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Inner Lives of Cells Revealed

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CAMBRIDGE, Mass., Oct. 18, 2006 -- For the first time, researchers can see every vibration of a cell membrane, using a technique that could one day allow scientists to create three-dimensional images of the inner workings of living cells. Studying cell membrane dynamics can help scientists gain insight into diseases such as sickle-cell anemia, malaria and cancer. Using a technique known as quantitative phase imaging, researchers at Massachusetts Institute of Technology's George R. Harrison Spectroscopy Laboratory can see cell membrane vibrations as tiny as a few tens of nanometers (billionths of a meter). Epithelial...Read full article

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    Published: October 2006
    Glossary
    cell
    1. A single unit in a device for changing radiant energy to electrical energy or for controlling current flow in a circuit. 2. A single unit in a device whose resistance varies with radiant energy. 3. A single unit of a battery, primary or secondary, for converting chemical energy into electrical energy. 4. A simple unit of storage in a computer. 5. A limited region of space. 6. Part of a lens barrel holding one or more lenses.
    phase
    In optics and photonics, "phase" refers to a property of electromagnetic waves, such as light, that describes the position of a wave at a given point in time within its oscillation cycle. More specifically, it indicates the position of a wave relative to a reference point, typically the starting point of a cycle. When discussing phase in optics, it's often described in terms of the phase difference between two waves or the phase of a single wave. The phase difference between two waves is the...
    quantitative phase imaging
    Quantitative phase imaging (QPI) is an advanced imaging technique used in microscopy to measure and analyze the optical phase information of transparent specimens. Unlike traditional brightfield microscopy, which relies on the absorption of light, QPI directly captures and quantifies the phase changes induced by a specimen as light passes through it. This enables the visualization of transparent structures and provides valuable quantitative information about biological and non-biological...
    anemiaCellImagingmalariamembraneMicroscopyMITNews & FeaturesphasePopescuquantitative phase imagingspectroscopyvibration

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