IP Library Granted Patent US 8,652,206
Granted Patent B2
US 8,652,206 · App. 13/083,853 · Granted Feb 18, 2014

Anti-dysphotopic intraocular lens and method

Inventor: Samuel Masket (Venice, CA)
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Quick Facts
Patent No.
US 8,652,206
App. No.
13/083,853
Granted
Feb 18, 2014
Kind
B2
Abstract

An intraocular lens implant includes a lens having an anterior portion, a posterior portion, and a circumferential edge located therebetween. An annular notch is formed in the anterior portion and oriented in an anteriorly-directed orientation.

Claims (26)

1. An intraocular lens implant for implantation within a capsular bag formed with a capsulorrhexis defining a capsulorrhexis edge, comprising:

a biconvex lens having a convex anterior optical portion including a first convex portion and a second portion, and a convex posterior optical portion, the convex anterior optical portion and the convex posterior optical portion being located on opposite anterior and posterior sides, respectively, of and at or radially inward of a single circumferential edge of the bioconvex lens, with the circumferential edge being positioned at and forming a single maximum diameter of the lens, the circumferential edge being defined by a single annular wall extending between an anterior edge and a posterior edge;

an annular groove formed in the convex anterior optical portion between the first convex portion and the second portion and being defined by an anterior wall and a posterior wall, with each of the entire anterior wall and entire posterior wall being spaced anteriorly of, and radially inward of, the circumferential edge, and with the annular groove extending from a surface of the convex anterior optical portion and being configured to receive the capsulorrhexis edge and

a haptic member extending outwardly from the circumferential edge.

2. The intraocular lens implant of claim 1 , wherein the convex anterior and convex posterior optical portions are one of symmetric or asymmetric.

3. The intraocular lens implant of claim 1 , further comprising:

at least two haptic members extending radially away from the lens.

4. The intraocular lens implant of claim 3 , wherein the at least two haptic members radially extend from the circumferential edge and lie in a common plane.

5. The intraocular lens implant of claim 4 , wherein the common plane resides along the circumferential edge.

6. The intraocular lens implant of claim 1 , wherein the annular groove is positioned about 0.2 mm to about 1 mm anteriorly of the circumferential edge.

7. The intraocular lens implant of claim 1 , wherein the posterior wall of the annular groove lies, in cross-section, on a plane that is disposed at an angle relative to a horizontal plane that is perpendicular to an optical axis of the lens from about 10° to about 25°.

8. The intraocular lens implant of claim 1 , wherein the anterior wall of the annular groove lies, in cross-section, on a plane that is disposed at an angle relative to a horizontal plane that is perpendicular to an optical axis of the lens from about 0° to about 10°.

9. The intraocular lens implant of claim 1 , wherein the groove extends in an anteriorly-directed orientation.

10. The intraocular lens implant of claim 1 , wherein the posterior wall extends in an anteriorly-directed orientation.

11. The intraocular lens implant of claim 1 , wherein each of the anterior wall and the posterior wall extends in an anteriorly-directed orientation.

12. An intraocular lens implant for implantation within a capsular bag formed with a capsulorrhexis defining a capsulorrhexis edge, comprising:

a biconvex lens having a convex anterior optical portion including a first convex portion and second portion, and a convex posterior optical portion, the convex anterior optical portion and the convex posterior optical portion being located on opposite anterior and posterior sides, respectively, of and at or radially inward of a single circumferential edge of the bioconvex lens, with the circumferential edge being positioned at and forming a single maximum diameter of the lens, the circumferential edge being defined by a single annular wall extending between an anterior edge and a posterior edge;

at least two haptic members extending radially away from the lens and configured to lie within a common plane; and

an annular groove formed in the convex anterior optical portion between the first convex portion and the second portion and being defined by an anterior wall and a posterior wall, with each of the entire anterior wall and entire posterior wall being spaced anteriorly of, and radially inward of, the circumferential edge, and with the annular groove extending in an anteriorly-directed orientation from a surface of the convex anterior optical portion and being configured to receive the capsulorrhexis edge.

13. The intraocular lens implant of claim 12 , wherein the convex anterior and convex posterior optical portions are one of symmetric or asymmetric.

14. The intraocular lens implant of claim 12 , wherein the common plane lies along the circumferential edge.

15. The intraocular lens implant of claim 12 , wherein the annular groove is positioned about 0.2 mm to about 1 mm anteriorly of the circumferential edge.

16. The intraocular lens implant of claim 12 , wherein the posterior wall of the annular groove lies, in cross-section, on a plane that is disposed at an angle relative to a horizontal plane that is perpendicular to an optical axis of the lens from about 10° to about 25°.

17. The intraocular lens implant of claim 12 , wherein the anterior wall of the annular groove lies, in cross-section, on a plane that is disposed at an angle relative to a horizontal plane that is perpendicular to an optical axis of the lens from about 0° to about 10°.

18. The intraocular lens implant of claim 12 , wherein the posterior wall extends in an anteriorly-directed orientation.

19. The intraocular lens implant of claim 12 , wherein each of the anterior wall and the posterior wall extends in an anteriorly-directed orientation.

Continuity (2)
Provisional Application 61323060 · Apr 12, 2010
Related Publication 20110251686A1 · Oct 13, 2011