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  2. Inverted microscope - Wikipedia

    en.wikipedia.org/wiki/Inverted_microscope

    Inverted microscopes are useful for observing living cells or organisms at the bottom of a large container (e.g., a tissue culture flask) under more natural conditions than on a glass slide, as is the case with a conventional microscope. An inverted microscope is also used for visualisation of the Mycobacterium tuberculosis bacteria in the ...

  3. Oil immersion - Wikipedia

    en.wikipedia.org/wiki/Oil_immersion

    Principle of immersion microscopy. Path of rays with immersion medium (yellow) (left half) and without (right half). Rays (black) coming from the object (red) at a certain angle and going through the cover-slip (orange, as is the slide at the bottom) can enter the objective (dark blue) only when immersion is used.

  4. Category:Microscopes - Wikipedia

    en.wikipedia.org/wiki/Category:Microscopes

    Inverted microscope; K. Knife-edge scanning microscope; L. LARMOR neutron microscope; Leica Microsystems; Light field camera; Live-cell imaging; M. Macroscope (Wild ...

  5. Live-cell imaging - Wikipedia

    en.wikipedia.org/wiki/Live-cell_imaging

    A live-cell microscope. Live-cell microscopes are generally inverted. To keep cells alive during observation, the microscopes are commonly enclosed in a micro cell incubator (the transparent box). Live-cell imaging is the study of living cells using time-lapse microscopy.

  6. Differential interference contrast microscopy - Wikipedia

    en.wikipedia.org/wiki/Differential_interference...

    Micrasterias furcata imaged in transmitted DIC microscopy Laser-induced optical damage in LiNbO 3 under 150× Nomarski microscopy. Differential interference contrast (DIC) microscopy, also known as Nomarski interference contrast (NIC) or Nomarski microscopy, is an optical microscopy technique used to enhance the contrast in unstained, transparent samples.

  7. Condenser (optics) - Wikipedia

    en.wikipedia.org/wiki/Condenser_(optics)

    A condenser between the stage and mirror of a vintage microscope. Condensers are located above the light source and under the sample in an upright microscope, and above the stage and below the light source in an inverted microscope. They act to gather light from the microscope's light source and concentrate it into a cone of light that ...

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