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首页> 外文期刊>Functional Plant Biology >New stereoscopic reconstruction protocol for scanning electron microscope images and its application to in vivo replicas of the shoot apical meristem
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New stereoscopic reconstruction protocol for scanning electron microscope images and its application to in vivo replicas of the shoot apical meristem

机译:扫描电子显微镜图像的新的立体重建协议及其在茎顶端分生组织的体内复制中的应用

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摘要

The shoot apical meristem is a small and delicate organ, usually hidden between the young leaves and flowers that it produces. One approach to study meristem geometry and growth consists of taking consecutive replicas from the living meristem surface. In this paper, we present a new stereoscopic reconstruction method for this non-invasive replica protocol, which is applicable to study of growth and geometry of individual cells. This method had been used by the authors to study shoot apical meristem of two species: Arabidopsis thaliana (L.) Heynh. and Anagallis arvensis L., and can be extended to other species and organs. Scanning electron micrographs of the same replica are made at two different angles of view. The obtained stereopairs are used for the dense, three dimensional reconstruction of the replica surface. At the same time, some of the microscope parameters are refined based on the differences between the two micrographs. Three dimensional cell outlines are next extracted from the dense continuous reconstruction, and provide a basis for the quantification of meristem geometry and growth. The new reconstruction protocol can be used with different types of scanning electron microscopes, single- or multi-staged, does not require the identical working distance for the two micrographs of the stereopair, and can be used within a large range of magnifications, corresponding to the cases of either orthogonal or central projection model. It is based largely on recently published algorithms for stereoscopic vision. The reconstruction protocol can be used also for other stereoscopic applications based on scanning electron microscopy. The codes are written in Matlab and are freely available on request to the authors.
机译:茎尖分生组织是一个细小而细小的器官,通常隐藏在它产生的幼叶和花朵之间。研究分生组织几何形状和生长的一种方法是从活的分生组织表面获取连续的复制品。在本文中,我们为这种非侵入性复制协议提出了一种新的立体重建方法,该方法可用于研究单个细胞的生长和几何形状。作者已使用此方法研究了两个物种的茎尖分生组织:拟南芥Heynh。和Anagallis arvensis L.,并且可以扩展到其他物种和器官。同一复制品的扫描电子显微照片是在两个不同的视角拍摄的。获得的立体对用于复制品表面的密集三维重建。同时,会根据两个显微照片之间的差异来完善一些显微镜参数。接下来,从密集的连续重建中提取三维细胞轮廓,并为分生组织几何形状和生长的定量提供基础。新的重建协议可用于不同类型的单级或多级扫描电子显微镜,对于立体对的两个显微照片不需要相同的工作距离,并且可以在较大的放大倍率范围内使用,对应于正交或中心投影模型的情况。它主要基于最新发布的立体视觉算法。重建协议还可用于基于扫描电子显微镜的其他立体应用。这些代码是用Matlab编写的,可应要求免费提供给作者。

著录项

  • 来源
    《Functional Plant Biology》 |2008年第10期|p.1034-1046|共13页
  • 作者单位

    A Institute of Plant Biology, Wroclaw University, Kanonia 6/8, 50-328 Wroclaw, Poland. B Department of Biophysics and Morphogenesis of Plants, University of Silesia, Jagiellonska 28, 40-032 Katowice, Poland. C Corresponding author. Email: annelise.routier@gmail.com This paper originates from a presentation at the 5th International Workshop on Functional–Structural Plant Models, Napier, New Zealand, November 2007.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    replica technique;

    机译:复制技术;

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