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活细胞成像的显微镜过多时代。

Live-cell imaging in the era of too many microscopes.

机构信息

Howard Hughes Medical Institute, Janelia Farm Research Campus, Ashburn, VA, USA.

MRC Laboratory of Molecular Biology, Cambridge Biomedical Campus, Cambridge, CB2 0QH, UK.

出版信息

Curr Opin Cell Biol. 2020 Oct;66:34-42. doi: 10.1016/j.ceb.2020.04.008. Epub 2020 May 26.

Abstract

At the time of this writing, searching Google Scholar for 'light-sheet microscopy' returns almost 8500 results; over three-quarters of which were published in the last 5 years alone. Searching for other advanced imaging methods in the last 5 years yields similar results: 'super-resolution microscopy' (>16 000), 'single-molecule imaging' (almost 10 000), SPIM (Single Plane Illumination Microscopy, 5000), and 'lattice light-sheet' (1300). The explosion of new imaging methods has also produced a dizzying menagerie of acronyms, with over 100 different species of 'light-sheet' alone, from SPIM to UM (Ultra microscopy) to SiMView (Simultaneous MultiView) to iSPIM (inclined SPIM, not to be confused with iSPIM, inverted SPIM). How then is the average biologist, without an advanced degree in physics, optics, or computer science supposed to make heads or tails of which method is best suited for their needs? Let us also not forget the plight of the optical physicist, who at best might need help with obtaining healthy samples and keeping them that way, or at worst may not realize the impact their newest technique could have for biologists. This review will not attempt to solve all these problems, but instead highlight some of the most recent, successful mergers between biology and advanced imaging technologies, as well as hopefully provide some guidance for anyone interested in journeying into the world of live-cell imaging.

摘要

在撰写本文时,在 Google Scholar 上搜索“光片显微镜”会返回近 8500 个结果;其中超过四分之三是在过去 5 年内发表的。在过去 5 年中搜索其他高级成像方法也会得到类似的结果:“超分辨率显微镜”(>16000)、“单分子成像”(近 10000)、SPIM(单平面照明显微镜,5000)和“晶格光片”(1300)。新成像方法的爆炸式发展也产生了令人眼花缭乱的缩略语,仅“光片”就有超过 100 种不同的物种,从 SPIM 到 UM(超显微镜)到 SiMView(同时多视图)到 iSPIM(倾斜 SPIM,不要与 iSPIM 混淆,倒置 SPIM)。那么,没有物理学、光学或计算机科学高级学位的普通生物学家如何才能理解哪种方法最适合他们的需求呢?我们也不要忘记光学物理学家的困境,他们最多可能需要帮助获得健康的样本并保持其健康,或者最糟糕的是,他们可能没有意识到他们最新的技术可能对生物学家产生的影响。本文综述并非试图解决所有这些问题,而是重点介绍生物学和先进成像技术之间最近一些成功的融合,同时希望为有兴趣进入活细胞成像领域的人提供一些指导。

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