3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION

Morphological characterization of wood based fibrous materials is carried out using X-ray tomography. This technique allows the non destructive observation at the scales of a fibre (microscopic scale) and of a network of fibres (mesoscopic scale). The 3D images are processed using classical tools of...

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Main Authors: Jérôme Lux, Christine Delisée, Xavier Thibault
Format: Article
Language:English
Published: Slovenian Society for Stereology and Quantitative Image Analysis 2011-05-01
Series:Image Analysis and Stereology
Subjects:
Online Access:http://www.ias-iss.org/ojs/IAS/article/view/789
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spelling doaj-43ebd885a9d643b48944585fd02bca0c2020-11-24T23:22:37ZengSlovenian Society for Stereology and Quantitative Image AnalysisImage Analysis and Stereology1580-31391854-51652011-05-01251253510.5566/ias.v25.p25-357613D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATIONJérôme LuxChristine DeliséeXavier ThibaultMorphological characterization of wood based fibrous materials is carried out using X-ray tomography. This technique allows the non destructive observation at the scales of a fibre (microscopic scale) and of a network of fibres (mesoscopic scale). The 3D images are processed using classical tools of mathematical morphology. Measures of porosities and estimations of the size distributions of fibres and pores are carried out and compared to other results. An alternative method for the calculation of the local orientation of the fibres is also described to quantify the anisotropy of the fibres network. Finally, the individualization of the fibres is obtained from the representation of the fibrous network as a 3D skeleton, making possible further measurements on the isolated fibres.http://www.ias-iss.org/ojs/IAS/article/view/789local orientationmathematical morphologysegmentationwood fibresX-ray tomography
collection DOAJ
language English
format Article
sources DOAJ
author Jérôme Lux
Christine Delisée
Xavier Thibault
spellingShingle Jérôme Lux
Christine Delisée
Xavier Thibault
3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
Image Analysis and Stereology
local orientation
mathematical morphology
segmentation
wood fibres
X-ray tomography
author_facet Jérôme Lux
Christine Delisée
Xavier Thibault
author_sort Jérôme Lux
title 3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
title_short 3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
title_full 3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
title_fullStr 3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
title_full_unstemmed 3D CHARACTERIZATION OF WOOD BASED FIBROUS MATERIALS: AN APPLICATION
title_sort 3d characterization of wood based fibrous materials: an application
publisher Slovenian Society for Stereology and Quantitative Image Analysis
series Image Analysis and Stereology
issn 1580-3139
1854-5165
publishDate 2011-05-01
description Morphological characterization of wood based fibrous materials is carried out using X-ray tomography. This technique allows the non destructive observation at the scales of a fibre (microscopic scale) and of a network of fibres (mesoscopic scale). The 3D images are processed using classical tools of mathematical morphology. Measures of porosities and estimations of the size distributions of fibres and pores are carried out and compared to other results. An alternative method for the calculation of the local orientation of the fibres is also described to quantify the anisotropy of the fibres network. Finally, the individualization of the fibres is obtained from the representation of the fibrous network as a 3D skeleton, making possible further measurements on the isolated fibres.
topic local orientation
mathematical morphology
segmentation
wood fibres
X-ray tomography
url http://www.ias-iss.org/ojs/IAS/article/view/789
work_keys_str_mv AT jeromelux 3dcharacterizationofwoodbasedfibrousmaterialsanapplication
AT christinedelisee 3dcharacterizationofwoodbasedfibrousmaterialsanapplication
AT xavierthibault 3dcharacterizationofwoodbasedfibrousmaterialsanapplication
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