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Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy

Raman spectroscopy is a real-time, non-contact, and non-destructive technique able to obtain information about the composition of materials, chemicals, and mixtures. It uses the energy transfer properties of molecules to detect the composition of matter. Raman spectroscopy is mainly used in the chem...

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Autores principales: Bertens, Christian J.F., Zhang, Shuo, Erckens, Roel J., van den Biggelaar, Frank J.H.M., Berendschot, Tos T.J.M., Webers, Carroll A.B., Nuijts, Rudy M.M.A., Gijs, Marlies
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7200319/
https://www.ncbi.nlm.nih.gov/pubmed/32382520
http://dx.doi.org/10.1016/j.mex.2020.100883
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author Bertens, Christian J.F.
Zhang, Shuo
Erckens, Roel J.
van den Biggelaar, Frank J.H.M.
Berendschot, Tos T.J.M.
Webers, Carroll A.B.
Nuijts, Rudy M.M.A.
Gijs, Marlies
author_facet Bertens, Christian J.F.
Zhang, Shuo
Erckens, Roel J.
van den Biggelaar, Frank J.H.M.
Berendschot, Tos T.J.M.
Webers, Carroll A.B.
Nuijts, Rudy M.M.A.
Gijs, Marlies
author_sort Bertens, Christian J.F.
collection PubMed
description Raman spectroscopy is a real-time, non-contact, and non-destructive technique able to obtain information about the composition of materials, chemicals, and mixtures. It uses the energy transfer properties of molecules to detect the composition of matter. Raman spectroscopy is mainly used in the chemical field because background fluorescence and instrumental noise affect biological (in vitro and in vivo) measurements. In this method, we describe how hardware related artifacts and fluorescence background can be corrected without affecting signal of the measurement. First, we applied manual correction for cosmic ray spikes, followed by automated correction to reduce fluorescence and hardware related artifacts based on a partial 5(th) degree polynomial fitting and Tophat correction. Along with this manuscript we provide a MatLab(Ⓡ) • “Polynomial_Tophat_background_subtraction _methods.m” offers an automated method for the removal of hardware related artifacts and fluorescence signals in Raman spectra. • “Polynomial_Tophat_background_subtraction _methods.m” provides a modifiable MatLab file adjustable for multipurpose spectroscopy analysis. • We offer a standardized method for Raman spectra processing suitable for biological and chemical applications for modular confocal Raman spectroscopes.
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spelling pubmed-72003192020-05-07 Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy Bertens, Christian J.F. Zhang, Shuo Erckens, Roel J. van den Biggelaar, Frank J.H.M. Berendschot, Tos T.J.M. Webers, Carroll A.B. Nuijts, Rudy M.M.A. Gijs, Marlies MethodsX Pharmacology, Toxicology and Pharmaceutical Science Raman spectroscopy is a real-time, non-contact, and non-destructive technique able to obtain information about the composition of materials, chemicals, and mixtures. It uses the energy transfer properties of molecules to detect the composition of matter. Raman spectroscopy is mainly used in the chemical field because background fluorescence and instrumental noise affect biological (in vitro and in vivo) measurements. In this method, we describe how hardware related artifacts and fluorescence background can be corrected without affecting signal of the measurement. First, we applied manual correction for cosmic ray spikes, followed by automated correction to reduce fluorescence and hardware related artifacts based on a partial 5(th) degree polynomial fitting and Tophat correction. Along with this manuscript we provide a MatLab(Ⓡ) • “Polynomial_Tophat_background_subtraction _methods.m” offers an automated method for the removal of hardware related artifacts and fluorescence signals in Raman spectra. • “Polynomial_Tophat_background_subtraction _methods.m” provides a modifiable MatLab file adjustable for multipurpose spectroscopy analysis. • We offer a standardized method for Raman spectra processing suitable for biological and chemical applications for modular confocal Raman spectroscopes. Elsevier 2020-04-21 /pmc/articles/PMC7200319/ /pubmed/32382520 http://dx.doi.org/10.1016/j.mex.2020.100883 Text en © 2020 The Author(s). Published by Elsevier B.V. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Pharmacology, Toxicology and Pharmaceutical Science
Bertens, Christian J.F.
Zhang, Shuo
Erckens, Roel J.
van den Biggelaar, Frank J.H.M.
Berendschot, Tos T.J.M.
Webers, Carroll A.B.
Nuijts, Rudy M.M.A.
Gijs, Marlies
Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title_full Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title_fullStr Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title_full_unstemmed Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title_short Pipeline for the removal of hardware related artifacts and background noise for Raman spectroscopy
title_sort pipeline for the removal of hardware related artifacts and background noise for raman spectroscopy
topic Pharmacology, Toxicology and Pharmaceutical Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7200319/
https://www.ncbi.nlm.nih.gov/pubmed/32382520
http://dx.doi.org/10.1016/j.mex.2020.100883
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