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Automatic measurement of compression wood cell attributes in fluorescence microscopy images

  • Bettina Selig
  • , Cris Luengo
  • , Stig Bardage
  • , Geoffrey Daniel
  • , Gunilla Borgefors

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    This paper presents a new automated method for analyzing compression wood fibers in fluorescence microscopy. Abnormal wood known as compression wood is present in almost every softwood tree harvested. Compression wood fibers show a different cell wall morphology and chemistry compared to normal wood fibers, and their mechanical and physical characteristics are considered detrimental for both construction wood and pulp and paper purposes. Currently there is the need for improved methodologies for characterization of lignin distribution in wood cell walls, such as from compression wood fibers, that will allow for a better understanding of fiber mechanical properties. Traditionally, analysis of fluorescence microscopy images of fiber cross-sections has been done manually, which is time consuming and subjective. Here, we present an automatic method, using digital image analysis, that detects and delineates softwood fibers in fluorescence microscopy images, dividing them into cell lumen, normal and highly lignified areas. It also quantifies the different areas, as well as measures cell wall thickness. The method is evaluated by comparing the automatic with a manual delineation. While the boundaries between the various fiber wall regions are detected using the automatic method with precision similar to inter and intra expert variability, the position of the boundary between lumen and the cell wall has a systematic shift that can be corrected. Our method allows for transverse structural characterization of compression wood fibers, which may allow for improved understanding of the micro-mechanical modeling of wood and pulp fibers.
    Original languageEnglish
    Pages (from-to)298-308
    Number of pages10
    JournalJournal of Microscopy
    Volume246
    Issue number3
    DOIs
    Publication statusPublished - 2012

    Keywords

    • Fiber cross-sections
    • fluorescence microscopy
    • image processing
    • lignin
    • rays
    • snakes

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