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A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma

The diagnosis, prognosis, and management of patients with gliomas are largely dictated by the pathological analysis of tissue biopsied from a selected region within the lesion. However, the heterogeneous and infiltrative nature of gliomas make it difficult to identify the optimal region for biopsy w...

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Autores principales: Cordova, J. Scott, Gurbani, Saumya S., Olson, Jeffrey J., Liang, Zhongxing, Cooper, Lee A. D., Shu, Hui-Kuo G., Schreibmann, Eduard, Neill, Stewart G., Hadjipanayis, Constantinos G., Holder, Chad A., Shim, Hyunsuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Grapho Publications, LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4968944/
https://www.ncbi.nlm.nih.gov/pubmed/27489883
http://dx.doi.org/10.18383/j.tom.2016.00136
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author Cordova, J. Scott
Gurbani, Saumya S.
Olson, Jeffrey J.
Liang, Zhongxing
Cooper, Lee A. D.
Shu, Hui-Kuo G.
Schreibmann, Eduard
Neill, Stewart G.
Hadjipanayis, Constantinos G.
Holder, Chad A.
Shim, Hyunsuk
author_facet Cordova, J. Scott
Gurbani, Saumya S.
Olson, Jeffrey J.
Liang, Zhongxing
Cooper, Lee A. D.
Shu, Hui-Kuo G.
Schreibmann, Eduard
Neill, Stewart G.
Hadjipanayis, Constantinos G.
Holder, Chad A.
Shim, Hyunsuk
author_sort Cordova, J. Scott
collection PubMed
description The diagnosis, prognosis, and management of patients with gliomas are largely dictated by the pathological analysis of tissue biopsied from a selected region within the lesion. However, the heterogeneous and infiltrative nature of gliomas make it difficult to identify the optimal region for biopsy with conventional magnetic resonance imaging (MRI). This is particularly true for low-grade gliomas, which are often nonenhancing tumors. To improve the management of patients with such tumors, neuro-oncology requires an imaging modality that can specifically identify a tumor's most anaplastic/aggressive region(s) for biopsy targeting. The addition of metabolic mapping using spectroscopic MRI (sMRI) to supplement conventional MRI could improve biopsy targeting and, ultimately, diagnostic accuracy. Here, we describe a pipeline for the integration of state-of-the-art, high-resolution, whole-brain 3-dimensional sMRI maps into a stereotactic neuronavigation system for guiding biopsies in gliomas with nonenhancing components. We also outline a machine-learning method for automated histological analysis that generates normalized, quantitative metrics describing tumor infiltration in immunohistochemically stained tissue specimens. As a proof of concept, we describe the combination of these 2 techniques in a small cohort of patients with grade 3 glioma. With this work, we aim to present a systematic pipeline to stimulate histopathological image validation of advanced MRI techniques, such as sMRI.
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spelling pubmed-49689442016-08-01 A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma Cordova, J. Scott Gurbani, Saumya S. Olson, Jeffrey J. Liang, Zhongxing Cooper, Lee A. D. Shu, Hui-Kuo G. Schreibmann, Eduard Neill, Stewart G. Hadjipanayis, Constantinos G. Holder, Chad A. Shim, Hyunsuk Tomography Research Articles The diagnosis, prognosis, and management of patients with gliomas are largely dictated by the pathological analysis of tissue biopsied from a selected region within the lesion. However, the heterogeneous and infiltrative nature of gliomas make it difficult to identify the optimal region for biopsy with conventional magnetic resonance imaging (MRI). This is particularly true for low-grade gliomas, which are often nonenhancing tumors. To improve the management of patients with such tumors, neuro-oncology requires an imaging modality that can specifically identify a tumor's most anaplastic/aggressive region(s) for biopsy targeting. The addition of metabolic mapping using spectroscopic MRI (sMRI) to supplement conventional MRI could improve biopsy targeting and, ultimately, diagnostic accuracy. Here, we describe a pipeline for the integration of state-of-the-art, high-resolution, whole-brain 3-dimensional sMRI maps into a stereotactic neuronavigation system for guiding biopsies in gliomas with nonenhancing components. We also outline a machine-learning method for automated histological analysis that generates normalized, quantitative metrics describing tumor infiltration in immunohistochemically stained tissue specimens. As a proof of concept, we describe the combination of these 2 techniques in a small cohort of patients with grade 3 glioma. With this work, we aim to present a systematic pipeline to stimulate histopathological image validation of advanced MRI techniques, such as sMRI. Grapho Publications, LLC 2016-06 /pmc/articles/PMC4968944/ /pubmed/27489883 http://dx.doi.org/10.18383/j.tom.2016.00136 Text en © 2016 The Authors. Published by Grapho Publications, LLC http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Articles
Cordova, J. Scott
Gurbani, Saumya S.
Olson, Jeffrey J.
Liang, Zhongxing
Cooper, Lee A. D.
Shu, Hui-Kuo G.
Schreibmann, Eduard
Neill, Stewart G.
Hadjipanayis, Constantinos G.
Holder, Chad A.
Shim, Hyunsuk
A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title_full A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title_fullStr A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title_full_unstemmed A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title_short A Systematic Pipeline for the Objective Comparison of Whole-Brain Spectroscopic MRI with Histology in Biopsy Specimens from Grade 3 Glioma
title_sort systematic pipeline for the objective comparison of whole-brain spectroscopic mri with histology in biopsy specimens from grade 3 glioma
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4968944/
https://www.ncbi.nlm.nih.gov/pubmed/27489883
http://dx.doi.org/10.18383/j.tom.2016.00136
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