Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function
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 fi...
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doaj-fef0d83b7b0b4e9d9b2674172f14409c2020-11-24T22:48:01ZengFrontiers Media S.A.Frontiers in Synaptic Neuroscience1663-35632016-08-01810.3389/fnsyn.2016.00028198626Correlative Light Electron Microscopy: Connecting Synaptic Structure and FunctionIsabell Begemann0Isabell Begemann1Milos Galic2Milos Galic3University of MuensterUniversity of MuensterUniversity of MuensterUniversity of MuensterMany 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.http://journal.frontiersin.org/Journal/10.3389/fnsyn.2016.00028/fullNeuronsynapseSEMElectron microscopyfluorescence microscopyTEM |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Isabell Begemann Isabell Begemann Milos Galic Milos Galic |
spellingShingle |
Isabell Begemann Isabell Begemann Milos Galic Milos Galic Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function Frontiers in Synaptic Neuroscience Neuron synapse SEM Electron microscopy fluorescence microscopy TEM |
author_facet |
Isabell Begemann Isabell Begemann Milos Galic Milos Galic |
author_sort |
Isabell Begemann |
title |
Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function |
title_short |
Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function |
title_full |
Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function |
title_fullStr |
Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function |
title_full_unstemmed |
Correlative Light Electron Microscopy: Connecting Synaptic Structure and Function |
title_sort |
correlative light electron microscopy: connecting synaptic structure and function |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Synaptic Neuroscience |
issn |
1663-3563 |
publishDate |
2016-08-01 |
description |
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. |
topic |
Neuron synapse SEM Electron microscopy fluorescence microscopy TEM |
url |
http://journal.frontiersin.org/Journal/10.3389/fnsyn.2016.00028/full |
work_keys_str_mv |
AT isabellbegemann correlativelightelectronmicroscopyconnectingsynapticstructureandfunction AT isabellbegemann correlativelightelectronmicroscopyconnectingsynapticstructureandfunction AT milosgalic correlativelightelectronmicroscopyconnectingsynapticstructureandfunction AT milosgalic correlativelightelectronmicroscopyconnectingsynapticstructureandfunction |
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1725680066257485824 |