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  In-focus electron microscopy of frozen-hydrated biological samples with a Boersch phase plate

Barton, B., Rhinow, D., Walter, A., Schröder, R., Benner, G., Majorovits, E., et al. (2011). In-focus electron microscopy of frozen-hydrated biological samples with a Boersch phase plate. Ultramicroscopy, 111(12), 1696-1705. doi:S0304-3991(11)00225-7 [pii];10.1016/j.ultramic.2011.09.007 [doi].

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Barton, B., Autor
Rhinow, D., Autor
Walter, A., Autor
Schröder, R., Autor
Benner, G., Autor
Majorovits, E., Autor
Matijevic, M., Autor
Niebel, H., Autor
Müller, H., Autor
Haider, M., Autor
Lacher, M.1, Autor           
Schmitz, S.1, Autor           
Holik, P.1, Autor           
Kühlbrandt, W., Autor
Affiliations:
1Micro Systems Technology, Center of Advanced European Studies and Research (caesar), Max Planck Society, ou_2173685              

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Schlagwörter: MICROSCOPY
 Zusammenfassung: We report the implementation of an electrostatic Einzel lens (Boersch) phase plate in a prototype transmission electron microscope dedicated to aberration-corrected cryo-EM. The combination of phase plate, C(s) corrector and Diffraction Magnification Unit (DMU) as a new electron-optical element ensures minimal information loss due to obstruction by the phase plate and enables in-focus phase contrast imaging of large macromolecular assemblies. As no defocussing is necessary and the spherical aberration is corrected, maximal, non-oscillating phase contrast transfer can be achieved up to the information limit of the instrument. A microchip produced by a scalable micro-fabrication process has 10 phase plates, which are positioned in a conjugate, magnified diffraction plane generated by the DMU. Phase plates remained fully functional for weeks or months. The large distance between phase plate and the cryo sample permits the use of an effective anti-contaminator, resulting in ice contamination rates of <0.6nm/h at the specimen. Maximal in-focus phase contrast was obtained by applying voltages between 80 and 700mV to the phase plate electrode. The phase plate allows for in-focus imaging of biological objects with a signal-to-noise of 5-10 at a resolution of 2-3nm, as demonstrated for frozen-hydrated virus particles and purple membrane at liquid-nitrogen temperature

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 Datum: 2011
 Publikationsstatus: Erschienen
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Titel: Ultramicroscopy
  Alternativer Titel : Ultramicroscopy
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 111 (12) Artikelnummer: - Start- / Endseite: 1696 - 1705 Identifikator: -