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Titlebook: Biological Low-Voltage Scanning Electron Microscopy; Heide Schatten,James B. Pawley Book 2008 Springer-Verlag New York 2008 biology.cell.c

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Developments in Instrumentation for Microanalysis in Low-Voltage Scanning Electron Microscopy,ured may become practically inaccessible at concentrations below 0.1 mass fraction, or even higher. New developments in x-ray spectrometry techniques, including optic-augmented wavelength-dispersive spectrometry and microcalorimeter energy-dispersive x-ray spectrometry, will improve the analysis sit
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lications of FESEM in biological samples. It provides a comprehensive explanation of instrumentation, applications, and protocols, and is intended to teach the reader how to operate such microscopes to obtain the best quality images..978-1-4899-9584-1978-0-387-72972-5
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https://doi.org/10.1007/978-3-8348-9277-5 chapter are 1) Visualization of sub-membranous cytoskeletal features using cytoskeleton stabilization and membrane extraction protocols. Two examples of different specimens in this section are (1.1) subpellicular cytoskeletal structures of the apicomplexan parasite ., and (1.2) submembraneous actin
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https://doi.org/10.1007/978-3-8351-9105-1 method developed specifically for frozen-hydrated bulk samples: doublelayer coating. In this approach, the frozen sample is coated in a manner similar to that used to produce a TEM-replica, e.g., with a shadow of platinum (at an angle of 45°) followed by an additional layer of carbon. The sample is
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Molecular Labeling for Correlative Microscopy: LM, LVSEM, TEM, EF-TEM and HVEM,
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