Zernike phase contrast cryo-electron microscopy (ZPC-cryoEM) is an emerging technique that is capable of producing higher image contrast than conventional cryoEM. By combining this technique with advanced image processing methods, we achieved subnanometer resolution for two biological specimens: 2D bacteriorhodopsin crystal and epsilon15 bacteriophage. For an asymmetric reconstruction of epsilon15 bacteriophage, ZPC-cryoEM can reduce the required amount of data by a factor of ~3, compared with conventional cryoEM. The reconstruction was carried out to 13 Å resolution without the need to correct the contrast transfer function. New structural features at the portal vertex of the epsilon15 bacteriophage are revealed in this reconstruction. Usi...
Cryo electron microscopy (cryo-EM), a key method for structure determination involves imaging purifi...
Transmission electron microscopy has provided most of what is known about the ultrastructural organi...
With the advent of direct electron detectors, the perspectives of cryo-electron microscopy (cryo-EM)...
SummarySingle particle reconstruction from cryoelectron microscopy images, though emerging as a powe...
Phase plates (PPs) are beneficial devices to improve the phase contrast of life-science objects in c...
In electron cryomicroscopy (cryo-EM), molecular images of vitrified biological samples are obtained ...
AbstractCryo-electron tomography together with averaging of sub-tomograms containing identical parti...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Nanometer resolution inside the cell will allow us to study the fundamentals of life at the smallest...
Cryo-electron microscopy (cryo-EM) is a structural molecular and cellular biology technique that has...
AbstractModern methods of cryo electron microscopy and tomography allow visualization of protein nan...
Cryo‐electron microscopy (cryo‐EM) enables unprecedented insight into the molecular machinery that d...
Electron cryo-tomography (cET), in combination with sub‑volume averaging (SVA), is a powerful techni...
SummaryCryo-electron microscopy (cryo-EM) is a powerful technique for 3D structure determination of ...
Zernike phase-plate (ZPP) imaging greatly increases contrast in cryo-electron microscopy, however fr...
Cryo electron microscopy (cryo-EM), a key method for structure determination involves imaging purifi...
Transmission electron microscopy has provided most of what is known about the ultrastructural organi...
With the advent of direct electron detectors, the perspectives of cryo-electron microscopy (cryo-EM)...
SummarySingle particle reconstruction from cryoelectron microscopy images, though emerging as a powe...
Phase plates (PPs) are beneficial devices to improve the phase contrast of life-science objects in c...
In electron cryomicroscopy (cryo-EM), molecular images of vitrified biological samples are obtained ...
AbstractCryo-electron tomography together with averaging of sub-tomograms containing identical parti...
Biological macromolecules such as enzymes are nanoscale machines. This is true in a concrete sense: ...
Nanometer resolution inside the cell will allow us to study the fundamentals of life at the smallest...
Cryo-electron microscopy (cryo-EM) is a structural molecular and cellular biology technique that has...
AbstractModern methods of cryo electron microscopy and tomography allow visualization of protein nan...
Cryo‐electron microscopy (cryo‐EM) enables unprecedented insight into the molecular machinery that d...
Electron cryo-tomography (cET), in combination with sub‑volume averaging (SVA), is a powerful techni...
SummaryCryo-electron microscopy (cryo-EM) is a powerful technique for 3D structure determination of ...
Zernike phase-plate (ZPP) imaging greatly increases contrast in cryo-electron microscopy, however fr...
Cryo electron microscopy (cryo-EM), a key method for structure determination involves imaging purifi...
Transmission electron microscopy has provided most of what is known about the ultrastructural organi...
With the advent of direct electron detectors, the perspectives of cryo-electron microscopy (cryo-EM)...