The resolution achieved in low-dose electron microscopy of biological macromolecules is significantly worse than what can be obtained on the same microscopes with more robust specimens. When two-dimensional crystals are used, it is also apparent that the high-resolution image contrast is much less than what it could be if the images were perfect. Since specimen charging is one factor that might limit the contrast and resolution achieved with biological specimens, we have investigated the use of holey support films that have been coated with a metallic film before depositing specimens onto a thin carbon film that is suspended over the holes. Monolayer crystals of paraffin (C44H90) are used as a test specimen for this work because of t...
Macromolecular machines carry out many cellular functions. Cryo-electron microscopy (cryo-EM) is eme...
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...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significantl...
Commercially available electron microscopes routinely provide resolution of some 2-4 Å, as determine...
Electron microscopy (EM) in combination with image analysis is a powerful technique to study protein...
Electron microscopy (EM) in combination with image analysis is a powerful technique to study protein...
Background: In standard transmission electron microscopy (TEM), biological samples are supported on ...
Atomically resolved images of monolayer organic crystals have only been obtained with scanning probe...
Electron Microscopy can now determine the structure of a biological macromolecule at a resolution th...
Cryo electron tomography is a three-dimensional imaging technique that is suitable for imaging snaps...
International audienceElectron microscopy is a powerful tool for studying the homogeneity and struct...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Data collection by electron diffraction and electron microscopy at high resolution and high tilt ang...
Macromolecular machines carry out many cellular functions. Cryo-electron microscopy (cryo-EM) is eme...
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...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significantl...
Commercially available electron microscopes routinely provide resolution of some 2-4 Å, as determine...
Electron microscopy (EM) in combination with image analysis is a powerful technique to study protein...
Electron microscopy (EM) in combination with image analysis is a powerful technique to study protein...
Background: In standard transmission electron microscopy (TEM), biological samples are supported on ...
Atomically resolved images of monolayer organic crystals have only been obtained with scanning probe...
Electron Microscopy can now determine the structure of a biological macromolecule at a resolution th...
Cryo electron tomography is a three-dimensional imaging technique that is suitable for imaging snaps...
International audienceElectron microscopy is a powerful tool for studying the homogeneity and struct...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Data collection by electron diffraction and electron microscopy at high resolution and high tilt ang...
Macromolecular machines carry out many cellular functions. Cryo-electron microscopy (cryo-EM) is eme...
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...