Macromolecular structural determination by Electron Microscopy under cryogenic conditions is revolutionizing the field of structural biology, interesting a large community of potential users. Still, the path from raw images to density maps is complex, and sophisticated image processing suites are required in this process, often demanding the installation and understanding of different software packages. Here, we present Scipion Web Tools, a web-based set of tools/workflows derived from the Scipion image processing framework, specially tailored to nonexpert users in need of very precise answers at several key stages of the structural elucidation process
Single particle cryo-EM has recently developed into a powerful tool to determine the 3D structure of...
© 2014 John Wiley & Sons, Ltd. Cryo-electron microscopy is a powerful technique for the determinatio...
A protein\u27s 3D structure is the key to understanding its biological function. In recent years, cr...
In order to correctly curatedata from Cryo Electron Microscopy experiments according to FAIR (Findab...
International audienceImage processing in cryogenic electron tomography (cryoET) is currently at a s...
Technological advances in transmission electron microscopes and detectors have turned cryogenic elec...
International audienceUnderstanding how structure and function meet to drive biological processes is...
With the help of modern techniques of imaging processing and computing, image data obtained by elect...
New instrumentation for cryo electron microscopy (cryoEM) has significantly increased data collectio...
Structures of biological complexes are crucial for triggering the discovery of new drugs and vaccine...
Three dimensional electron microscopy is becoming a very data-intensive field in which vast amounts ...
Cryo-electron microscopy (cryo-EM) is a structural molecular and cellular biology technique that has...
Cryo‐electron microscopy (cryo‐EM) enables unprecedented insight into the molecular machinery that d...
Transmission electron microscopy (EM) is a versatile technique that can be used to image biological ...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Single particle cryo-EM has recently developed into a powerful tool to determine the 3D structure of...
© 2014 John Wiley & Sons, Ltd. Cryo-electron microscopy is a powerful technique for the determinatio...
A protein\u27s 3D structure is the key to understanding its biological function. In recent years, cr...
In order to correctly curatedata from Cryo Electron Microscopy experiments according to FAIR (Findab...
International audienceImage processing in cryogenic electron tomography (cryoET) is currently at a s...
Technological advances in transmission electron microscopes and detectors have turned cryogenic elec...
International audienceUnderstanding how structure and function meet to drive biological processes is...
With the help of modern techniques of imaging processing and computing, image data obtained by elect...
New instrumentation for cryo electron microscopy (cryoEM) has significantly increased data collectio...
Structures of biological complexes are crucial for triggering the discovery of new drugs and vaccine...
Three dimensional electron microscopy is becoming a very data-intensive field in which vast amounts ...
Cryo-electron microscopy (cryo-EM) is a structural molecular and cellular biology technique that has...
Cryo‐electron microscopy (cryo‐EM) enables unprecedented insight into the molecular machinery that d...
Transmission electron microscopy (EM) is a versatile technique that can be used to image biological ...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Single particle cryo-EM has recently developed into a powerful tool to determine the 3D structure of...
© 2014 John Wiley & Sons, Ltd. Cryo-electron microscopy is a powerful technique for the determinatio...
A protein\u27s 3D structure is the key to understanding its biological function. In recent years, cr...