About Marco B. Ruggeri
Marco B. Ruggeri is an Research Associate at the Jiao Laboratory, Miller School of Medicine, Bascom Palmer Eye Institute University of Miami.
Related Entities
Automatic retinal blood flow calculation using spectral domain optical coherence tomography
12 articles also mentioned University of Miami
Direct visualization of tear film on soft contact lens using ultra-high resolution spectral domain optical coherence tomography
9 articles also mentioned Shuliang Jiao
In vivo imaging of raptor retina with ultra high resolution spectral domain optical coherence tomography
5 articles also mentioned Carmen A. Puliafito
Retinal tumor imaging and volume quantification in mouse model using spectral-domain optical coherence tomography
5 articles also mentioned University of Southern California
Ultra-High Resolution Imaging of Retinal Structure of Birds of Prey using Optical Coherence Tomography
4 articles also mentioned Hassan M. Wehbe
Retinal Structure of Birds of Prey Revealed by Ultra-High Resolution Spectral-Domain Optical Coherence Tomography
3 articles also mentioned Robert W. Knighton
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Mentioned In 12 Articles
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High-Res Imaging Expands Vision Research of Live Birds of Prey: Study Produces First-Time Images of Retinal Structure of Hawks and Owls
Explore Article Newswise (Jul 21 2010)
...obert W. Knighton, PhD, retired research professor at Bascom Palmer Eye Institute. Lead researchers Marco Ruggeri and Shuliang Jiao and their colleagues suggest that the results of this research point the way for ...
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Comment on Article Mentions: Shuliang Jiao Robert W. Knighton University of Miami
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Ultra-High Resolution Imaging of Retinal Structure of Birds of Prey using Optical Coherence Tomography
Explore Article Optical Coherence Tomography News (Jul 18 2010)
Feature Of The Week 7/18/10: Birds and particularly birds of prey are known for their unique retinal structures. And while optical coherence tomography (OCT) has been used to image retinas in a variety of animals before, including birds, high resolution spectral domain OCT imaging has not been reported in avian species. The work of imaging the retina of birds of prey was done at Dr. Shuliang Jiao’s lab at Bascom ... (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri Shuliang Jiao Carmen A. Puliafito
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Retinal Structure of Birds of Prey Revealed by Ultra-High Resolution Spectral-Domain Optical Coherence Tomography
Explore Article iovs.org (Jun 20 2010)
...ure of Birds of Prey Revealed by Ultra-High Resolution Spectral-Domain Optical Coherence Tomography Marco Ruggeri,^1 James C Major,^2 Craig McKeown,^3 Robert W Knighton,^4 Carmen A Puliafito,^5 and Shuliang Jiao^6... (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri Shuliang Jiao Carmen A. Puliafito
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Small animal ocular biometry using optical coherence tomography
Explore Article SPIE Digital Library (Mar 2 2010)
...chnologies XX Conference Chairs: Fabrice Manns, Per G. Söderberg, Arthur Ho ABSTRACT REFERENCES (8) Marco Ruggeri, Omer Kocaoglu, Stephen Uhlhorn, David Borja, Raksha Urs, and Tsung-Han Chou Bascom Palmer Eye Inst...
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Comment on Article Mentions: Marco B. Ruggeri Fabrice Manns University of Miami
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Intraoperative OCT of a Full-Thickness Macular Hole Before and After Internal Limiting Membrane Peeling
Explore Article Ophthalmic Surgery, Lasers and Imaging (Feb 5 2010)
A child with a traumatic full-thickness macular hole was imaged perioperatively using spectral-domain optical coherence tomography (SD-OCT). Intraoperative imaging using a portable SD-OCT device equipped with a handheld probe demonstrated the full-thickness macular hole to be nearly completely closed following vitrectomy and internal limiting membrane peeling. Air was used as a tamponade agent and prone positioning was used postoperatively for 2 days. SD-OCT imaging confirmed closure of the full-thickness macular ... (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri University of Miami
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Spectral Domain Optical Coherence Tomography in a Murine Retinal Detachment Model
Explore Article ScienceDirect (Feb 2 2010)
Spectral domain optical coherence tomography (SD-OCT) was used to image retinal detachments in vivo, in a murine model of retinal detachment. Subretinal injections of hyaluronic acid (Healon) were delivered to the right eye of seventeen 10-20 week-old C57Bl6 mice. Evaluation of the fundus with an operating microscope and fundus photography were performed. In vivo, non-contact, ultra high resolution SD-OCT imaging was performed on day 0, day 1-2, day 5-6 and ...
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Comment on Article Mentions: Marco B. Ruggeri University of Miami
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In Situ Visualization of Tears on Contact Lens Using Ultra High Resolution Optical Coherence Tomography.
Explore Article Eye & Contact Lens (Mar 5 2009)
Objective: To demonstrate the capability of directly visualizing the tear film on contact lenses using optical coherence tomography (OCT). Methods: Six eyes of three healthy subjects wearing PureVision and ACUVUE Advance soft and Boston RGP hard contact lenses were imaged with a custom built, high speed, ultra-high resolution spectral domain optical coherence tomograph. Refresh Liquigel was used to demonstrate the effect of artificial tears on the tear film. Results: Ultra ... (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri University of Miami Shuliang Jiao
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Retinal tumor imaging and volume quantification in mouse model using spectral-domain optical coherence tomography
Explore Article opticsinfobase.org (Mar 2 2009)
...imaging and volume quantification in mouse model using spectral-domain optical coherence tomography Marco Ruggeri, Gavriil Tsechpenakis, Shuliang Jiao, Maria Elena Jockovich, Colleen Cebulla, Eleut Hernandez, Timo...
(Read Full Article)
Comment on Article Mentions: Shuliang Jiao Marco B. Ruggeri Carmen A. Puliafito
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Polarization effect on the depth resolution of optical coherence tomography
Explore Article SPIE Digital Library (Dec 11 2008)
Shuliang Jiao and Marco Ruggeri We find for the first time that polarization mismatch of the sample and reference arms in optical-... (Read Full Article)
Comment on Article Mentions: Shuliang Jiao Marco B. Ruggeri University of Miami
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Direct visualization of tear film on soft contact lens using ultra-high resolution spectral domain optical coherence tomography
Explore Article SPIE Digital Library (Feb 11 2008)
Jianhua Wang, Shuliang Jiao, Marco Ruggeri et al. The integrity of the tear film on the surface of contact lenses is essential to maintaining... (Read Full Article)
Comment on Article Mentions: Shuliang Jiao Marco B. Ruggeri University of Miami
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In vivo imaging of raptor retina with ultra high resolution spectral domain optical coherence tomography
Explore Article SPIE Digital Library (Feb 11 2008)
Among birds, raptors are well known for their exceptional eyesight, which is partly due to the unique structure of their retina. Because the raptor retina is the most advanced of any animal species, in vivo examination of its structure would be remarkable. Furthermore, a noticeable percentage of traumatic ocular injuries are identified in birds of prey presented to rehabilitation facilities. Injuries affecting the posterior segment have been considered as a ... (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri Shuliang Jiao Carmen A. Puliafito
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Automatic retinal blood flow calculation using spectral domain optical coherence tomography
Explore Article opticsinfobase.org (Nov 7 2007)
Keywords (OCIS): (110.4500) Imaging systems : Optical coherence tomography (120.3890) Instrumentation, measurement, and metrology : Medical optics instrumentation (170.4580) Medical optics and biotechnology : Optical diagnostics for medicine Abstract Optical Doppler tomography (ODT) is a branch of optical coherence tomography (OCT) that can measure the speed of a blood flow by measuring the Doppler shift impinged on the probing sample light by the moving blood cells. However, the measured speed (Read Full Article)
Comment on Article Mentions: Marco B. Ruggeri Giovanni Gregori Hassan M. Wehbe


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Great video Jim!
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Dear Prof. Dr. Gary S. Mintz, You are an extraordinary expert in imaging, an intelligence ...
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