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  2. Scanning electron cryomicroscopy - Wikipedia

    en.wikipedia.org/wiki/Scanning_electron_cryo...

    Scanning electron cryomicroscopy (CryoSEM) is a form of electron microscopy where a hydrated but cryogenically fixed sample is imaged on a scanning electron microscope's cold stage in a cryogenic chamber. The cooling is usually achieved with liquid nitrogen. [1]

  3. 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.

  4. Transmission electron cryomicroscopy - Wikipedia

    en.wikipedia.org/wiki/Transmission_electron_cryo...

    CryoTEM image of GroEL suspended in amorphous ice at 50 000 × magnification Structure of Alcohol oxidase from Pichia pastoris by CryoTEM. Transmission electron cryomicroscopy (CryoTEM), commonly known as cryo-EM, is a form of cryogenic electron microscopy, more specifically a type of transmission electron microscopy (TEM) where the sample is studied at cryogenic temperatures (generally liquid ...

  5. Cryogenic electron microscopy - Wikipedia

    en.wikipedia.org/wiki/Cryogenic_electron_microscopy

    Cryogenic transmission electron microscopy (cryo-TEM) is a transmission electron microscopy technique that is used in structural biology and materials science. Colloquially, the term "cryogenic electron microscopy" or its shortening "cryo-EM" refers to cryogenic transmission electron microscopy by default, as the vast majority of cryo-EM is ...

  6. Scanning transmission electron microscopy - Wikipedia

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

    Electron microscopy has accelerated research in materials science by quantifying properties and features from nanometer-resolution imaging with STEM, which is crucial in observing and confirming factors, such as thin film deposition, crystal growth, surface structure formation, and dislocation movement.

  7. Microcrystal electron diffraction - Wikipedia

    en.wikipedia.org/wiki/Microcrystal_electron...

    Microcrystal electron diffraction, or MicroED, [1] [2] is a CryoEM method that was developed by the Gonen laboratory in late 2013 at the Janelia Research Campus of the Howard Hughes Medical Institute. MicroED is a form of electron crystallography where thin 3D crystals are used for structure determination by electron diffraction. Prior to this ...

  8. Tomography - Wikipedia

    en.wikipedia.org/wiki/Tomography

    Tomography is imaging by sections or sectioning that uses any kind of penetrating wave. The method is used in radiology , archaeology , biology , atmospheric science , geophysics , oceanography , plasma physics , materials science , cosmochemistry , astrophysics , quantum information , and other areas of science .

  9. Electron resonance imaging - Wikipedia

    en.wikipedia.org/wiki/Electron_resonance_imaging

    Electron resonance imaging (ERI) is a preclinical imaging method, together with positron emission tomography (PET), computed tomography scan (CT scan), magnetic resonance imaging (MRI), and other techniques. ERI is dedicated to imaging small laboratory animals, and its unique feature is the ability to detect free radicals.

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