1. Duke University

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    1. Mentioned In 656 Articles

    2. Single-pass volumetric bidirectional blood flow imaging spectral domain optical coherence tomography using a modified Hilbert transform

      Single-pass volumetric bidirectional blood flow imaging spectral domain optical coherence tomography using a modified Hilbert transform
      Yuankai K. Tao, Anjul M. Davis, Joseph A. Izatt We demonstrate in vivo volumetric bidirectional blood flow imaging in animal models using single-pass flow imaging spectral domain optical coherence tomography. This technique uses a modified Hilbert transform algorithm to separate moving and non-moving scatterers within a depth. The resulting ... [Opt. Express 16, 12350-12361 (2008)]
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      Mentions: Duke University
    3. METHODS, SYSTEMS AND COMPUTER PROGRAM PRODUCTS FOR PROCESSING IMAGES GENERATED USING FOURIER DOMAIN OPTICAL COHERENCE TOMOGRAPHY (FDOCT) (WO 2008/088868)

      Methods, systems and computer program products for managing frequency domain optical coherence tomography (FDOCT) image resolution. A spectrum used to acquire an image of a subject is calibrated and default dispersion correction parameters are set. Default dispersion management parameters associated with a region of the image of the subject are also set. The image of the subject is acquires after setting the default dispersion correction parameters and the default dispersion ...
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    4. OCT Technical Analyst (Durham)

      Optical Coherence tomography (OCT) is an exciting non-invasive, cutting edge technology that allows one to evaluate the anatomy and thickness characteristics of the retina in real-time in the living organism. It can be thought of as a form of in vivo histology. Increasingly, optical coherence tomography has been used by clinicians to help diagnose and manage a variety of ocular disorders, including macular degeneration, diabetic retinopathy, and glaucoma, the leading ...
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      Mentions: Duke University
    5. Detailed Visualization of the Anterior Segment Using Fourier-Domain Optical Coherence Tomography

      Objective  To study details of the anterior chamber drainage angle using Fourier-domain optical coherence tomography in healthy subjects and patients with angle abnormalities. Methods  A high-speed anterior segment optical coherence tomography prototype was developed using a 1310-nm-wavelength swept light source. Six healthy subjects and 6 patients with glaucoma were imaged in an observational cross-sectional study. Results  Schlemm’s canal and the trabecular meshwork were visualized in all of the patients ...
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      Mentions: Duke University
    6. Development of Fourier Domain Optical Coherence Tomography for Applications in Developmental Biology (Thesis)

      Development of Fourier Domain Optical Coherence Tomography for Applications in Developmental Biology (Thesis)
      Developmental biology is a field in which explorations are made to answer how an organism transforms from a single cell to a complex system made up of trillions of highly organized and highly specified cells. This field, however, is not just for discovery, it is crucial for unlocking factors that lead to diseases, defects, or malformations. The one key ingredient that contributes to the success of studies in developmental biology ...
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      Mentions: Duke University
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  2. About Duke University

    Duke University

    Duke University is a private research university located in Durham, North Carolina, USA. Duke University Medical CenterFor more than 75 years, our community of scholars and students has been devoted to understanding the causes, prevention and treatment of human disease. Duke University Eye Center is part of the Medical School.  Duke University's Pratt School of Engineering established The Fitzpatrick Center for Photonics and Communications Systems in December 2000 to help turn North Carolina into a "photon forest" where research and development in photonics would create the kind of technological advance and economic growth found in California's Silicon Valley.

  3. Quotes about Duke University

    1. We are excited to be working with an institution as prestigious as Duke University to advance medical diagnostics.
      In SpectraScience Announces Licensing of Key Technology From Duke University