1. Center for Ophthalmic Optics and Lasers

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    1. Mentioned In 327 Articles

    2. Statistics of Optical Coherence Tomography Data From Human Retina

      Statistics of Optical Coherence Tomography Data From Human Retina
      Optical coherence tomography (OCT) has recently become one of the primary methods for non-invasive probing of the human retina. The pseudo-image formed by OCT (the socalled B-scan) varies probabilistically across pixels due to complexities in the measurement technique. Hence, sensitive automatic procedures of diagnosis using OCT may exploit statistical analysis of the spatial distribution of reflectance. In this paper, we perform a statistical study of retinal OCT data. We find ...
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    3. Imaging the Eye from Front to Back with RTVue Fourier-Domain Optical Coherence Tomography (Book)

      Imaging the Eye from Front to Back with RTVue Fourier-Domain Optical Coherence Tomography (Book)
      Fourier-Domain optical coherence tomography (OCT) is the latest technology available to provide high-speed, high-resolution imaging of the cornea, anterior chamber angle, macula and optic nerve head. Imaging the Eye from Front to Back with RTVue Fourier-Domain Optical Coherence Tomography (WW 141 I31 2010) by first author Dr. David Huang of Doheny Eye Institute and Drs. Jay S. Duker, James G. Fujimoto, Bruno Lumbroso, Joel S. Schuman, and Robert N. Weinreb ...
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    4. Feature Of The Week 1/24/10: Detection of Macular Ganglion Cell Loss in Glaucoma by Fourier-Domain Optical Coherence Tomography

      Feature Of The Week 1/24/10: Detection of Macular Ganglion Cell Loss in Glaucoma by Fourier-Domain Optical Coherence Tomography
      Feature Of The Week 1/24/10: David Huang was one of the co-inventors of Optical Coherence Tomography and has continued to do pioneering research in OCT from his early days doing PhD work at the Massachusetts Institute of Technology to his current position as a professor of ophthalmology at the Keck School of Medicine at the University of Southern California. A topic recently studied by Dr. Huang and his ...
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    5. Optovues Symposium at Ascrs 2008 David Huang, MD, PhD. pt3 (Video)

      Located in Fremont California, Optovue Corporation is an ophthalmic device company. Our goal is to lead the commercialization of new imaging modalities that improve diagnosis and therapy of ocular diseases. In this video, a part of Optovue's symposium at ASCRS 2008, Dr. David Huang talks about anterior segment imaging with the RTVue Fourier-Domain Optical Coherence Tomography (OCT).
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    6. Optovues Symposium at Ascrs 2008 David Huang, MD, PhD. Pt2 (Video)

      Located in Fremont California, Optovue Corporation is an ophthalmic device company. Our goal is to lead the commercialization of new imaging modalities that improve diagnosis and therapy of ocular diseases. In this video, a part of Optovue's symposium at ASCRS 2008, Dr. David Huang talks about anterior segment imaging with the RTVue Fourier-Domain Optical Coherence Tomography (OCT).
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    7. Optovues Symposium at ASCRS 2008 David Huang, MD, PhD. pt1 (Video)

      Located in Fremont California, Optovue Corporation is an ophthalmic device company. Our goal is to lead the commercialization of new imaging modalities that improve diagnosis and therapy of ocular diseases. In this video, a part of Optovue's symposium at ASCRS 2008, Dr. David Huang talks about anterior segment imaging with the RTVue Fourier-Domain Optical Coherence Tomography (OCT).
      Read Full Article
    8. Experts Listed at Trusted LASIK Surgeons Bring Peers Up to Date on Vision Correction and Cataract Surgery at Annual AAO Meeting

      Experts Listed at Trusted LASIK Surgeons Bring Peers Up to Date on Vision Correction and Cataract Surgery at Annual AAO Meeting
      San Francisco, CA (PRWEB) November 19, 2009 -- Trusted LASIK Surgeons, Inc. (Trusted LASIK Surgeons) is pleased to present some of the significant contributions made by surgeons profiled in its LASIK Eye Surgeon Directory at the recently concluded Annual Meeting of the American Academy of Ophthalmology (AAO) and the International Society of Refractive Surgeons (ISRS/AAO). This annual meeting of the AAO is the largest gathering of ophthalmologists and eye care ...
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    9. Reproducibility of Tear Meniscus Measurement by Fourier-Domain Optical Coherence Tomography: A Pilot Study

      BACKGROUND AND OBJECTIVE To study the reproducibility of tear meniscus measurement with high-speed high-resolution Fourier-domain optical coherence tomography (FD-OCT). PATIENTS AND METHODS Twenty normal participants were enrolled in this prospective study. The lower tear meniscus in the right eye of each subject was imaged by vertical scans centered on the inferior cornea and the lower eyelid using an FD-OCT system (RTVue; Optovue, Inc., Fremont, CA) with a corneal adaptor. The ...
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    10. Detection of Macular Ganglion Cell Loss in Glaucoma by Fourier-Domain Optical Coherence Tomography

      Detection of Macular Ganglion Cell Loss in Glaucoma by Fourier-Domain Optical Coherence Tomography
      Purpose: To map ganglion cell complex (GCC) thickness with high-speed Fourier-domain optical coherence tomography (FD-OCT) and compute novel macular parameters for glaucoma diagnosis.Design: Observational, cross-sectional study.Participants: One hundred seventy-eight participants in the Advanced Imaging for Glaucoma Study, divided into 3 groups: 65 persons in the normal group, 78 in the perimetric glaucoma group (PG), and 52 in the preperimetric glaucoma group (PPG).Methods: The RTVue FD-OCT system was ...
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    11. Ophthalmic Optical Coherence Tomography Market: Past, Present, & Future

      In 1992 the first commercial optical coherence tomography (OCT) company was started. It was called Advanced Ophthalmic Devices (AOD) and as the name implies was focused on the ophthalmology market. AOD grew out of research at the Massachusetts Institute of Technology, Massachusetts Eye and Ear Infir
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    12. Gaussian fitting on mean curvature maps of parameterization of corneal ectatic diseases

      The present invention discloses a method for characterizing ectatic diseases of the cornea by computing a mean curvature map of the anterior or posterior surfaces of the cornea and fitting the map to a Gaussian function to characterize the surface features of the map. Exemplary ectatic disease that may be characterized include keratoconus and pellucid marginal degeneration. Also disclosed are a system for diagnosing ectatic disease of the cornea and ...
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    13. Retinal blood flow detection in diabetic patients by Doppler Fourier domain optical coherence tomography

      Retinal blood flow detection in diabetic patients by Doppler Fourier domain optical coherence tomography
      We present human retinal blood flow investigation for diabetic patients using Doppler Fourier domain optical coherence tomography (FDOCT). The scanning pattern consisted of two concentric circles around the optic nerve head. The blood flow in one patient with diabetes and no retinpathy and another ... [Opt. Express 17, 4061-4073 (2009)]
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    14. Measurement of total blood flow in the normal human retina using Doppler Fourier-domain optical coherence tomography

      Aim: To measure total retinal blood flow in normal human eyes using Doppler Fourier-domain optical coherence tomography (FD-OCT). Methods: 10 normal people aged 35 to 69 years were measured for the right eye using Doppler FD-OCT. Double circular scans around the optic nerve heads were used. Four pairs of circular scans that transected all retinal branch vessels were completed in 2 seconds. Total retinal blood flow was obtained by summing ...
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    15. 286-300 of 327 « 1 2 ... 17 18 19 20 21 22 »
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  2. About Center for Ophthalmic Optics and Lasers

    Center for Ophthalmic Optics and Lasers

    The Center for Ophthalmic Optics and Lasers (COOL) at Doheny Eye Institute, University of Southern California (USC) is a state of the art research center focusing on the application of biomedical optics in clinical medicine. COOL lab emcompass an extensive range of research areas in both optics and ophthalmology. The mission of the center is to: "Conserve, improve and restore vision through advances in laser and optical technology".