BACKGROUND INFORMATION: Electron microscopic immunolabelling of ultrathin thawed cryo-sections, according to the method of Tokuyasu, is widely used as a very sensitive high-resolution localization technique. Its main advantages are that antigens remain in a hydrated environment prior to immunolabelling, and that antigen accessibility is improved compared with resin section labelling. However, the quality of structural appearance and antigenicity depends highly on the limitations of the initial conventional chemical fixation step, such as slow diffusion and selective reaction/cross-linking of fixative molecules. RESULTS AND CONCLUSIONS: Cryofixation, instead of conventional chemical fixation, followed by freeze-substitution/chemical fixation...
Les coupes à congélation ultrafines sont idéales pour l'analyse et la localisation des éléments dans...
Electron microscopy (EM) offers unparalleled power to study cell substructures at the nanoscale. Cry...
The resolution of conventional light microscopy is limited to approximately 200 nm in the x- and y-a...
11 p. : il.Cryo-ultramicrotomy can be used to obtain ultrathin cryo-sections from cryo-fixed or alde...
INTRODUCTIONCryosections are rapidly and relatively easily prepared prior to fixation, and they prov...
We present an approach for the preparation of immuno-labelled ultrathin sections from cells or tissu...
The key preparation steps in the Tokuyasu thawed frozen section technique for immunocytochemistry, n...
At present, the importance of sample preparation equipment for electron microscopy represents the dr...
Since the pioneering work of Kiyoteru Tokuyasu in the 70ths the use of thawed cryosections prepared ...
International audienceCryo-sectioning procedures, initially develop by Tokuyasu have been successful...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
A description of ultrathin frozen sectioning is presented. Small pieces of lightly-fixed but unembed...
Over the years Transmission Electron Microscopy (TEM) has evolved into a powerful technique for the ...
Cryo-sectioning procedures, initially developed by Tokuyasu, have been successfully improved for tis...
Cryo-fixation enables the preservation of the fine structures of intracellular organelles in a condi...
Les coupes à congélation ultrafines sont idéales pour l'analyse et la localisation des éléments dans...
Electron microscopy (EM) offers unparalleled power to study cell substructures at the nanoscale. Cry...
The resolution of conventional light microscopy is limited to approximately 200 nm in the x- and y-a...
11 p. : il.Cryo-ultramicrotomy can be used to obtain ultrathin cryo-sections from cryo-fixed or alde...
INTRODUCTIONCryosections are rapidly and relatively easily prepared prior to fixation, and they prov...
We present an approach for the preparation of immuno-labelled ultrathin sections from cells or tissu...
The key preparation steps in the Tokuyasu thawed frozen section technique for immunocytochemistry, n...
At present, the importance of sample preparation equipment for electron microscopy represents the dr...
Since the pioneering work of Kiyoteru Tokuyasu in the 70ths the use of thawed cryosections prepared ...
International audienceCryo-sectioning procedures, initially develop by Tokuyasu have been successful...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
A description of ultrathin frozen sectioning is presented. Small pieces of lightly-fixed but unembed...
Over the years Transmission Electron Microscopy (TEM) has evolved into a powerful technique for the ...
Cryo-sectioning procedures, initially developed by Tokuyasu, have been successfully improved for tis...
Cryo-fixation enables the preservation of the fine structures of intracellular organelles in a condi...
Les coupes à congélation ultrafines sont idéales pour l'analyse et la localisation des éléments dans...
Electron microscopy (EM) offers unparalleled power to study cell substructures at the nanoscale. Cry...
The resolution of conventional light microscopy is limited to approximately 200 nm in the x- and y-a...