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US Patent 11839430 Optical coherence tomography-based ophthalmic testing methods, devices and systems

Patent 11839430 was granted and assigned to Doheny Eye Institute on December, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Doheny Eye Institute
Doheny Eye Institute
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Current Assignee
Doheny Eye Institute
Doheny Eye Institute
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118394300
Patent Inventor Names
Paul G. Updike0
Alexander C. Walsh0
Srinivas R. Sadda0
Date of Patent
December 12, 2023
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Patent Application Number
172490260
Date Filed
February 17, 2021
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Patent Citations
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US Patent 7237898 Customized corneal profiling
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US Patent 7324210 Scanning interferometry for thin film thickness and surface measurements
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US Patent 7347548 Method and apparatus for measuring a retinal sublayer characteristic
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US Patent 7350921 iQueVision: animated / vision testing system
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US Patent 7370966 Opthalmologic apparatus
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US Patent 6939298 Device and method for monitoring aqueous flow within the eye
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US Patent 7008116 Optical connector adapter having an engaging portion which is rendered movable by the use of a slit
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US Patent 7203425 Optical wireless link
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...
Patent Citations Received
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US Patent 12106472 Eye state assessment method and electronic device
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Patent Primary Examiner
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Mohammed A Hasan
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CPC Code
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A61B 3/085
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A61B 3/113
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A61B 3/117
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A61B 3/18
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A61B 5/0066
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A61B 5/0073
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A61B 3/0041
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A61B 3/0033
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Patent abstract

In accordance with one aspect of the present invention, an optical coherence tomography-based ophthalmic testing center system includes an optical coherence tomography instrument comprising an eyepiece for receiving at least one eye of a user or subject; a light source that outputs light that is directed through the eyepiece into the user's or subject's eye, an interferometer configured to produce optical interference using light reflected from the user's/subject's eye, an optical detector disposed so as to detect said optical interference; and a processing unit coupled to the detector. The ophthalmic testing center system can be configured to perform a multitude of self-administered functional and/or structural ophthalmic tests and output the test data.

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