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  2. Optical microscope - Wikipedia

    en.wikipedia.org/wiki/Optical_microscope

    The optical microscope, also referred to as a light microscope, is a type of microscope that commonly uses visible light and a system of lenses to generate magnified images of small objects. Optical microscopes are the oldest design of microscope and were possibly invented in their present compound form in the 17th century.

  3. Bruker Releases AFM Zoom Option for 3D Optical Microscopes - AOL

    www.aol.com/2012/11/26/bruker-releases-afm-zoom...

    Bruker Releases AFM Zoom Option for 3D Optical Microscopes NanoLens™ Accessory Expands Power of ContourGT Systems BOSTON--(BUSINESS WIRE)-- Bruker announced today at the 2012 Materials Research ...

  4. Confocal microscopy - Wikipedia

    en.wikipedia.org/wiki/Confocal_microscopy

    Fluorescence and confocal microscopes operating principle. Confocal microscopy, most frequently confocal laser scanning microscopy (CLSM) or laser scanning confocal microscopy (LSCM), is an optical imaging technique for increasing optical resolution and contrast of a micrograph by means of using a spatial pinhole to block out-of-focus light in image formation. [1]

  5. Magnification - Wikipedia

    en.wikipedia.org/wiki/Magnification

    Without oil immersion, the maximum usable magnification is around 800×. For details, see limitations of optical microscopes. Small, cheap telescopes and microscopes are sometimes supplied with the eyepieces that give magnification far higher than is usable. The maximum relative to the minimum magnification of an optical system is known as zoom ...

  6. Lattice light-sheet microscopy - Wikipedia

    en.wikipedia.org/wiki/Lattice_light-sheet_microscopy

    Optical lattices are two or three dimensional interference patterns, which here are produced by the transparent annular ring. The mask is conjugate to x and z galvanometers. This quality of the microscope is important for the dithered mode of operation, where the light sheet must be oscillated within the x axis.

  7. Diffraction-limited system - Wikipedia

    en.wikipedia.org/wiki/Diffraction-limited_system

    Memorial in Jena, Germany to Ernst Karl Abbe, who approximated the diffraction limit of a microscope as = ⁡, where d is the resolvable feature size, λ is the wavelength of light, n is the index of refraction of the medium being imaged in, and θ (depicted as α in the inscription) is the half-angle subtended by the optical objective lens (representing the numerical aperture).

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