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- W1517498636 abstract "Abstract Scanning transmission electron microscopes (STEMs) can both measure the mass of single-protein complexes and take amazingly clear images of such complexes, offering a wide range of applications in structural biology. The scanning electron beam focused to a diameter of a few Angstroms irradiates a roughly cylindrical volume of a thin sample. All atoms of this cylinder scatter electrons elastically and inelastically according to their scattering cross sections. Because no postspecimen optical system is required, essentially all scattered electrons can be captured and used for quantitative measurements. This chapter describes the image formation in the STEM, the principle of mass measurements, and presents a few studies achieved with the Vacuum Generators HB-5 STEM in Basel. The chapter concludes with the proposal to use STEM for single-cell proteomics." @default.
- W1517498636 created "2016-06-24" @default.
- W1517498636 creator A5052940235 @default.
- W1517498636 date "2009-01-01" @default.
- W1517498636 modified "2023-09-26" @default.
- W1517498636 title "Chapter 9 Scanning Transmission Electron Microscopy" @default.
- W1517498636 cites W1483391222 @default.
- W1517498636 cites W1489223104 @default.
- W1517498636 cites W1495485410 @default.
- W1517498636 cites W1627200602 @default.
- W1517498636 cites W1966142683 @default.
- W1517498636 cites W1967074928 @default.
- W1517498636 cites W1972313819 @default.
- W1517498636 cites W1972505318 @default.
- W1517498636 cites W1972875466 @default.
- W1517498636 cites W1976341997 @default.
- W1517498636 cites W1976878585 @default.
- W1517498636 cites W1978546199 @default.
- W1517498636 cites W1978702162 @default.
- W1517498636 cites W1979728079 @default.
- W1517498636 cites W1980627844 @default.
- W1517498636 cites W1982434218 @default.
- W1517498636 cites W1982766931 @default.
- W1517498636 cites W1982890417 @default.
- W1517498636 cites W1983265530 @default.
- W1517498636 cites W1984623612 @default.
- W1517498636 cites W1986081616 @default.
- W1517498636 cites W1986901576 @default.
- W1517498636 cites W1987692943 @default.
- W1517498636 cites W1988200446 @default.
- W1517498636 cites W1991935588 @default.
- W1517498636 cites W1993811485 @default.
- W1517498636 cites W1999959206 @default.
- W1517498636 cites W2001444550 @default.
- W1517498636 cites W2002923234 @default.
- W1517498636 cites W2003294049 @default.
- W1517498636 cites W2003555070 @default.
- W1517498636 cites W2006668901 @default.
- W1517498636 cites W2007179625 @default.
- W1517498636 cites W2009324686 @default.
- W1517498636 cites W2014098520 @default.
- W1517498636 cites W2014363966 @default.
- W1517498636 cites W2014572457 @default.
- W1517498636 cites W2015507578 @default.
- W1517498636 cites W2015810828 @default.
- W1517498636 cites W2016399127 @default.
- W1517498636 cites W2019228627 @default.
- W1517498636 cites W2027514447 @default.
- W1517498636 cites W2028670901 @default.
- W1517498636 cites W2028693401 @default.
- W1517498636 cites W2029135982 @default.
- W1517498636 cites W2032191900 @default.
- W1517498636 cites W2032340564 @default.
- W1517498636 cites W2033117797 @default.
- W1517498636 cites W2037426274 @default.
- W1517498636 cites W2039817895 @default.
- W1517498636 cites W2041562931 @default.
- W1517498636 cites W2043311624 @default.
- W1517498636 cites W2046842356 @default.
- W1517498636 cites W2050223615 @default.
- W1517498636 cites W2055010027 @default.
- W1517498636 cites W2060652579 @default.
- W1517498636 cites W2065990760 @default.
- W1517498636 cites W2066828546 @default.
- W1517498636 cites W2070132395 @default.
- W1517498636 cites W2074007203 @default.
- W1517498636 cites W2087180492 @default.
- W1517498636 cites W2087616636 @default.
- W1517498636 cites W2087906849 @default.
- W1517498636 cites W2089487790 @default.
- W1517498636 cites W2090516793 @default.
- W1517498636 cites W2095886050 @default.
- W1517498636 cites W2103972113 @default.
- W1517498636 cites W2113582587 @default.
- W1517498636 cites W2114462637 @default.
- W1517498636 cites W2117118343 @default.
- W1517498636 cites W2125172857 @default.
- W1517498636 cites W2125629903 @default.
- W1517498636 cites W2132197680 @default.
- W1517498636 cites W2136369625 @default.
- W1517498636 cites W2144447780 @default.
- W1517498636 cites W2146973585 @default.
- W1517498636 cites W2148846022 @default.
- W1517498636 cites W2152993287 @default.
- W1517498636 cites W2154100802 @default.
- W1517498636 cites W2157725069 @default.
- W1517498636 cites W2161230811 @default.
- W1517498636 cites W2167869105 @default.
- W1517498636 cites W941663553 @default.
- W1517498636 doi "https://doi.org/10.1016/s1076-5670(09)59009-x" @default.
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