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ImageJ 用于锥虫显微图像的部分和完全自动化分析。

ImageJ for Partially and Fully Automated Analysis of Trypanosome Micrographs.

机构信息

Nuffield Department of Medicine, The Peter Medawar Building for Pathogen Research University of Oxford, Oxford, UK.

出版信息

Methods Mol Biol. 2020;2116:385-408. doi: 10.1007/978-1-0716-0294-2_24.

Abstract

Trypanosomes and related parasites such as Leishmania are unicellular parasites with a precise internal structure. This makes light microscopy a powerful tool for interrogating their biology-whether considering advance techniques for visualizing the precise localization of proteins within the cell or simply measuring parasite cell shape. Methods to partially or fully automate analysis and interpretation are extremely powerful and provide easier access to microscope images as a source of quantitative data. This chapter provides an introduction to these methods using ImageJ/FIJI, free and open source software for scientific image analysis. It provides an overview of how ImageJ handles images and introduces the ImageJ macro/scripting language for automated images, starting at a basic level and assuming no previous programming/scripting experience. It then outlines three methods using ImageJ for automated analysis of trypanosome micrographs: Semiautomated cropping and setting image contrast for presentation, automated analysis of cell properties from a light micrograph field of view, and example semiautomated tools for quantitative analysis of protein localization. These are not presented as strict methods, but are instead described in detail with the intention of furnishing the reader with the ability to "hack" the scripts for their own needs or write their own scripts for partially and fully automated quantitation of trypanosomes from light micrographs. Most of the methods described here are transferrable to other types of microscope image and other cell types.

摘要

锥虫和相关的寄生虫,如利什曼原虫,是具有精确内部结构的单细胞寄生虫。这使得光学显微镜成为研究其生物学的有力工具——无论是考虑用于可视化细胞内蛋白质精确定位的先进技术,还是简单地测量寄生虫细胞形状。部分或完全自动化分析和解释的方法非常强大,并为显微镜图像作为定量数据的来源提供了更简单的访问途径。本章使用免费和开源的科学图像分析软件 ImageJ/FIJI 介绍这些方法。它概述了 ImageJ 如何处理图像,并介绍了用于自动处理图像的 ImageJ 宏/脚本语言,从基础水平开始,假设没有以前的编程/脚本经验。然后,它概述了使用 ImageJ 进行自动分析锥虫显微照片的三种方法:半自动裁剪和设置图像对比度以进行演示、从光镜视场自动分析细胞特性,以及用于定量分析蛋白质定位的示例半自动工具。这些方法并不是严格的方法,而是详细描述,旨在为读者提供“黑客”脚本以满足自己需求的能力,或编写自己的脚本以实现从光镜图像半自动和全自动定量分析锥虫。这里描述的大多数方法都可转移到其他类型的显微镜图像和其他细胞类型。

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