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相关光电子显微镜技术:连接突触结构与功能

Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function.

作者信息

Begemann Isabell, Galic Milos

机构信息

DFG Cluster of Excellence 'Cells in Motion', (EXC 1003), University of Muenster, MuensterGermany; Institute of Medical Physics and Biophysics, University Hospital Münster, University of Muenster, MuensterGermany.

出版信息

Front Synaptic Neurosci. 2016 Aug 23;8:28. doi: 10.3389/fnsyn.2016.00028. eCollection 2016.

Abstract

Many core paradigms of contemporary neuroscience are based on information obtained by electron or light microscopy. Intriguingly, these two imaging techniques are often viewed as complementary, yet separate entities. Recent technological advancements in microscopy techniques, labeling tools, and fixation or preparation procedures have fueled the development of a series of hybrid approaches that allow correlating functional fluorescence microscopy data and ultrastructural information from electron micrographs from a singular biological event. As correlative light electron microscopy (CLEM) approaches become increasingly accessible, long-standing neurobiological questions regarding structure-function relation are being revisited. In this review, we will survey what developments in electron and light microscopy have spurred the advent of correlative approaches, highlight the most relevant CLEM techniques that are currently available, and discuss its potential and limitations with respect to neuronal and synapse-specific applications.

摘要

当代神经科学的许多核心范式都基于通过电子显微镜或光学显微镜获得的信息。有趣的是,这两种成像技术通常被视为互补但又相互独立的实体。显微镜技术、标记工具以及固定或制备程序方面的最新技术进步推动了一系列混合方法的发展,这些方法能够将功能性荧光显微镜数据与来自单个生物事件的电子显微照片中的超微结构信息相关联。随着相关光电子显微镜(CLEM)方法越来越容易获得,关于结构 - 功能关系的长期神经生物学问题正在被重新审视。在这篇综述中,我们将探讨电子显微镜和光学显微镜的哪些发展促成了相关方法的出现,突出当前可用的最相关的CLEM技术,并讨论其在神经元和突触特异性应用方面的潜力和局限性。

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