Electron cryo-tomography (cryoET) is currently the only technique that allows the direct observation of proteins in their native cellular environment. Sub-volume averaging of electron tomograms offers a route to increase the signal-to-noise of repetitive biological structures, such improving the information content and interpretability of tomograms. We discuss the potential for sub-volume averaging in highlighting and investigating specific processes in situ, focusing on microtubule structure and viral infection. We show that (i) in situ sub-volume averaging from single tomograms can guide and complement segmentation of biological features, (ii) the in situ determination of the structure of individual viruses is possible as they infect a ce...
Electron cryotomography is a rapidly evolving method for imaging macromolecules directly within the ...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...
AbstractElectron cryo-tomography (cryoET) is currently the only technique that allows the direct obs...
Electron cryo-tomography (cryoET) is currently the only technique that allows the direct observation...
Electron cryo-tomography (cryoET) is currently the only technique that allows the direct observation...
Cryo-electron tomography (cryo-ET) allows three-dimensional (3D) visualization of frozen-hydrated bi...
Cryo-electron tomography (cryo-ET) allows three-dimensional (3D) visualization of frozen-hydrated bi...
In situ cryo-electron tomography (cryo-ET) and subtomogram averaging are powerful tools, able to pro...
Cryo-electron tomography provides low-resolution 3D views of cells, organelles, or viruses. Macromol...
Cryo-electron tomography (cryo-ET) allows 3D volumes to be reconstructed from a set of 2D projection...
Electron cryo-tomography (cET), in combination with sub‑volume averaging (SVA), is a powerful techni...
Cryo-electron tomography (cryo-ET) provides unprecedented insights into the molecular constituents o...
Cryo-electron tomography (cryo-ET) provides unprecedented insights into the molecular constituents o...
Cellular organelles and biological macromolecules such as proteins play a fundamental role in almost...
Electron cryotomography is a rapidly evolving method for imaging macromolecules directly within the ...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...
AbstractElectron cryo-tomography (cryoET) is currently the only technique that allows the direct obs...
Electron cryo-tomography (cryoET) is currently the only technique that allows the direct observation...
Electron cryo-tomography (cryoET) is currently the only technique that allows the direct observation...
Cryo-electron tomography (cryo-ET) allows three-dimensional (3D) visualization of frozen-hydrated bi...
Cryo-electron tomography (cryo-ET) allows three-dimensional (3D) visualization of frozen-hydrated bi...
In situ cryo-electron tomography (cryo-ET) and subtomogram averaging are powerful tools, able to pro...
Cryo-electron tomography provides low-resolution 3D views of cells, organelles, or viruses. Macromol...
Cryo-electron tomography (cryo-ET) allows 3D volumes to be reconstructed from a set of 2D projection...
Electron cryo-tomography (cET), in combination with sub‑volume averaging (SVA), is a powerful techni...
Cryo-electron tomography (cryo-ET) provides unprecedented insights into the molecular constituents o...
Cryo-electron tomography (cryo-ET) provides unprecedented insights into the molecular constituents o...
Cellular organelles and biological macromolecules such as proteins play a fundamental role in almost...
Electron cryotomography is a rapidly evolving method for imaging macromolecules directly within the ...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...
Advancements in the field of cryo-electron tomography have greatly contributed to our current unders...