IP Library Granted Patent US 9,433,496
Granted Patent B2
US 9,433,496 · App. 13/671,900 · Granted Sep 6, 2016

Aspherical multifocal intraocular lens

Inventor: John Clough (St. Pete Beach, FL)
Assignee: Lenstec Barbados Inc.
A61F2/1618A61F2/164
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Quick Facts
Patent No.
US 9,433,496
App. No.
13/671,900
Granted
Sep 6, 2016
Kind
B2
Abstract

A multifocal intraocular lens has an anterior lens surface which includes a first optic of a first radius and a second optic of a different radius. The posterior surface of the lens include an aspheric surface.

Claims (13)

1. A bifocal lens comprising:

a posterior aspheric lens surface having a first radius of curvature,

an anterior aspheric lens surface, said anterior aspheric lens surface having a first aspheric distance optic portion having a radius of curvature equal to the first radius of curvature of the posterior aspheric lens surface,

a second near optic portion having a radius of curvature less than that of the first portion thereby forming a second optic surface on the anterior lens surface,

the first aspheric distance optic portion having a perimeter and the second near optic portion having a perimeter,

a flat surface extending outwardly from the entire radially outer periphery of the anterior lens near optic portion, and

a first haptic extending from a top portion of said bifocal lens and a second haptic extending from a lower portion of said bifocal lens, each haptic including a first and second leg extending from the bifocal lens and a cross member extending between the legs, and a footplate located at a distal end of each leg.

2. A bifocal lens as claimed in claim 1 wherein the flat surface lies in a plane which is parallel to a longitudinal axis of the lens.

3. A bifocal lens as claimed in claim 1 wherein the distance optic portion on the anterior surface is about 50% to 70% of the anterior surface of the lens and the near optic portion is about 50% to 30% of the anterior surface of the lens.

4. The bifocal lens of claim 1 wherein the distance optic portion on the anterior surface is about 60% of the anterior surface and the near optic on the anterior surface is about 40% of the anterior surface.

5. A bifocal lens according to claim 1 wherein the posterior aspherical lens surface, the anterior aspherical distance optic portion and the second near optic portion of the anterior aspheric surface are convex.

6. A bifocal lens comprising a lens body having an outermost annular circumferential edge and having a posterior aspheric lens surface having a first radius of curvature and an anterior aspheric lens surface having a first aspheric distance optic having a radius of curvature equal to the first radius of curvature of the posterior aspheric lens surface and a second near portion having a radius of curvature less than that of the first portion thereby forming a flat surface extending outwardly from an outer periphery of the second near portion to the annular circumferential edge of the lens body; and

a first haptic extending from a top portion of said lens body and a second haptic extending from a lower portion of said lens body, each haptic including a first leg and a second leg extending from the lens body and a cross member extending between the legs, and a footplate located at a distal end of each leg.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2012
From: CLOUGH, JOHN
To: LENSTEC BARBADOS INC.
Reel/Frame 029264/0484 →
Continuity (1)
Related Publication 20140128971A1 · May 8, 2014