Claims
- 1. An intraocular lens comprising:
i. a first component which consists of an optical body and a haptic body adjacent and attached to said optical body; ii. a second component, located posterior to said first component, which is structurally adapted to maintain substantial contact with the posterior surface of the capsular bag when implanted in the eye; and iii. a transition zone which smoothly connects the first component with the second component; the lens being configured so as to allow the first component to move forward and back relative to the second component, along the optical axis of the optical body.
- 2. The intraocular lens of claim 1 wherein its overall diameter is from about 8 to about 13 mm.
- 3. The intraocular lens of claim 1 having a central lens thickness of from about 2 to about 5 mm.
- 4. The intraocular lens of claim 1 wherein said optical body has a diameter of from about 4 to about 7 mm.
- 5. The intraocular lens of claim 1 wherein said first component has a radius of curvature of from about 8 to about 13 mm.
- 6. The intraocular lens of claim 1 wherein said second component has a radius of curvature of from about 5 to about 9 mm.
- 7. The intraocular lens of claim 4 having an overall diameter of from about 9 to about 11 mm, a central lens thickness of from about 3 to about 4 mm, a first component radius of curvature from about 9 to about 11 mm, and a second component radius of from about 6 to about 7.5 mm.
- 8. The intraocular lens of claim 1 which further comprises at least one guiding structure structurally adapted to assist the optical body of said first component in shifting bi-directionally along optical axis.
- 9. The intraocular lens of claim 8 wherein said at least one guiding structure is a groove.
- 10. The intraocular lens of claim 9 wherein said at least one guiding structure is on the haptic body.
- 11. The intraocular lens of claim 9 wherein said at least one guiding structure is on the transition zone.
- 12. The intraocular lens of claim 1 wherein said lens is made from optically clear elastomeric materials.
- 13. The intraocular lens of claim 12 wherein the elastomeric material is selected from silicones, acrylic materials, hydrogels, and mixtures thereof.
- 14. The method of implanting the intraocular lens of claim 1 into the eye of a patient wherein the second component is placed in the eye so as to be posterior to said first component and is in substantial contact with the posterior surface of the capsular bag of the eye.
- 15. The method of molding the intraocular lens of claim 1 using a mold comprising a bottom piece, a top piece, and an insertion piece which is placed inside and between said bottom and top pieces during the molding process to form the hollow center of said intraocular lens.
- 16. The method of molding the intraocular lens of claim 1 comprising placing an optically clear elastomeric material selected from silicones, acrylics materials, hydrogels, and mixtures thereof, in a flowable state, inside a mold comprising a bottom piece, a top piece and an insertion piece which is placed in said elastomeric material between said bottom and top pieces during said molding process to form the hollow center of said intraocular lens; allowing said elastomeric material to harden in the mold; removing the insertion piece from the lens; and removing the lens from the mold.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from U.S. Provisional Patent Application No. 60/306,031, filed Jul. 17, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60306031 |
Jul 2001 |
US |