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PoreScript: Semi-automated pore size algorithm for scaffold characterization

The scaffold pore size influences many critical physical aspects of tissue engineering, including tissue infiltration, biodegradation rate, and mechanical properties. Manual measurements of pore sizes from scanning electron micrographs using ImageJ/FIJI are commonly used to characterize scaffolds, b...

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Detalles Bibliográficos
Autores principales: Jenkins, Dana, Salhadar, Karim, Ashby, Grant, Mishra, Anita, Cheshire, Joy, Beltran, Felipe, Grunlan, Melissa, Andrieux, Sébastien, Stubenrauch, Cosima, Cosgriff-Hernandez, Elizabeth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8843970/
https://www.ncbi.nlm.nih.gov/pubmed/35224287
http://dx.doi.org/10.1016/j.bioactmat.2021.11.006
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author Jenkins, Dana
Salhadar, Karim
Ashby, Grant
Mishra, Anita
Cheshire, Joy
Beltran, Felipe
Grunlan, Melissa
Andrieux, Sébastien
Stubenrauch, Cosima
Cosgriff-Hernandez, Elizabeth
author_facet Jenkins, Dana
Salhadar, Karim
Ashby, Grant
Mishra, Anita
Cheshire, Joy
Beltran, Felipe
Grunlan, Melissa
Andrieux, Sébastien
Stubenrauch, Cosima
Cosgriff-Hernandez, Elizabeth
author_sort Jenkins, Dana
collection PubMed
description The scaffold pore size influences many critical physical aspects of tissue engineering, including tissue infiltration, biodegradation rate, and mechanical properties. Manual measurements of pore sizes from scanning electron micrographs using ImageJ/FIJI are commonly used to characterize scaffolds, but these methods are both time-consuming and subject to user bias. Current semi-automated analysis tools are limited by a lack of accessibility or limited sample size in their verification process. The work here describes the development of a new MATLAB algorithm, PoreScript, to address these limitations. The algorithm was verified using three common scaffold fabrication methods (e.g., salt leaching, gas foaming, emulsion templating) with varying pore sizes and shapes to demonstrate the versatility of this new tool. Our results demonstrate that the pore size characterization using PoreScript is comparable to manual pore size measurements. The PoreScript algorithm was further evaluated to determine the effect of user-input and image parameters (relative image magnification, pixel intensity threshold, and pore structure). Overall, this work validates the accuracy of the PoreScript algorithm across several fabrication methods and provides user-guidance for semi-automated image analysis and increased throughput of scaffold characterization.
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spelling pubmed-88439702022-02-25 PoreScript: Semi-automated pore size algorithm for scaffold characterization Jenkins, Dana Salhadar, Karim Ashby, Grant Mishra, Anita Cheshire, Joy Beltran, Felipe Grunlan, Melissa Andrieux, Sébastien Stubenrauch, Cosima Cosgriff-Hernandez, Elizabeth Bioact Mater Article The scaffold pore size influences many critical physical aspects of tissue engineering, including tissue infiltration, biodegradation rate, and mechanical properties. Manual measurements of pore sizes from scanning electron micrographs using ImageJ/FIJI are commonly used to characterize scaffolds, but these methods are both time-consuming and subject to user bias. Current semi-automated analysis tools are limited by a lack of accessibility or limited sample size in their verification process. The work here describes the development of a new MATLAB algorithm, PoreScript, to address these limitations. The algorithm was verified using three common scaffold fabrication methods (e.g., salt leaching, gas foaming, emulsion templating) with varying pore sizes and shapes to demonstrate the versatility of this new tool. Our results demonstrate that the pore size characterization using PoreScript is comparable to manual pore size measurements. The PoreScript algorithm was further evaluated to determine the effect of user-input and image parameters (relative image magnification, pixel intensity threshold, and pore structure). Overall, this work validates the accuracy of the PoreScript algorithm across several fabrication methods and provides user-guidance for semi-automated image analysis and increased throughput of scaffold characterization. KeAi Publishing 2021-11-12 /pmc/articles/PMC8843970/ /pubmed/35224287 http://dx.doi.org/10.1016/j.bioactmat.2021.11.006 Text en © 2021 The Authors https://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 Article
Jenkins, Dana
Salhadar, Karim
Ashby, Grant
Mishra, Anita
Cheshire, Joy
Beltran, Felipe
Grunlan, Melissa
Andrieux, Sébastien
Stubenrauch, Cosima
Cosgriff-Hernandez, Elizabeth
PoreScript: Semi-automated pore size algorithm for scaffold characterization
title PoreScript: Semi-automated pore size algorithm for scaffold characterization
title_full PoreScript: Semi-automated pore size algorithm for scaffold characterization
title_fullStr PoreScript: Semi-automated pore size algorithm for scaffold characterization
title_full_unstemmed PoreScript: Semi-automated pore size algorithm for scaffold characterization
title_short PoreScript: Semi-automated pore size algorithm for scaffold characterization
title_sort porescript: semi-automated pore size algorithm for scaffold characterization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8843970/
https://www.ncbi.nlm.nih.gov/pubmed/35224287
http://dx.doi.org/10.1016/j.bioactmat.2021.11.006
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