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Commonsense and common nonsense opinions: PROSPECTS for further reducing beam damage in electron microscopy of radiation-sensitive specimens
2025/05/01 by
Robert M. Glaeser
paper
· doi:10.1016/j.ultramic.2025.114118
Citations
On the reduction in the effects of radiation damage to two-dimensional crystals of organic and biological molecules at liquid-helium temperature
Imaging biological macromolecules in thick specimens: The role of inelastic scattering in cryoEM
Aberration-corrected transmission electron microscopy with Zernike phase plates
Reducing electron beam damage through alternative STEM scanning strategies. Part II -- Attempt towards an empirical model describing the damage process
Reducing electron beam damage through alternative STEM scanning strategies, Part II: Attempt towards an empirical model describing the damage process
Reducing electron beam damage through alternative STEM scanning\n strategies. Part I -- Experimental findings
Reducing electron beam damage through alternative STEM scanning strategies, Part I: Experimental findings
Resolving individual atoms of protein complex by cryo-electron microscopy
Ultra-high contrast STEM imaging for segmented/pixelated detectors by maximizing the signal-to-noise ratio
Multi-pass transmission electron microscopy
Designs for a Quantum Electron Microscope
Control of radiation damage in the TEM
Effect of a Physical Phase Plate on Contrast Transfer in an Aberration-Corrected Transmission Electron Microscope
Interaction-Free Measurement
Beam and Specimen: Radiation Damage and Image Resolution