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用于体视学的垂直LM切片和并行CT扫描设计:应用于人类肺部

Vertical LM sectioning and parallel CT scanning designs for stereology: application to human lung.

作者信息

Pache J C, Roberts N, Vock P, Zimmermann A, Cruz-Orive L M

机构信息

Department of Pathology, University of Lausanne, Switzerland.

出版信息

J Microsc. 1993 Apr;170(Pt 1):9-24. doi: 10.1111/j.1365-2818.1993.tb03319.x.

Abstract

Practical, unbiased stereological methods are described to estimate lung volume and external surface area, and total volume and surface area of relatively large and anisotropic structures (bronchi and arteries) inside the lung. The volume of each of five lung strata was estimated first by fluid displacement and then by computed tomography (CT) using Cavalieri's method; the reliability of CT was assessed through a calibration procedure, and image thresholding criteria for an accurate volume estimation using CT were established. The parallel, perfectly registered CT section images were also used to estimate the external surface area of each stratum by the spatial grid method. Unbiased estimation of internal surface areas in lung is a long-standing problem: since the structures are large and essentially void, large sections are needed; to facilitate identification, thin sections have to be used for light microscopy, and since such structures are anisotropic, the sections should be vertical. A practical stereological design is demonstrated here on an infant lung, which fulfils all these requirements. This study illustrates the potential of using unbiased stereology to characterize infant pulmonary hypoplasia.

摘要

本文介绍了实用且无偏倚的体视学方法,用于估计肺体积和外表面积,以及肺内相对较大且各向异性结构(支气管和动脉)的总体积和表面积。首先通过液体置换法估计五个肺层中每一层的体积,然后使用卡瓦列里方法通过计算机断层扫描(CT)进行估计;通过校准程序评估CT的可靠性,并建立了使用CT进行准确体积估计的图像阈值标准。平行且完全配准的CT断层图像还用于通过空间网格法估计每一层的外表面积。肺内表面积的无偏估计一直是个长期存在的问题:由于这些结构较大且基本为中空,需要大切片;为便于识别,必须使用薄切片进行光学显微镜观察,并且由于此类结构是各向异性的,切片应为垂直方向。本文在一个婴儿肺上展示了一种满足所有这些要求的实用体视学设计。这项研究说明了使用无偏体视学来表征婴儿肺发育不全的潜力。

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