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US Patent 11752037 Optical surface identification for laser eye surgery

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Contents

Is a
Patent
Patent

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11752037
Patent Inventor Names
Bruce Woodley
Javier Gonzalez
Date of Patent
September 12, 2023
Patent Application Number
18145010
Date Filed
December 21, 2022
Patent Citations
‌
US Patent 8376547 Adaptive optical apparatus and imaging apparatus having the same
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US Patent 9445946 Laser eye surgery system
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US Patent 9492079 Optical coherence tomography-based ophthalmic testing methods, devices and systems
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US Patent 9492080 Intraoperative imaging system and apparatus
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US Patent 9492322 Imaging surgical target tissue by nonlinear scanning
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US Patent 9495743 Method and apparatus for automated placement of scanned laser capsulorhexis incisions
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US Patent 9549670 Optical surface identification for laser surgery
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US Patent 9622658 Optical coherence tomography (OCT) imaging systems having adaptable lens systems and related methods and computer program products
...
Patent Primary Examiner
‌
Jack Dinh
CPC Code
‌
A61B 3/102
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A61F 2009/00885
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A61B 3/107
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A61B 3/117
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A61B 5/0066
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A61F 9/008
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A61F 9/00825
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A61F 9/009
...

Systems and methods automatically locate optical surfaces of an eye and automatically generate surface models of the optical surfaces. A method includes OCT scanning of an eye. Returning portions of a sample beam are processed to locate a point on the optical surface and first locations on the optical surface within a first radial distance of the point. A first surface model of the optical surface is generated based on the location of the point and the first locations. Returning portions of the sample beam are processed so as to detect second locations on the optical surface beyond the first radial distance and within a second radial distance from the point. A second surface model of the optical surface is generated based on the location of the point on the optical surface and the first and second locations on the optical surface.

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