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AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments

In applications involving large tissue specimens that have been sectioned into smaller tissue fragments, manual reconstruction of a “pseudo whole-mount” histological section (PWMHS) can facilitate (a) pathological disease annotation, and (b) image registration and correlation with radiological image...

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Autores principales: Penzias, Gregory, Janowczyk, Andrew, Singanamalli, Asha, Rusu, Mirabela, Shih, Natalie, Feldman, Michael, Stricker, Phillip D., Delprado, Warick, Tiwari, Sarita, Böhm, Maret, Haynes, Anne-Maree, Ponsky, Lee, Viswanath, Satish, Madabhushi, Anant
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4960603/
https://www.ncbi.nlm.nih.gov/pubmed/27457670
http://dx.doi.org/10.1038/srep29906
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author Penzias, Gregory
Janowczyk, Andrew
Singanamalli, Asha
Rusu, Mirabela
Shih, Natalie
Feldman, Michael
Stricker, Phillip D.
Delprado, Warick
Tiwari, Sarita
Böhm, Maret
Haynes, Anne-Maree
Ponsky, Lee
Viswanath, Satish
Madabhushi, Anant
author_facet Penzias, Gregory
Janowczyk, Andrew
Singanamalli, Asha
Rusu, Mirabela
Shih, Natalie
Feldman, Michael
Stricker, Phillip D.
Delprado, Warick
Tiwari, Sarita
Böhm, Maret
Haynes, Anne-Maree
Ponsky, Lee
Viswanath, Satish
Madabhushi, Anant
author_sort Penzias, Gregory
collection PubMed
description In applications involving large tissue specimens that have been sectioned into smaller tissue fragments, manual reconstruction of a “pseudo whole-mount” histological section (PWMHS) can facilitate (a) pathological disease annotation, and (b) image registration and correlation with radiological images. We have previously presented a program called HistoStitcher, which allows for more efficient manual reconstruction than general purpose image editing tools (such as Photoshop). However HistoStitcher is still manual and hence can be laborious and subjective, especially when doing large cohort studies. In this work we present AutoStitcher, a novel automated algorithm for reconstructing PWMHSs from digitized tissue fragments. AutoStitcher reconstructs (“stitches”) a PWMHS from a set of 4 fragments by optimizing a novel cost function that is domain-inspired to ensure (i) alignment of similar tissue regions, and (ii) contiguity of the prostate boundary. The algorithm achieves computational efficiency by performing reconstruction in a multi-resolution hierarchy. Automated PWMHS reconstruction results (via AutoStitcher) were quantitatively and qualitatively compared to manual reconstructions obtained via HistoStitcher for 113 prostate pathology sections. Distances between corresponding fiducials placed on each of the automated and manual reconstruction results were between 2.7%–3.2%, reflecting their excellent visual similarity.
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spelling pubmed-49606032017-01-27 AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments Penzias, Gregory Janowczyk, Andrew Singanamalli, Asha Rusu, Mirabela Shih, Natalie Feldman, Michael Stricker, Phillip D. Delprado, Warick Tiwari, Sarita Böhm, Maret Haynes, Anne-Maree Ponsky, Lee Viswanath, Satish Madabhushi, Anant Sci Rep Article In applications involving large tissue specimens that have been sectioned into smaller tissue fragments, manual reconstruction of a “pseudo whole-mount” histological section (PWMHS) can facilitate (a) pathological disease annotation, and (b) image registration and correlation with radiological images. We have previously presented a program called HistoStitcher, which allows for more efficient manual reconstruction than general purpose image editing tools (such as Photoshop). However HistoStitcher is still manual and hence can be laborious and subjective, especially when doing large cohort studies. In this work we present AutoStitcher, a novel automated algorithm for reconstructing PWMHSs from digitized tissue fragments. AutoStitcher reconstructs (“stitches”) a PWMHS from a set of 4 fragments by optimizing a novel cost function that is domain-inspired to ensure (i) alignment of similar tissue regions, and (ii) contiguity of the prostate boundary. The algorithm achieves computational efficiency by performing reconstruction in a multi-resolution hierarchy. Automated PWMHS reconstruction results (via AutoStitcher) were quantitatively and qualitatively compared to manual reconstructions obtained via HistoStitcher for 113 prostate pathology sections. Distances between corresponding fiducials placed on each of the automated and manual reconstruction results were between 2.7%–3.2%, reflecting their excellent visual similarity. Nature Publishing Group 2016-07-26 /pmc/articles/PMC4960603/ /pubmed/27457670 http://dx.doi.org/10.1038/srep29906 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Penzias, Gregory
Janowczyk, Andrew
Singanamalli, Asha
Rusu, Mirabela
Shih, Natalie
Feldman, Michael
Stricker, Phillip D.
Delprado, Warick
Tiwari, Sarita
Böhm, Maret
Haynes, Anne-Maree
Ponsky, Lee
Viswanath, Satish
Madabhushi, Anant
AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title_full AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title_fullStr AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title_full_unstemmed AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title_short AutoStitcher: An Automated Program for Efficient and Robust Reconstruction of Digitized Whole Histological Sections from Tissue Fragments
title_sort autostitcher: an automated program for efficient and robust reconstruction of digitized whole histological sections from tissue fragments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4960603/
https://www.ncbi.nlm.nih.gov/pubmed/27457670
http://dx.doi.org/10.1038/srep29906
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