During the recent employment of field emission (FE) in-lens scanning electron microscopes (SEMs), refractory metal deposition technology has co-evolved to provide enhanced contrast of 1-10 nm hydrocarbon based biological structures imaged at high magnifications (\u3e 200,000 times). Pioneer development employing the Penning sputter system in a high vacuum chamber proved that imaging of chromium (Cr) coated biological specimens contained enriched secondary electron (SE)-(I) contrasts. Single nanometer size fibrillar and particulate ectodomains within the context of complex biological membranes were accurately imaged without significant enlargement using the high resolution SE-I mode (HRSEM). This paper reports the transmission electron micro...
Scanning electron microscopy (SEM) is an important tool for the nanometre-scale analysis of the vari...
In this paper, we describe hollow-cone dark field (HCDF) transmission electron microscopy (TEM) imag...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significantl...
Backscattered electron (BSE) imaging was used to display heavy metal stained biological structures o...
At useful magnifications of 100,000 to 200,000 times, high topographic resolution becomes possible o...
An ultra high resolution scanning electron microscope, which is composed of a cold cathode field emi...
A comparison of conventional high vacuum scanning electron microscopy (HVSEM), environmental SEM (ES...
Small particles (Cu, Ag, In, Sn, Au, also MgO and NaCl) were prepared in the diameter range from 1 n...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significant...
Visualization of structural details of specimens in field emission scanning electron microscopy (FE-...
Pathologists generally examine micrometer-thin tissue slices by means of brightfield light microscop...
Cryotechniques must be employed throughout all preparation and observation steps in order to extract...
To study the obtainable resolution and the extractable surface information in scanning electron micr...
By modifying freeze-fracture replication, a standard electron microscopy fixation technique, for use...
Scanning tunneling microscopy (STM) is capable of atomic resolution and is ideally suited for imagin...
Scanning electron microscopy (SEM) is an important tool for the nanometre-scale analysis of the vari...
In this paper, we describe hollow-cone dark field (HCDF) transmission electron microscopy (TEM) imag...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significantl...
Backscattered electron (BSE) imaging was used to display heavy metal stained biological structures o...
At useful magnifications of 100,000 to 200,000 times, high topographic resolution becomes possible o...
An ultra high resolution scanning electron microscope, which is composed of a cold cathode field emi...
A comparison of conventional high vacuum scanning electron microscopy (HVSEM), environmental SEM (ES...
Small particles (Cu, Ag, In, Sn, Au, also MgO and NaCl) were prepared in the diameter range from 1 n...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significant...
Visualization of structural details of specimens in field emission scanning electron microscopy (FE-...
Pathologists generally examine micrometer-thin tissue slices by means of brightfield light microscop...
Cryotechniques must be employed throughout all preparation and observation steps in order to extract...
To study the obtainable resolution and the extractable surface information in scanning electron micr...
By modifying freeze-fracture replication, a standard electron microscopy fixation technique, for use...
Scanning tunneling microscopy (STM) is capable of atomic resolution and is ideally suited for imagin...
Scanning electron microscopy (SEM) is an important tool for the nanometre-scale analysis of the vari...
In this paper, we describe hollow-cone dark field (HCDF) transmission electron microscopy (TEM) imag...
The resolution achieved in low-dose electron microscopy of biological macromolecules is significantl...