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首页> 外文期刊>Journal of Microscopy >3D imaging of cement-based materials at submicron resolution by combining laser scanning confocal microscopy with serial sectioning
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3D imaging of cement-based materials at submicron resolution by combining laser scanning confocal microscopy with serial sectioning

机译:通过将激光扫描共聚焦显微镜与连续切片相结合,可对亚微米分辨率的水泥基材料进行3D成像

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摘要

In this paper, we present a new method to reconstruct large volumes of nontransparent porous materials at submicron resolution. The proposed method combines fluorescence laser scanning confocal microscopy with serial sectioning to produce a series of overlapping confocal z-stacks, which are then aligned and stitched based on phase correlation. The method can be extended in the XY plane to further increase the overall image volume. Resolution of the reconstructed image volume does not degrade with increase in sample size. We have used the method to image cementitious materials, hardened cement paste and concrete and the results obtained show that the method is reliable. Possible applications of the method such as three-dimensional characterization of the pores and microcracks in hardened concrete, three-dimensional particle shape characterization of cementitious materials and three-dimensional characterization of other porous materials such as rocks and bioceramics are discussed.
机译:在本文中,我们提出了一种以亚微米分辨率重建大量不透明多孔材料的新方法。所提出的方法将荧光激光扫描共聚焦显微镜与连续切片相结合,以产生一系列重叠的共聚焦z堆栈,然后根据相位相关性对其进行对齐和缝合。该方法可以在XY平面上扩展以进一步增加整体图像量。重建图像体积的分辨率不会随着样本大小的增加而降低。我们已经使用该方法对胶凝材料,硬化的水泥浆和混凝土进行成像,所得结果表明该方法是可靠的。讨论了该方法的可能应用,如硬化混凝土中孔和微裂纹的三维表征,胶凝材料的三维颗粒形状表征以及其他多孔材料(如岩石和生物陶瓷)的三维表征。

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