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  2. File:Human Cheek Epithelial Cells - How to Prepare a Wet ...

    en.wikipedia.org/wiki/File:Human_Cheek...

    Date/Time Thumbnail Dimensions User Comment; current: 12:22, 6 April 2014: 3 min 52 s, 480 × 360 (7.38 MB): Jacopo Werther == {{int:filedesc}} == {{Information |Description = Step-by-step video and audio instructions on how to prepare a wet mount specimen of eukaryotic animal cells; specifically Human epithelial cells from the inside of the cheek.

  3. Quantum microscopy - Wikipedia

    en.wikipedia.org/wiki/Quantum_microscopy

    Quantum microscopy allows microscopic properties of matter and quantum particles to be measured and imaged. Various types of microscopy use quantum principles. The first microscope to do so was the scanning tunneling microscope, which paved the way for development of the photoionization microscope and the quantum entanglement microscope.

  4. Nuclear envelope - Wikipedia

    en.wikipedia.org/wiki/Nuclear_envelope

    The actual shape of the nuclear envelope is irregular. It has invaginations and protrusions and can be observed with an electron microscope. A volumetric surface render (red) of the nuclear envelope of one HeLa cell. The cell was observed in 300 slices of electron microscopy, the nuclear envelope was automatically segmented and rendered. One ...

  5. Cell nucleus - Wikipedia

    en.wikipedia.org/wiki/Cell_nucleus

    The cell nucleus (from Latin nucleus or nuculeus 'kernel, seed'; pl.: nuclei) is a membrane-bound organelle found in eukaryotic cells.Eukaryotic cells usually have a single nucleus, but a few cell types, such as mammalian red blood cells, have no nuclei, and a few others including osteoclasts have many.

  6. Atomic force microscopy - Wikipedia

    en.wikipedia.org/wiki/Atomic_force_microscopy

    Binnig invented [6] the atomic force microscope and the first experimental implementation was made by Binnig, Quate and Gerber in 1986. [8] The first commercially available atomic force microscope was introduced in 1989. The AFM is one of the foremost tools for imaging, measuring, and manipulating matter at the nanoscale.

  7. Transmission electron microscopy DNA sequencing - Wikipedia

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

    The electron microscope can achieve a resolution of up to 100 picometers, allowing eukaryotic cells, prokaryotic cells, viruses, ribosomes, and even single atoms to be visualized (note the logarithmic scale). Transmission electron microscopy DNA sequencing is a single-molecule sequencing technology that uses transmission electron microscopy ...

  8. Microscopic scale - Wikipedia

    en.wikipedia.org/wiki/Microscopic_scale

    The shape and texture in each individual grain is made visible through the microscope. [7] As the microscopic scale covers any object that cannot be seen by the naked eye, yet is visible under a microscope, the range of objects that fall under this scale can be as small as an atom, visible underneath a transmission electron microscope. [8]

  9. 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 ...