Electron Spectroscopic Imaging

Electron spectroscopic imaging is a microscopy technique that maps the spatial distribution of elements or chemical states by measuring the energies of electrons transmitted through a specimen. In a transmission electron microscope, an electron beam passes through the sample, and inelastic scattering causes electrons to lose characteristic amounts of energy; energy-selective filtering converts these losses into contrast or elemental maps. In engineering, electron spectroscopic imaging helps analyze thin materials, interfaces, nanoparticles, defects, and multilayer structures at high spatial resolution. The resulting compositional information supports failure analysis, materials development, semiconductor research, and optimization of devices and manufacturing processes.

Electron Spectroscopic Imaging - Related Videos

Research

JoVE Journal - Biology

Visualization of miniSOG Tagged DNA Repair Proteins in Combination with Electron Spectroscopic Imaging (ESI)

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Cited by 12 •

2015

Electron spectroscopic imaging can image and distinguish nucleic acid from protein at nanometer resolution. It can be combined with the miniSOG system, which is able to specifically label tagged proteins in transmission electron microscopy samples. We illustrate the use of these technologies using double-strand break repair foci as an example.

Research

JoVE Journal - Biology
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Electron Spin Resonance Micro-imaging of Live Species for Oxygen Mapping

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Cited by 3 •

2010

This protocol describes a method for micron-scale three-dimensional imaging of oxygen concentration in the immediate environment of live cells by electron spin resonance microscopy.

Research

JoVE Journal - Medicine
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High-definition Fourier Transform Infrared (FT-IR) Spectroscopic Imaging of Human Tissue Sections towards Improving Pathology

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Cited by 30 •

2015

Fourier Transform Infrared (FT-IR) spectroscopic imaging is a fast and label-free approach to obtain biochemical data sets of cells and tissues. Here, we demonstrate how to obtain high-definition FT-IR images of tissue sections towards improving disease diagnosis.

Electron Channeling Contrast Imaging for Rapid III-V Heteroepitaxial Characterization

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Cited by 22 •

2015

The use of electron channeling contrast imaging in a scanning electron microscope to characterize defects in III-V/Si heteroexpitaxial thin films is described. This method yields similar results to plan-view transmission electron microscopy, but in significantly less time due to lack of required sample preparation.

Imaging of Neuronal Mitochondria Using a Serial Block-Face Scanning Electron Microscope

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2025

Source: Mukherjee, K., et. al. Analysis of Brain Mitochondria Using Serial Block-Face Scanning Electron Microscopy. J. Vis. Exp. (2016)This video demonstrates the preparation, imaging, and analysis of mouse brain tissue using a serial block-face scanning electron microscope (SBFSEM) to visualize mitochondrial ultrastructure, enabling precise mapping of their morphology and spatial distribution in axonal and dendritic neuronal compartments.

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