Cargando…

(123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel

PURPOSE: A robust method is required to standardise objective reporting of diagnostic (123)I-mIBG images in neuroblastoma. Prerequisites for an appropriate system are low inter- and intra-observer error and reproducibility across a broad disease spectrum. We present a new reporting method, developed...

Descripción completa

Detalles Bibliográficos
Autores principales: Lewington, V., Lambert, B., Poetschger, U., Sever, Z. Bar, Giammarile, F., McEwan, A. J. B., Castellani, Rita, Lynch, T., Shulkin, B., Drobics, M., Staudenherz, A., Ladenstein, R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5214990/
https://www.ncbi.nlm.nih.gov/pubmed/27663238
http://dx.doi.org/10.1007/s00259-016-3516-0
_version_ 1782491701847261184
author Lewington, V.
Lambert, B.
Poetschger, U.
Sever, Z. Bar
Giammarile, F.
McEwan, A. J. B.
Castellani, Rita
Lynch, T.
Shulkin, B.
Drobics, M.
Staudenherz, A.
Ladenstein, R.
author_facet Lewington, V.
Lambert, B.
Poetschger, U.
Sever, Z. Bar
Giammarile, F.
McEwan, A. J. B.
Castellani, Rita
Lynch, T.
Shulkin, B.
Drobics, M.
Staudenherz, A.
Ladenstein, R.
author_sort Lewington, V.
collection PubMed
description PURPOSE: A robust method is required to standardise objective reporting of diagnostic (123)I-mIBG images in neuroblastoma. Prerequisites for an appropriate system are low inter- and intra-observer error and reproducibility across a broad disease spectrum. We present a new reporting method, developed and tested for SIOPEN by an international expert panel. METHOD: Patterns of abnormal skeletal (123)I-mIBG uptake were defined and assigned numerical scores [0–6] based on disease extent within 12 body segments. Uptake intensity was excluded from the analysis. Data sets from 82 patients were scored independently by six experienced specialists as unblinded pairs (pre- and post-induction chemotherapy) and in random order as a blinded study. Response was defined as ≥50 % reduction in post induction score compared with baseline. RESULTS: In total, 1968 image sets were reviewed individually. Response rates of 88 % and 82 % were recorded for patients with baseline skeletal scores ≤23 and 24-48 respectively, compared with 44 % response in patients with skeletal scores >48 (p = 0.02). Reducing the number of segments or extension scale had a small but statistically negative impact upon the number of responses detected. Intraclass correlation coefficients [ICCs] calculated for the unblinded and blinded study were 0.95 at diagnosis and 0.98 and 0.99 post-induction chemotherapy, respectively. CONCLUSIONS: The SIOPEN mIBG score method is reproducible across the full spectrum of disease in high risk neuroblastoma. Numerical assessment of skeletal disease extent avoids subjective evaluation of uptake intensity. This robust approach provides a reliable means with which to examine the role of 123I mIBG scintigraphy as a prognostic indicator in neuroblastoma.
format Online
Article
Text
id pubmed-5214990
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-52149902017-01-24 (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel Lewington, V. Lambert, B. Poetschger, U. Sever, Z. Bar Giammarile, F. McEwan, A. J. B. Castellani, Rita Lynch, T. Shulkin, B. Drobics, M. Staudenherz, A. Ladenstein, R. Eur J Nucl Med Mol Imaging Original Article PURPOSE: A robust method is required to standardise objective reporting of diagnostic (123)I-mIBG images in neuroblastoma. Prerequisites for an appropriate system are low inter- and intra-observer error and reproducibility across a broad disease spectrum. We present a new reporting method, developed and tested for SIOPEN by an international expert panel. METHOD: Patterns of abnormal skeletal (123)I-mIBG uptake were defined and assigned numerical scores [0–6] based on disease extent within 12 body segments. Uptake intensity was excluded from the analysis. Data sets from 82 patients were scored independently by six experienced specialists as unblinded pairs (pre- and post-induction chemotherapy) and in random order as a blinded study. Response was defined as ≥50 % reduction in post induction score compared with baseline. RESULTS: In total, 1968 image sets were reviewed individually. Response rates of 88 % and 82 % were recorded for patients with baseline skeletal scores ≤23 and 24-48 respectively, compared with 44 % response in patients with skeletal scores >48 (p = 0.02). Reducing the number of segments or extension scale had a small but statistically negative impact upon the number of responses detected. Intraclass correlation coefficients [ICCs] calculated for the unblinded and blinded study were 0.95 at diagnosis and 0.98 and 0.99 post-induction chemotherapy, respectively. CONCLUSIONS: The SIOPEN mIBG score method is reproducible across the full spectrum of disease in high risk neuroblastoma. Numerical assessment of skeletal disease extent avoids subjective evaluation of uptake intensity. This robust approach provides a reliable means with which to examine the role of 123I mIBG scintigraphy as a prognostic indicator in neuroblastoma. Springer Berlin Heidelberg 2016-09-24 2017 /pmc/articles/PMC5214990/ /pubmed/27663238 http://dx.doi.org/10.1007/s00259-016-3516-0 Text en © The Author(s) 2016 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 Original Article
Lewington, V.
Lambert, B.
Poetschger, U.
Sever, Z. Bar
Giammarile, F.
McEwan, A. J. B.
Castellani, Rita
Lynch, T.
Shulkin, B.
Drobics, M.
Staudenherz, A.
Ladenstein, R.
(123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title_full (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title_fullStr (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title_full_unstemmed (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title_short (123)I-mIBG scintigraphy in neuroblastoma: development of a SIOPEN semi-quantitative reporting ,method by an international panel
title_sort (123)i-mibg scintigraphy in neuroblastoma: development of a siopen semi-quantitative reporting ,method by an international panel
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5214990/
https://www.ncbi.nlm.nih.gov/pubmed/27663238
http://dx.doi.org/10.1007/s00259-016-3516-0
work_keys_str_mv AT lewingtonv 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT lambertb 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT poetschgeru 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT severzbar 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT giammarilef 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT mcewanajb 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT castellanirita 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT lyncht 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT shulkinb 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT drobicsm 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT staudenherza 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel
AT ladensteinr 123imibgscintigraphyinneuroblastomadevelopmentofasiopensemiquantitativereportingmethodbyaninternationalpanel