IP Library Granted Patent US 11,540,914
Granted Patent B2
US 11,540,914 · App. 16/856,483 · Granted Jan 3, 2023

Corneal implants

Inventor: Yichieh Shiuey (San Jose, CA)
Assignee: Keramed, Inc.
A61F2/1451A61F2/142A61F2/1453A61F2/15A61F2002/0081A61F2002/0086A61F2002/0091A61F2210/0014A61F2210/0076A61F2220/0033A61F2230/0006A61F2230/0093A61F2250/0018A61F2250/0026A61F2250/0036A61F2250/0053
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Quick Facts
Patent No.
US 11,540,914
App. No.
16/856,483
Granted
Jan 3, 2023
Kind
B2
Abstract

Reversibly deformable corneal implants for replacing excised corneal tissue, the implants including an optical portion and an anchoring portion having different mechanical properties from each other.

Claims (15)

1. A corneal implant comprising:

an artificial cornea for replacing excised corneal tissue, the artificial cornea comprising a relaxed state and a deformed state, and being reversibly deformable such that the artificial cornea can return to the relaxed state from the deformed state and can be implanted into an eye through an opening that is less than a width of the artificial cornea in the relaxed state;

the artificial cornea comprising an optical portion capable of refracting light entering the patient's eye and sized and configured to replace at least a portion of excised corneal tissue;

the artificial cornea comprising an anchoring portion configured to be inserted into a lamellar corneal pocket, wherein the anchoring portion comprises a scaffold;

wherein the optical portion comprises a material with a first set of mechanical properties, comprising an elastic modulus, a tensile strength, and an elongation-to-break ratio;

wherein the anchoring portion comprises a material with a second set of mechanical properties, comprising an elastic modulus, a tensile strength, and an elongation-to-break ratio;

wherein at least two of the mechanical properties of the first set of mechanical properties differs from the mechanical properties of the second set of mechanical properties, such that: (a) the elastic modulus of the optical portion is different from the elastic modulus of the anchoring portion; (b) the tensile strength the optical portion is different from the tensile strength of the anchoring portion; and/or (c) the elongation-to-break ratio of the optical portion is different from the elongation-to-break ratio of the anchoring portion;

wherein the scaffold comprises an outer ring, an inner ring, and at least two connecting elements that connect the outer ring to the inner ring, wherein the inner ring is attached to the optical portion;

wherein there is open space between adjacent pairs of the at least two connecting elements;

wherein the material of the optic portion is different from the material of the anchoring portion.

2. The corneal implant of claim 1 , wherein the optical portion comprises a groove, and wherein the inner ring of the scaffold is mated with the groove.

3. The corneal implant of claim 2 , wherein the groove is disposed in an exterior side wall of the optical portion.

4. The corneal implant of claim 1 , wherein the second set of mechanical properties comprises shape memory.

5. The corneal implant of claim 1 , wherein the second set of mechanical properties comprises super elasticity.

6. The corneal implant of claim 1 , wherein three of the mechanical properties of the first set of mechanical properties differ from the mechanical properties of the second set of mechanical properties, such that: (a) the elastic modulus of the optical portion is different from the elastic modulus of the anchoring portion; (b) the tensile strength the optical portion is different from the tensile strength of the anchoring portion; and (c) the elongation-to-break ratio of the optical portion is different from the elongation-to-break ratio of the anchoring portion.

Continuity (8)
Continuation 14692960 · Apr 22, 2015
Continuation In Part 13979122
Continuation In Part 16856483
Continuation 16788582 · Feb 12, 2020
Continuation 14692960 · Apr 22, 2015
Continuation In Part 13979122
Provisional Application 61388386 · Sep 30, 2010
Related Publication 20200246133A1 · Aug 6, 2020
Cited By (1)
US 12,364,591