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Microtomography imaging of an isolated plant fiber: a digital holographic approach

机译:分离植物纤维的微观图成像:数字全息方法

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摘要

This paper describes a method for optical projection tomography for the 3D in situ characterization of micrometric plant fibers. The proposed approach is based on digital holographic microscopy, the holographic capability being convenient to compensate for the runout of the fiber during rotations. The setup requires a telecentric alignment to prevent from the changes in the optical magnification, and calibration results show the very good experimental adjustment. Amplitude images are obtained from the set of recorded and digitally processed holograms. Refocusing of blurred images and correction of both runout and jitter are carried out to get appropriate amplitude images. The 3D data related to the plant fiber are computed from the set of images using a dedicated numerical processing. Experimental results exhibit the internal and external shapes of the plant fiber. These experimental results constitute the first attempt to obtain 3D data of flax fiber, about 12 mu m x 17 mu m in apparent diameter, with a full-field optical tomography approach using light in the visible range. (C) 2015 Optical Society of America
机译:本文介绍了一种用于3D的光学投影层析成像以微米植物纤维的拟理表征的光学投影断层扫描方法。所提出的方法是基于数字全息显微镜,全息性能力方便地补偿旋转期间光纤的跳动。设置需要远心对齐以防止光学放大倍率的变化,并且校准结果显示出非常好的实验调整。从该组记录和数字处理的全息图获得幅度图像。对模糊图像和跳闸和抖动进行校正进行重新焦,以获得适当的幅度图像。使用专用数值处理从一组图像计算与植物光纤相关的3D数据。实验结果表现出植物纤维的内部和外部形状。这些实验结果构成首次试图获得亚麻纤维的3D数据,在表观直径中约12μm×17μm,具有可见范围中的光的全场光学断层扫描方法。 (c)2015年光学学会

著录项

  • 来源
    《Applied optics》 |2016年第3期|共11页
  • 作者单位

    Univ Maine LAUM CNRS UMR 6613 Ave Olivier Messiaen F-73085 Le Mans 9 France;

    Univ Maine LAUM CNRS UMR 6613 Ave Olivier Messiaen F-73085 Le Mans 9 France;

    Univ Maine LAUM CNRS UMR 6613 Ave Olivier Messiaen F-73085 Le Mans 9 France;

    ENSIM Rue Aristote F-73085 Le Mans 09 France;

    IUT Alencon UMR ENSICAEN UCN CNRS CEA 6252 Ctr Rech Ions Mat &

    Photon CIMAP Alencon F-61250 Damigny France;

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  • 正文语种 eng
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