Electron Sample Interaction

Electron sample interaction is the set of physical processes that occur when an electron beam meets a specimen, determining how the sample scatters energy and produces measurable signals. Incident electrons undergo elastic scattering that changes their direction and inelastic scattering that transfers energy to the material, generating secondary electrons, backscattered electrons, characteristic X-rays, or other signals. In biology, these interactions support scanning and transmission electron microscopy by revealing cell surfaces, internal ultrastructure, elemental composition, and molecularly labeled regions. Controlling beam energy, specimen thickness, and preparation conditions helps optimize contrast while limiting radiation damage, making the topic central to high-resolution biological imaging and analysis.

Electron Sample Interaction - Related Videos

Education

JoVE Core - Cell Biology

Preparation of Samples for Electron Microscopy

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2023

To be visualized by an electron microscope, either transmission or scanning, biological samples need to be fixed (stabilized) so the electron beam does not destroy them and dried thoroughly (desiccated/dehydrated) so the vacuum does not affect them. Fixation needs to be done as quickly as possible because the sample properties will start changing as soon as it is removed from its natural environment. For example, in a tissue sample, the oxygen levels begin decreasing, causing an altered...

Research

JoVE Journal - Biochemistry

Method to Visualize and Analyze Membrane Interacting Proteins by Transmission Electron Microscopy

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Cited by 11 •

2017

Many proteins perform their function when attached to membrane surfaces. The binding of extrinsic proteins on nanodisc membranes can be indirectly imaged by transmission electron microscopy. We show that the characteristic stacking (rouleau) of nanodiscs induced by the negative stain sodium phosphotungstate is prevented by the binding of extrinsic protein.

Preparation and Observation of Thick Biological Samples by Scanning Transmission Electron Tomography

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Cited by 9 •

2017

This report describes a sample preparation protocol and specific imaging conditions for performing scanning transmission electron tomography of thick biological specimens.

Research

JoVE Journal - Biochemistry
Free Sample

Preparation of Sample Support Films in Transmission Electron Microscopy using a Support Floatation Block

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Cited by 10 •

2021

Sample preparation for cryo-electron microscopy (cryo-EM) is a significant bottleneck in the structure determination workflow of this method. Here, we provide detailed methods for using an easy-to-use, three-dimensionally printed block for the preparation of support films to stabilize samples for transmission EM studies.

Correlative Light and Electron Microscopy to Study Microglial Interactions with β-Amyloid Plaques

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Cited by 30 •

2016

This article describes a protocol for visualizing amyloid Aβ plaques in Alzheimer's disease mouse models using methoxy-X04, which crosses the blood-brain barrier and selectively binds to β-pleated sheets found in dense core Aβ plaques. It allows pre-screening of plaque-containing tissue sections prior to immunostaining and processing for electron microscopy.

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