and 0.938 for no, CT-based and Chang AC). Diagnostic accuracy of visual interpretation also did not depend on AC. CONCLUSIONS: The impact of CT-based versus Chang AC on the interpretation of I-123-ioflupane SPECT is negligible. Therefore, CT-based AC cannot be recommended for routine use in clinical patient care, not least because of the additional radiation exposure. Public Library of Science 2014-09-30 /pmc/articles/PMC4182457/ /pubmed/25268228 http://dx.doi.org/10.1371/journal.pone.0108328 Text en © 2014 Lange et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lange, Catharina
Seese, Anita
Schwarzenböck, Sarah
Steinhoff, Karen
Umland-Seidler, Bert
Krause, Bernd J.
Brenner, Winfried
Sabri, Osama
Kurth, Jens
Hesse, Swen
Buchert, Ralph
CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title_full CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title_fullStr CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title_full_unstemmed CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title_short CT-Based Attenuation Correction in I-123-Ioflupane SPECT
title_sort ct-based attenuation correction in i-123-ioflupane spect
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182457/
https://www.ncbi.nlm.nih.gov/pubmed/25268228
http://dx.doi.org/10.1371/journal.pone.0108328
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