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US Patent 11617679 Ocular delivery systems and methods

Patent 11617679 was granted and assigned to Sight Sciences on April, 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
Sight Sciences
Sight Sciences
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Current Assignee
Sight Sciences
Sight Sciences
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116176790
Patent Inventor Names
Daniel O'Keeffe0
David Y. Badawi0
Paul Badawi0
Date of Patent
April 4, 2023
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Patent Application Number
178274940
Date Filed
May 27, 2022
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Patent Citations
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US Patent 10314742 Intraocular implants and methods and kits therefor
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US Patent 10154924 Schlemm's canal devices and method for improving fluid flow
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US Patent 10179066 Ocular delivery systems and methods
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US Patent 10299958 Ocular delivery systems and methods
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US Patent 10398597 Intraocular implants and methods and kits therefor
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US Patent 10406030 Intraocular implants and related kits and methods
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US Patent 10857027 Ocular delivery systems and methods
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US Patent 10888453 Ocular delivery systems and methods
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...
Patent Citations Received
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US Patent 12127974 Ocular delivery systems and methods
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US Patent 11857460 Ocular delivery systems and methods
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US Patent 11865041 Intraocular implants and methods and kits therefor
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US Patent 11872158 Ocular delivery systems and methods
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US Patent 11877954 Devices and methods for intraocular tissue manipulation
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US Patent 11951037 Ocular delivery systems and methods
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0
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US Patent 12127973 Ocular delivery systems and methods
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Patent Primary Examiner
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Jocelin C Tanner
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CPC Code
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A61F 9/007
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A61F 9/00781
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A61F 9/0017
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A61F 9/0008
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Described here are systems and methods for accessing Schlemm's canal and for delivering an ocular device or fluid composition therein. The ocular devices may maintain the patency of Schlemm's canal without substantially interfering with transmural fluid flow across the canal. The fluid composition may be a viscoelastic fluid that is delivered into the canal to facilitate drainage of aqueous humor by disrupting the canal and surrounding trabeculocanalicular tissues. Tools for disrupting these tissues and minimally invasive methods for treating medical conditions associated with elevated intraocular pressure, including glaucoma, are also described.

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