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Three-dimensional imaging of a sawn surface: a comparison of confocal microscopy, scanning electron microscopy, and light microscopy combined with serial sectioning

机译:锯切表面的三维成像:共聚焦显微镜,扫描电子显微镜和光学显微镜与连续切片相结合的比较

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The three-dimensional structure of a transverse sawn wood surface was investigated using several methods, to compare techniques, and to study the types of deformation in tracheids at the saw cut. A sample of spruce sapwood was cut with a fret saw across the grain. The transverse sawn surface was imaged by confocal microscopy, field emission scanning electron microscopy (FESEM), and by light microscopy combined with serial sectioning and three-dimensional (3D) reconstruction. Both confocal microscopy and FESEM were restricted to visualising the cut surface of the wood. However, serial sectioning was able to reveal the internal structure below the cut surface providing more information on the types of cell deformation present. The wood structure was deformed to depths of more than 600 μm below the surface with twisting, crushing and tearing deformations. Near the outer surface, gaps were formed between groups of tracheids where the cell walls had been torn away to form saw dust. The deformation tended to form groups of tracheids that were twisted relative to each other. Latewood was less distorted, forming a dense solid surface compared to the highly fibrous earlywood.
机译:使用几种方法研究了横向锯切木材表面的三维结构,比较了技术,并研究了锯切处气管中的变形类型。用a锯在整个谷物上切割云杉边材样品。通过共聚焦显微镜,场发射扫描电子显微镜(FESEM)和结合连续切片和三维(3D)重建的光学显微镜对横向锯切表面成像。共聚焦显微镜和FESEM都只能观察到木材的切割表面。然而,连续切片能够揭示切割表面下方的内部结构,从而提供有关存在的细胞变形类型的更多信息。木材结构在扭曲,压碎和撕裂的情况下变形至表面以下600微米以上的深度。在外表面附近,在气孔组之间形成了缝隙,在这些缝隙中,细胞壁被撕裂而形成了锯末。变形趋向于形成彼此相对扭曲的气管组。与高纤维的早材相比,晚材的扭曲程度较小,形成了致密的固体表面。

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