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  2. Scanning electron microscope - Wikipedia

    en.wikipedia.org/wiki/Scanning_electron_microscope

    An account of the early history of scanning electron microscopy has been presented by McMullan. [2] [3] Although Max Knoll produced a photo with a 50 mm object-field-width showing channeling contrast by the use of an electron beam scanner, [4] it was Manfred von Ardenne who in 1937 invented [5] a microscope with high resolution by scanning a very small raster with a demagnified and finely ...

  3. Transmission electron microscopy - Wikipedia

    en.wikipedia.org/wiki/Transmission_electron...

    The duplicate of an early TEM on display at the Deutsches Museum in Munich, Germany A transmission electron microscope (1976). In 1873, Ernst Abbe proposed that the ability to resolve detail in an object was limited approximately by the wavelength of the light used in imaging or a few hundred nanometres for visible light microscopes.

  4. Electron microscope - Wikipedia

    en.wikipedia.org/wiki/Electron_microscope

    Reproduction of an early electron microscope constructed by Ernst Ruska in the 1930s. Many developments laid the groundwork of the electron optics used in microscopes. [2] One significant step was the work of Hertz in 1883 [3] who made a cathode-ray tube with electrostatic and magnetic deflection, demonstrating manipulation of the direction of an electron beam.

  5. Scanning transmission electron microscopy - Wikipedia

    en.wikipedia.org/wiki/Scanning_transmission...

    A scanning transmission electron microscope (STEM) is a type of transmission electron microscope (TEM). Pronunciation is [stɛm] or [ɛsti:i:ɛm]. As with a conventional transmission electron microscope (CTEM), images are formed by electrons passing through a sufficiently thin specimen. However, unlike CTEM, in STEM the electron beam is focused ...

  6. Electron crystallography - Wikipedia

    en.wikipedia.org/wiki/Electron_crystallography

    In addition to electron microscopy images, it is also possible to use electron diffraction (ED) patterns for crystal structure determination. [ 60 ] [ 61 ] The utmost care must be taken to record such ED patterns from the thinnest areas in order to keep most of the structure related intensity differences between the reflections (quasi ...

  7. Live-cell imaging - Wikipedia

    en.wikipedia.org/wiki/Live-cell_imaging

    Live-cell imaging is the study of living cells using time-lapse microscopy. It is used by scientists to obtain a better understanding of biological function through the study of cellular dynamics. [1] Live-cell imaging was pioneered in the first decade of the 21st century.

  8. Micrograph - Wikipedia

    en.wikipedia.org/wiki/Micrograph

    This is opposed to a macrograph or photomacrograph, an image which is also taken on a microscope but is only slightly magnified, usually less than 10 times. Micrography is the practice or art of using microscopes to make photographs. A photographic micrograph is a photomicrograph, and one taken with an electron microscope is an electron micrograph.

  9. Cryogenic electron tomography - Wikipedia

    en.wikipedia.org/wiki/Cryogenic_electron_tomography

    In most other electron microscopy-based methods for imaging biological samples, combining the signal from many different sample copies has been the general way of surpassing this problem (e.g. crystallography, single particle analysis). In cryoET, instead of taking many images of different sample copies, many images are taken of one area.

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