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US Patent 10165941 Optical coherence tomography-based ophthalmic testing methods, devices and systems

Patent 10165941 was granted and assigned to Doheny Eye Institute on January, 2019 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
101659410
Patent Inventor Names
Paul G. Updike0
Srinivas R. Sadda0
Alexander C. Walsh0
Date of Patent
January 1, 2019
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Patent Application Number
153499700
Date Filed
November 11, 2016
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Patent Citations Received
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US Patent 12115105 Non-invasive and minimally invasive laser surgery for the reduction of intraocular pressure in the eye
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US Patent 11969211 Alignment and diagnostic device and methods for imaging and surgery at the irido-corneal angle of the eye
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US Patent 11986241 Automatic optical path adjustment in home OCT
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US Patent 11986424 Method, system, and apparatus for imaging and surgical scanning of the irido-corneal angle for laser surgery of glaucoma
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US Patent 12002567 System and method for laser treatment of ocular tissue based on patient biometric data and apparatus and method for determining laser energy based on an anatomical model
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US Patent 12016799 Integrated surgical system and method for treatment in the irido-corneal angle of the eye
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US Patent 11464408 Automatic optical path adjustment in home OCT
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US Patent 11510567 Optical coherence tomography-based ophthalmic testing methods, devices and systems
...
Patent Primary Examiner
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Mohammed Hasan
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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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