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Airy Beam Light-Sheet Microscopy Holds Promise for Life Sciences Imaging

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Prized for its rapid 3D imaging capability, low phototoxicity and high contrast, Airy beam light-sheet microscopy is especially well-suited for cancer biology and neuroscience.

KISHAN DHOLAKIA and JONATHAN NYLK, UNIVERSITY OF ST. ANDREWS; PETE PITRONE, GRAEME MALCOLM and ROBERT FORSTER, M SQUARED LASERS LTD.

Airy light-sheet microscopy (ALSM) has great potential to help further research and clinical diagnoses through its ability to image larger 3D volumes of tissues and organoids. Developed in the last three years, it is best-suited to the fields of regenerative medicine, cancer biology, neuroscience and developmental biology, as ALSM can acquire images, as well as 3D datasets, with higher resolution over larger fields of view (FOV) than its predecessors. Profile: Airy beam parked in the focal plane of the detection lens. Courtesy of University of St. Andrews, School of Physics and...Read full article

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    Published: May 2016
    Glossary
    astronomy
    The scientific observation of celestial radiation that has reached the vicinity of Earth, and the interpretation of these observations to determine the characteristics of the extraterrestrial bodies and phenomena that have emitted the radiation.
    superresolution
    Superresolution refers to the enhancement or improvement of the spatial resolution beyond the conventional limits imposed by the diffraction of light. In the context of imaging, it is a set of techniques and algorithms that aim to achieve higher resolution images than what is traditionally possible using standard imaging systems. In conventional optical microscopy, the resolution is limited by the diffraction of light, a phenomenon described by Ernst Abbe's diffraction limit. This limit sets a...
    volumetric imaging
    Volumetric imaging refers to the capture, visualization, and analysis of three-dimensional (3D) information from a volume of space. Unlike traditional two-dimensional (2D) imaging, which provides information along a single plane, volumetric imaging captures data throughout a volume, enabling the reconstruction of a 3D representation. Key features and applications of volumetric imaging include: 3D data acquisition: Volumetric imaging techniques acquire data from multiple perspectives or...
    photobleaching
    Photobleaching is a phenomenon in which the fluorescence of a fluorophore (a fluorescent molecule or dye) is permanently reduced or eliminated upon prolonged exposure to light. This process occurs due to the photochemical destruction or alteration of the fluorophore molecules, rendering them non-fluorescent. Key points about photobleaching: Mechanism: Photobleaching is typically a result of chemical reactions induced by the absorbed photons. The excessive light exposure causes the...
    gaussian beam
    A beam of light whose electrical field amplitude distribution is Gaussian. When such a beam is circular in cross section, the amplitude is E(r) = E(0) exp [-(r/w)2], where r is the distance from beam center and w is the radius at which the amplitude is 1/e of its value on the axis; w is called the beamwidth.
    fluorescence microscopy
    Fluorescence microscopy is a specialized optical imaging technique used in biology, chemistry, and materials science to visualize and study specimens that exhibit fluorescence. Fluorescence is the phenomenon where a substance absorbs light at one wavelength and emits light at a longer wavelength. In fluorescence microscopy, fluorescent dyes or proteins are used to label specific structures or molecules within a sample. The basic principles of fluorescence microscopy involve illuminating the...
    astronomyMicroscopysuperresolutionAiry light-sheet microscopyvolumetric imagingphotobleachingGaussian beamBessel beamfluorescence microscopyphototoxicFeatures

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