Results 211 to 220 of about 29,160 (257)
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Resin Embedding and Immunolabelling

1993
The major practical variables involved in resin embedding and immunolabelling have been dealt with in the preceding chapters, but in the discussions of these, other, more theoretical parameters were touched upon. A deeper understanding of such considerations may be important for “fine tuning” the sensitivity that can be obtained when labelling resin ...
Geoffrey R. Newman, Jan A. Hobot
openaire   +1 more source

‘Routine’ stains on osmicated resin embedded hepatic tissue

Pathology, 1982
The recently described modification of the osmium tetroxide method for demonstrating lipid can be used on liver biopsies taken for diagnostic purposes. An unstained section is used for the quantitation of the lipid and sequential sections can be stained by all the 'routine' liver stains.
P, Hall, R D, Smith, B M, Gormley
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A Technique for Simultaneous Microangiographic and Cytochemical Investigation of Resin-Embedded Tissues

Investigative Radiology, 1986
A method for simultaneous acquisition of information on cytochemical and microangiographic characteristics of tissue after perfusion with contrast medium was developed. The technique is based on the use of hydrosoluble resin as embedding material and is illustrated by the demonstration of gamma-glutamyltranspeptidase activity and of the ...
Van Dale, Patricia   +3 more
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Inexpensive holder for hand‐trimming resin‐embedded tissues

Microscopy Research and Technique, 2002
AbstractA simple and inexpensive mount for securely holding resin‐embedded tissues for trimming prior to sectioning for light or electron microscopy is described. The unit is composed of a base plate from which a 12.7‐mm drill chuck protrudes. A tissue block is clamped into a microtome chuck and that is mounted in the drill chuck. A standard dissecting
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Immunogold Labeling of Resin-Embedded Electron Microscopical Sections

2013
Knowledge about the spatio-temporal distribution patterns of proteins and other molecules of the cell is essential for understanding their function. A widely used technique is immunolabeling which uses specific antibodies to reveal the distribution of molecular components at various structural levels.
Ilse, Foissner, Margit, Hoeftberger
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Resin embedment of organs and postembedment localization of antigens by immunoperoxidase methods

Histochemistry, 1981
Various procedures for nonpolar and polar resin embedment were applied to mouse and rat livers for the study of postembedment immunolocalization of alpha 1-fetoprotein, albumin and the microsomal enzyme epoxide hydrolase. Fixations with formaldehyde and with formaldehyde-glutaraldehyde mixtures were used for tissue stabilization.
W D, Kuhlmann, R, Krischan
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Demonstration of lipids in plastic resin‐embedded sections of skin material

Journal of Microscopy, 2009
SummaryTwo different fluorescence stains, green: 5‐hexadecanoylaminofluorescein, and red: BODIPY® 665/676 [(E,E)‐3, 5‐bis‐(4‐phenyl‐1,3‐butadienyl)‐4,4‐difluoro‐4‐bora‐3a, 4a‐diaza‐s‐indacene, produced good results regarding the demonstration of glycolipids, free fatty acids and triglycerides in mammalian skin material that had been embedded in a water
W, Meyer   +4 more
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Polyester Resin Embedding for Sectioning of Hard and Soft Tissues

Stain Technology, 1960
Soft and calcareous tissues embedded in polyester resin may be cut on a sledge microtome to produce thin sections of 3-4 β thickness.
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Improving FIB-SEM Reconstructions By Using Epoxy Resin Embedding

ECS Meeting Abstracts, 2017
Focus ion beam-scanning electron microscopy (FIB-SEM) is a viable technique to visualize and reconstruct the morphology of polymer electrolyte membrane fuel cell (PEMFC) porous media, such as catalyst layers (CLs) (1,2) and micro-porous layers (MPLs) (3,4), with a high resolution of few nanometers. FIB-SEM provides morphological information about the
Mayank Sabharwal   +4 more
openaire   +1 more source

Improvements in Histological Techniques for Epoxy-Resin Embedded Bone Specimens

Stain Technology, 1981
A procedure is presented in which some of the processing difficulties with fixation, embedding and cutting whole mouse bones and large bone pieces from other species are considered. The bone specimens are fixed in acetone or by a Karnovsky-formol-saline process which preserves intact endosteal surface-to-cortex layers.
R H, Watts, D, Green, G R, Howells
openaire   +2 more sources

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