Scanning electron microscopy (SEM) is increasing its application in life sciences for electron density measurements of ultrathin sections. These are traditionally analyzed with transmission electron microscopy (TEM); by most labs, SEM analysis still is associated with surface imaging only. Here we report several advantages of SEM for thin sections over TEM, both for structural inspection, as well as analyzing immuno-targeted labels such as quantum dots (QDs) and gold, where we find that QD-labeling is ten times more efficient than gold-labeling. Furthermore, we find that omitting post-staining with uranyl and lead leads to QDs readily detectable over the ultrastructure, but under these conditions ultrastructural contrast was even almost inv...
Electron microscopy (EM) entered a new era with the emergence of direct electron detectors and new n...
Transmission Electron Microscopy (TEM) is used to provide descriptive, morphological information and...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...
Scanning electron microscopy (SEM) is increasing its application in life sciences for electron densi...
Scanning electron microscopy (SEM) use in the biomedical sciences has traditionally been used for ch...
Pathologists generally examine micrometer-thin tissue slices by means of brightfield light microscop...
The addition of a transmitted electron detector to a scanning electron microscope (SEM) allows the r...
A method is described whereby quantum dot (QD) nanoparticles can be used for correlative immunocytoc...
Cellular complexity is unraveled at nanometer resolution using electron microscopy (EM), but interpr...
Nanometer-scale identification of multiple targets is crucial to understand how biomolecules regulat...
Electron microscopy (EM) entered a new era with the emergence of direct electron detectors and new n...
Confocal microscopy imaging of cells allows to visualize the presence of specific antigens by using ...
International audienceTransmission Electron Microscopy (TEM) is currently the only method that enabl...
A capability for scanning electron microscopy of wet biological specimens is presented. A membrane t...
Scanning electron microscopy (SEM) is an important tool for the nanometre-scale analysis of the vari...
Electron microscopy (EM) entered a new era with the emergence of direct electron detectors and new n...
Transmission Electron Microscopy (TEM) is used to provide descriptive, morphological information and...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...
Scanning electron microscopy (SEM) is increasing its application in life sciences for electron densi...
Scanning electron microscopy (SEM) use in the biomedical sciences has traditionally been used for ch...
Pathologists generally examine micrometer-thin tissue slices by means of brightfield light microscop...
The addition of a transmitted electron detector to a scanning electron microscope (SEM) allows the r...
A method is described whereby quantum dot (QD) nanoparticles can be used for correlative immunocytoc...
Cellular complexity is unraveled at nanometer resolution using electron microscopy (EM), but interpr...
Nanometer-scale identification of multiple targets is crucial to understand how biomolecules regulat...
Electron microscopy (EM) entered a new era with the emergence of direct electron detectors and new n...
Confocal microscopy imaging of cells allows to visualize the presence of specific antigens by using ...
International audienceTransmission Electron Microscopy (TEM) is currently the only method that enabl...
A capability for scanning electron microscopy of wet biological specimens is presented. A membrane t...
Scanning electron microscopy (SEM) is an important tool for the nanometre-scale analysis of the vari...
Electron microscopy (EM) entered a new era with the emergence of direct electron detectors and new n...
Transmission Electron Microscopy (TEM) is used to provide descriptive, morphological information and...
Recently, a number of nanoparticle carriers have provided new platforms for research in biotechnolog...