首页> 外文期刊>Journal of Microscopy >Three-dimensional morphometry in scanning electron microscopy: a technique for accurate dimensional and angular measurements of microstructures using stereopaired digitized images and digital image analysis.
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Three-dimensional morphometry in scanning electron microscopy: a technique for accurate dimensional and angular measurements of microstructures using stereopaired digitized images and digital image analysis.

机译:扫描电子显微镜中的三维形态计量学:一种使用立体对数字化图像和数字图像分析对微观结构进行精确尺寸和角度测量的技术。

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摘要

A method for accurate dimensional and angular measurements of microstructures analysed in the scanning electron microscope is described. The method considers central and parallel projections and involves (a) digital image acquisition of stereopaired images from the scanning electron microscope's photodisplay, (b) generation of 3D-image representations, (c) setting of measuring points in the digitized stereopaired images, (d) computation of exact space coordinates (x/y/z) from the corresponding point coordinates (xL/yL; xR/yR), (e) determination of distances and angles between consecutive corresponding points using vector equations, and (f) transfer of computed data into spreadsheets of the data analysis software using dynamic data exchange with simultaneous graphical display of the frequency distribution of variables. Measurements performed on specimens with known dimensions (grid with 10 microm wide square meshes, polystyrene beads with 0.33 microm diameter) and angles (synthetic crystals of K(Al,Cr)[SO4], CuSO4.5H2O and NaCl) revealed a high accuracy in dimensional as well as angular measurements (total error 1 +/- 0.5%). In Monte Carlo experiments the overall error was found to depend strongly on the size of the measured structure relative to the size of the measurement field (field width).
机译:描述了一种用于在扫描电子显微镜中分析的微观结构的精确尺寸和角度测量的方法。该方法考虑了中心投影和平行投影,并且涉及(a)从扫描电子显微镜的光电显示器获取立体配对图像的数字图像;(b)生成3D图像表示;(c)在数字化立体配对图像中设置测量点;(d )根据相应的点坐标(xL / yL; xR / yR)计算精确的空间坐标(x / y / z),(e)使用矢量方程确定连续的相应点之间的距离和角度,以及(f)传递使用动态数据交换并同时以图形方式显示变量的频率分布,将计算出的数据计入数据分析软件的电子表格。对具有已知尺寸(网格为10微米的正方形网格,直径为0.33微米的聚苯乙烯珠)和角度(K(Al,Cr)[SO4],CuSO4.5H2O和NaCl的合成晶体)的样品进行的测量显示出高精度尺寸和角度测量(总误差1 +/- 0.5%)。在蒙特卡洛实验中,发现整体误差在很大程度上取决于所测量结构的尺寸相对于测量场的尺寸(场宽)。

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