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设计严谨的显微镜实验:验证方法和避免偏倚。

Designing a rigorous microscopy experiment: Validating methods and avoiding bias.

机构信息

Department of Cell Biology, Harvard Medical School, Boston, MA.

出版信息

J Cell Biol. 2019 May 6;218(5):1452-1466. doi: 10.1083/jcb.201812109. Epub 2019 Mar 20.

Abstract

Images generated by a microscope are never a perfect representation of the biological specimen. Microscopes and specimen preparation methods are prone to error and can impart images with unintended attributes that might be misconstrued as belonging to the biological specimen. In addition, our brains are wired to quickly interpret what we see, and with an unconscious bias toward that which makes the most sense to us based on our current understanding. Unaddressed errors in microscopy images combined with the bias we bring to visual interpretation of images can lead to false conclusions and irreproducible imaging data. Here we review important aspects of designing a rigorous light microscopy experiment: validation of methods used to prepare samples and of imaging system performance, identification and correction of errors, and strategies for avoiding bias in the acquisition and analysis of images.

摘要

显微镜生成的图像从来都不是生物样本的完美表示。显微镜和样本制备方法容易出错,并可能赋予图像一些意想不到的属性,这些属性可能会被误解为属于生物样本。此外,我们的大脑被设计成快速解释我们所看到的东西,并且由于我们当前的理解,我们无意识地偏向于最有意义的东西。显微镜图像中的未解决的错误,加上我们对图像视觉解释带来的偏见,可能会导致错误的结论和不可重复的成像数据。在这里,我们回顾了设计严格的光学显微镜实验的重要方面:验证用于制备样品的方法和成像系统的性能,识别和纠正错误,以及在获取和分析图像时避免偏见的策略。

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