Sample preparation is critical to biological electron microscopy (EM), and there have been continuous efforts on optimizing the procedures to best preserve structures of interest in the sample. However, a quantitative characterization of the morphological changes associated with each step in EM sample preparation is currently lacking. Using correlative EM and superresolution microscopy (SRM), we have examined the effects of different drying methods as well as osmium tetroxide (OsO4) post-fixation on cell morphology during scanning electron microscopy (SEM) sample preparation. Here, SRM images of the sample acquired under hydrated conditions were used as a baseline for evaluating morphological changes as the sample went through SEM sample pr...
Common problems in the processing of biological samples for observations with the scanning electron ...
Time-of-flight secondary ion mass spectrometry (TOF-SIMS) is a promising tool for subcellular chemic...
Intracellular structures of embedded biological tissues (rat kidney, myocardium and small intestine)...
Sample preparation is critical to biological electron microscopy (EM), and there have been continuou...
Sample preparation for scanning electron microscope analysis involves reagents and equipment that ar...
A method of direct visualization of cell organelles by scanning electron microscopy (SEM) is describ...
A comparison of conventional high vacuum scanning electron microscopy (HVSEM), environmental SEM (ES...
The combined application of electron microscopy (EM) is frequently used for the microstructural inve...
Cryotechniques must be employed throughout all preparation and observation steps in order to extract...
Preparing biological specimens for scanning electron microscopy (SEM) can be difficult to implement,...
International audienceCell adhesion is involved in many cellular processes such as proliferation, mi...
Electron microscopy (EM) is used to provide descriptive, morphological information and plays importa...
The standard preparation of cell suspensions (e.g., blood cells, cell suspensions derived from monol...
This study investigates the potential of environmental scanning electron microscopy (ESEM) for use i...
The use of environmental scanning electron microscopy in biology is growing as more becomes understo...
Common problems in the processing of biological samples for observations with the scanning electron ...
Time-of-flight secondary ion mass spectrometry (TOF-SIMS) is a promising tool for subcellular chemic...
Intracellular structures of embedded biological tissues (rat kidney, myocardium and small intestine)...
Sample preparation is critical to biological electron microscopy (EM), and there have been continuou...
Sample preparation for scanning electron microscope analysis involves reagents and equipment that ar...
A method of direct visualization of cell organelles by scanning electron microscopy (SEM) is describ...
A comparison of conventional high vacuum scanning electron microscopy (HVSEM), environmental SEM (ES...
The combined application of electron microscopy (EM) is frequently used for the microstructural inve...
Cryotechniques must be employed throughout all preparation and observation steps in order to extract...
Preparing biological specimens for scanning electron microscopy (SEM) can be difficult to implement,...
International audienceCell adhesion is involved in many cellular processes such as proliferation, mi...
Electron microscopy (EM) is used to provide descriptive, morphological information and plays importa...
The standard preparation of cell suspensions (e.g., blood cells, cell suspensions derived from monol...
This study investigates the potential of environmental scanning electron microscopy (ESEM) for use i...
The use of environmental scanning electron microscopy in biology is growing as more becomes understo...
Common problems in the processing of biological samples for observations with the scanning electron ...
Time-of-flight secondary ion mass spectrometry (TOF-SIMS) is a promising tool for subcellular chemic...
Intracellular structures of embedded biological tissues (rat kidney, myocardium and small intestine)...