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使用连续腐蚀作为分水岭标记对相差不大的重叠轨迹进行分割。

Segmentation of nearly isotropic overlapped tracks in photomicrographs using successive erosions as watershed markers.

机构信息

Departamento de Raios Cósmicos e Cronologia, IFGW, University of Campinas, Brazil.

Institut für Geologie, TU Bergakademie Freiberg, Germany.

出版信息

Microsc Res Tech. 2019 Oct;82(10):1706-1719. doi: 10.1002/jemt.23336. Epub 2019 Jul 11.

Abstract

INTRODUCTION

Procedures for measuring and counting tracks are time-consuming and involve practical problems. The precision of automatic counting methods is not satisfactory yet; the major challenges are distinguishing tracks and material defects, identifying small tracks and defects of similar size, and detecting overlapping tracks.

MATERIALS AND METHODS

Here, we address the overlapping tracks issue using the algorithm Watershed Using Successive Erosions as Markers (WUSEM), which combines the watershed transform, morphological erosions and labeling to separate regions in photomicrographs. We tested this method in two data sets of diallyl phthalate (DAP) photomicrographs and compared the results when counting manually and using the classic watershed and H-watershed transforms.

RESULTS

The mean automatic/manual efficiency counting ratio when using WUSEM in the test data sets is 0.97 ± 0.11.

CONCLUSION

WUSEM shows reliable results when used in photomicrographs presenting almost isotropic objects. Also, diameter and eccentricity criteria may be used to increase the reliability of this method.

摘要

简介

测量和计数轨迹的过程既耗时又存在实际问题。自动计数方法的精度还不尽如人意;主要的挑战是区分轨迹和材料缺陷,识别大小相似的小轨迹和缺陷,以及检测重叠轨迹。

材料与方法

在这里,我们使用 Watershed Using Successive Erosions as Markers (WUSEM) 算法解决重叠轨迹问题,该算法结合了分水岭变换、形态学侵蚀和标记,以分离照片中的区域。我们在邻苯二甲酸二烯丙酯 (DAP) 照片的两个数据集上测试了这种方法,并比较了手动计数和经典分水岭变换和 H 分水岭变换的结果。

结果

在测试数据集上使用 WUSEM 时,平均自动/手动效率计数比为 0.97 ± 0.11。

结论

当在呈现各向同性物体的照片中使用 WUSEM 时,它会产生可靠的结果。此外,直径和偏心率标准可用于提高该方法的可靠性。

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