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Krios G4 Cryo-TEM for Life Sciences

The Thermo Scientific Krios G4 Cryo-Transmission Electron Microscope (Cryo-TEM) is a compact TEM. The instrument can be installed in labs with a ceiling height below 3.04 m (~10 ft), as the microscope height it below 3 meters. The Krios G4 Cryo-TEM has improved ergonomics for easier sample exchange. Data acquisition set up is easier and faster thanks to enhanced automation, systematic user guidance and advanced performance mo…

Thermo Fisher Scientific

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Description

High productivity in a compact design

The Thermo Scientific Krios G4 Cryo-Transmission Electron Microscope (Cryo-TEM) is a compact TEM. The instrument can be installed in labs with a ceiling height below 3.04 m (~10 ft), as the microscope height it below 3 meters.

The Krios G4 Cryo-TEM has improved ergonomics for easier sample exchange. Data acquisition set up is easier and faster thanks to enhanced automation, systematic user guidance and advanced performance monitoring. Simultaneously, the system’s productivity and high-resolution performance have been further enhanced through a combination of new optical modes, improved optical specifications and on-the-fly pre-processing.

Enhanced productivity

  • Improved drift performance allows for a 3x faster experiment start.
  • Powerful combination of fringe-free imaging (FFI), aberration-free image shift (AFIS) and the (optional) Thermo Scientific Falcon™ 4 Direct Electron Detector enhances single particle analysis throughput by up to 400%.

Image quality

Optical performance: 0.12 nm information limit and linear distortion of <0.5%

Application NoteLife Sciences

Go beyond structure & understand function with cryo-electron microscopy

Learn more about adopting cryo-EM and how it can advance your research in this new ebook from Thermo Fisher Scientific. Cryo-EM can determine structures of challenging proteins without the need for crystals and can provide insight into how these proteins function in a way that other methods simply cannot. Use cryo-EM to get a broader picture of how membrane proteins function and contribute to disease to drive your research and improve drug design.



Application eBookLife Sciences

Structure-based drug discovery with cryo-EM

Cryo-electron microscopy (cryo-EM) is a powerful biophysical technique that allows researchers to visualize molecular assemblies at near-atomic resolution. In this application-based eBook, we outline the application of cryo-EM in structure-based drug discovery and look at how state-of-the-art microscopes, such as the Krios G4 cryo-TEM from Thermo Fisher Scientific, help to keep leaders in the pharmaceutical industry at the forefront of drug discovery.

Download this eBook to learn more about:

  • The single-particle analysis (SPA) workflow
  • Micro-electron diffraction (microED) using nanocrystals
  • The applications of cryo-EM in structure-based drug design
  • Scientists who are using this technique, including Nobel laureate Dr. Richard Henderson


Application NoteLife Sciences

Applications of cryo-electron microscopy

In this application note, Thermo Fisher Scientific introduces the versatility of cryo-EM and the variety of benefits made possible by this method. This application outlines how cryo-EM provides a better insight into all classes of biomolecules, including proteins that are difficult to work with.



Application NoteLife Sciences

MicroED and drug discovery

In this application note, Thermo Fisher Scientific outlines the method of micro-electron microscopy (microED) and the possibilities that microED has in the determination of the structure of proteins.


Application NoteLife Sciences

Practical recommendations for cryo-EM single particle analysis reconstruction

In this application note, Thermo Fisher Scientific details the main principles of image processing for single particle analysis (SPA) and details practical solutions to this rapidly evolving computational landscape. Multiple software packages have been suggested to combat the large data sets of electron microscopy images acquired and correlated during cryo-electron microscopy (cryo-EM) SPA.







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