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Scaling-index method as an image processing tool in scanning-probe microscopy

机译:标度指数法作为扫描探针显微镜中的图像处理工具

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摘要

The scaling-index method (SIM) is a novel tool for image processing in scanning-probe microscopy. Originating from the theory of complex systems, the SIM can be used in order to extract structural information from arbitrary data sets. This method can readily be applied to the analysis of digital atomic-force microscopy (AFM) images. Especially for biomedical diagnostics, where genetic material is investigated by various microscopic methods, a reliable image segmentation based on the SIM algorithm is helpful. As a first application, AFM-images of GTG-banded human metaphase chromosomes (with G bands obtained by Trypsin using Giemsa) are compared with micrographs from conventional light microscopy by means of a scaling-index analysis. While the grey-level distributions of the optical and the AFM-images are largely different from each other, the scaling-index images are remarkably similar. Using this method, a fingerprint of an image can be produced which helps in the classification and interpretation of the measured data.
机译:缩放指数方​​法(SIM)是一种用于扫描探针显微镜中图像处理的新颖工具。源自复杂系统理论的SIM可以用于从任意数据集中提取结构信息。这种方法可以很容易地应用于数字原子力显微镜(AFM)图像的分析。特别是对于生物医学诊断,其中通过各种微观方法研究遗传物质,基于SIM算法的可靠图像分割是有帮助的。作为第一个应用,通过比例指数分析,将GTG带状人类中期染色体(具有由胰蛋白酶使用Giemsa获得的G带)的AFM图像与常规光学显微镜的显微照片进行比较。虽然光学图像和AFM图像的灰度分布彼此有很大不同,但是缩放指数图像却非常相似。使用这种方法,可以产生图像的指纹,这有助于对测量数据进行分类和解释。

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