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共聚焦显微镜与体视学:通过应用于三维图像的虚拟测试探针估计体积、数量、表面积和长度。

Confocal microscopy and stereology: estimating volume, number, surface area and length by virtual test probes applied to three-dimensional images.

作者信息

Kubínová L, Janácek J

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Prague.

出版信息

Microsc Res Tech. 2001 Jun 15;53(6):425-35. doi: 10.1002/jemt.1112.

Abstract

The opportunities of confocal microscopy applied to morphometry of microscopical structures are presented and demonstrated on stereological methods based on evaluation of optical sections within a thick slice and using computer-generated virtual test probes. Such methods, allowing arbitrary orientation of the thick slice, can be used for estimating volume, number, surface area, and length. The methods using spatial grid of points, disector, fakir, and slicer probes are described and illustrated by different examples using our freeware 3DTOOLS software and their variance and applicability are discussed. It is shown that shifted triple or quadruple spatial grids of lines are very efficient for the surface area and volume estimation by the fakir method.

摘要

本文介绍了共聚焦显微镜在微观结构形态测量中的应用机会,并基于对厚切片内光学切片的评估和使用计算机生成的虚拟测试探针的体视学方法进行了演示。这种允许厚切片任意取向的方法可用于估计体积、数量、表面积和长度。描述并通过使用我们的免费软件3DTOOLS软件的不同示例说明了使用点的空间网格、分割器、假人和平片探针的方法,并讨论了它们的方差和适用性。结果表明,通过假人方法,移动的三线或四线空间网格对于表面积和体积估计非常有效。

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