1. Yueli L. Chen

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    1. Mentioned In 23 Articles

    2. Signal Normalization Reduces Image Appearance Disparity Among Multiple Optical Coherence Tomography Devices

      Signal Normalization Reduces Image Appearance Disparity Among Multiple Optical Coherence Tomography Devices
      Purpose : To assess the effect of the previously reported optical coherence tomography (OCT) signal normalization method on reducing the discrepancies in image appearance among spectral-domain OCT (SD-OCT) devices. Methods : Healthy eyes and eyes with various retinal pathologies were scanned at the macular region using similar volumetric scan patterns with at least two out of three SD-OCT devices at the same visit (Cirrus HD-OCT, Zeiss, Dublin, CA; RTVue, Optovue, Fremont, CA ...
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    3. Documentation of Intraretinal Retinal Pigment Epithelium Migration via High-Speed Ultrahigh-Resolution Optical Coherence Tomography

      Documentation of Intraretinal Retinal Pigment Epithelium Migration via High-Speed Ultrahigh-Resolution Optical Coherence Tomography
      ...trahigh-Resolution Optical Coherence Tomography Joseph Ho, BS, BA12, Andre J. Witkin, MD1, Jonathan Liu, MS3, Yueli Chen, PhD3, James G. Fujimoto, PhD3, Joel S. Schuman, MD4, Jay S. Duker, MD1 Corresponding Author Inform...
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    4. Assessment of Artifacts and Reproducibility across Spectral- and Time-Domain Optical Coherence Tomography Devices

      ...l Meeting, May 2009, Fort Lauderdale, Florida. Joseph Ho, BS, BA12, Alan C. Sull, BA13, Laurel N. Vuong, BS1, Yueli Chen, PhD4, Jonathan Liu, MS4, James G. Fujimoto, PhD4, Joel S. Schuman, MD5, Jay S. Duker, MD1 Correspo...
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    5. Three-dimensional pointwise comparison of human retinal optical property at 845 and 1060 nm using optical frequency domain imaging

      ...hnique for tissue evaluation and diagnosis. We present an NIR fluorescence imaging system optimized for th... Yueli Chen, Daina L. Burnes, Martijn de Bruin, Mircea Mujat, and Johannes F. de Boer Massachusetts General Hos...
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    6. In vivo functional imaging of intrinsic scattering changes in the human retina with high-speed ultrahigh resolution OCT

      In vivo functional imaging of intrinsic scattering changes in the human retina with high-speed ultrahigh resolution OCT
      Non-invasive methods of probing retinal function are of interest for the early detection of retinal disease. While retinal function is traditionally directly measured with the electroretinogram (ERG), recently functional optical imaging of the retina has been demonstrated. In this manuscript, stimulus-induced, intrinsic optical scattering changes in the human retina are measured in vivo with high-speed, ultrahigh resolution optical coherence tomography (OCT) operating at 50,000 axial scans per second and ...
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    7. Three-dimensional ultrahigh resolution optical coherence tomography imaging of age-related macular degeneration

      Three-dimensional ultrahigh resolution optical coherence tomography imaging of age-related macular degeneration
      ...ogy : Interferometry * (170.3880) Medical optics and biotechnology : Medical and biological imaging Citation Yueli Chen, Laurel N. Vuong, Jonathan Liu, Joseph Ho, Vivek J. Srinivasan, Iwona Gorczynska, Andre J. Witkin, ...
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    8. Ultrahigh-Speed Optical Coherence Tomography for Three-Dimensional and En Face Imaging of the Retina and Optic Nerve Head

      Ultrahigh-speed swept-source optical coherence tomography (OCT) imaging of the retina and optic nerve is demonstrated at 249,000 axial scans per second and 1060 nm, while methods for en face visualization of the retina, choroid, and lamina cribrosa are investigated.
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    9. Ultrahigh speed Spectral / Fourier domain OCT ophthalmic imaging at 70,000 to 312,500 axial scans per second

      Ultrahigh speed Spectral / Fourier domain OCT ophthalmic imaging at 70,000 to 312,500 axial scans per second
      We demonstrate ultrahigh speed spectral / Fourier domain optical coherence tomography (OCT) using an ultrahigh speed CMOS line scan camera at rates of 70,000 - 312,500 axial scans per second. Several design configurations are characterized to illustrate trade-offs between acquisition speed, ... [Opt. Express 16, 15149-15169 (2008)]
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    10. 1-15 of 23 1 2 »
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  2. About Yueli L. Chen

    Yueli L. Chen

    Yueli Chen is a Principle Laser Scientist at Block Engineering working on tuning lasers and FTIR in the mid-IR wavelength range. Prior to that he worked at MIT/NEEC and Wellman Center/MGH on OCT. Dr. Chen received his PhD at University of Connecticut.