IP Library Granted Patent US 9,265,603
Granted Patent B2
US 9,265,603 · App. 14/173,507 · Granted Feb 23, 2016

Intraocular lens

Inventors: Demas Sanger (Fukaya, JP); Tjundewo Lawu (Toda, JP)
Assignee: Hoya Corporation
A61F2/1624A61F2/164A61F2/1613A61F2/1618
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Quick Facts
Patent No.
US 9,265,603
App. No.
14/173,507
Granted
Feb 23, 2016
Kind
B2
Abstract

An intraocular lens in which deterioration in contrast is suppressed even when the optical axis of the intraocular lens is decentered from the optical axis of the eyeball when the intraocular lens is inserted into the eye while the advantage of a conventional aberration reduction type intraocular lens that the image is seen clearly is sustained by employing such a power distribution as respectively having at least one positive power deviation region (E 1 ) having a power larger than that represented by the reference power distribution and at least one negative power deviation region (E 2 ) having a power smaller than that represented by the reference power distribution in the central region of the intraocular lens assuming that a power distribution being set to cancel the spherical aberration of cornea when the intraocular lens is inserted into the eye is the reference power distribution.

Claims (33)

1. An intraocular lens for use in an eye having an optical axis and a spherical aberration of the cornea, the intraocular lens comprising:

an optical axis;

a reference power distribution region defining a power distribution that is equal to a reference power distribution that is set to cancel, but not perfectly cancel, the spherical aberration of the cornea when the intraocular lens is inserted into the eye;

a positive power deviation region, defining a power distribution that is greater than the reference power distribution, that is radially inward of the reference power distribution region, substantially circular, non-annular, and centered relative to the optical axis, wherein the power of the positive power deviation region is greater than reference power at the optical axis; and

a negative power deviation region, defining a power distribution that is less than the reference power distribution, that is radially inward of the reference power distribution region, is substantially annular and centered relative to the optical axis.

2. An intraocular lens as claimed in claim 1 , wherein

the positive power deviation region and the negative power deviation region are located within a central region that defines a substantially circular shape centered around the optical axis and a radius of not less than 0.7 mm and not more than 1.75 mm.

3. An intraocular lens as claimed in claim 1 , wherein

a mean value of power deviation amounts from the reference power distribution in the positive power deviation region is not less than 0.1 diopter and not more than 0.8 diopter, and a mean value of power deviation amounts from the reference power distribution in the negative power deviation region is not less than 0.1 diopter and not more than 0.8 diopter.

4. An intraocular lens as claimed in claim 1 , wherein

the positive power deviation region defines an average positive power deviation from the reference power distribution, the negative power deviation region defines an average negative power deviation from the reference power distribution, and the absolute value of the average positive power deviation is equal to the absolute value of the average negative power deviation.

5. An intraocular lens as claimed in claim 1 , wherein

there is only one positive power deviation region and there is only one negative power deviation region.

6. An intraocular lens as claimed in claim 1 , wherein

the power deviation of the positive power deviation region is greatest at the optical axis.

7. An intraocular lens as claimed in claim 1 , wherein

deterioration in contrast is reduced, as compared to an intraocular lens with the same reference power distribution and no positive and negative power deviation regions, when the optical axis of the intraocular lens is de-centered from the optical axis of the eye.

8. An intraocular lens for use in an eye having an optical axis and a spherical aberration of the cornea, the intraocular lens comprising:

an optical axis;

a reference power distribution region defining a power distribution that is equal to a reference power distribution that is set to cancel the spherical aberration of the cornea when the intraocular lens is inserted into the eye;

a negative power deviation region, defining a power distribution that is less than the reference power distribution, that is radially inward of the reference power distribution region, substantially circular, non-annular, centered relative to the optical axis, and that has a power that is less than reference power at the optical axis; and

a positive power deviation region, defining a power distribution that is greater than the reference power distribution, that is radially inward of the reference power distribution region, is substantially annular and centered relative to the optical axis;

wherein there is only one positive power deviation region and there is only one negative power deviation region.

9. An intraocular lens as claimed in claim 8 , wherein

the positive power deviation region and the negative power deviation region are located within a central region that defines a substantially circular shape centered around the optical axis and a radius of not less than 0.7 mm and not more than 1.75 mm.

10. An intraocular lens as claimed in claim 8 , wherein

a mean value of power deviation amounts from the reference power distribution in the positive power deviation region is not less than 0.1 diopter and not more than 0.8 diopter, and a mean value of power deviation amounts from the reference power distribution in the negative power deviation region is not less than 0.1 diopter and not more than 0.8 diopter.

11. An intraocular lens as claimed in claim 8 , wherein

the positive power deviation region defines an average positive power deviation from the reference power distribution, the negative power deviation region defines an average negative power deviation from the reference power distribution, and the absolute value of the average positive power deviation is equal to the absolute value of the average negative power deviation.

12. An intraocular lens as claimed in claim 8 , wherein

the power deviation of the positive power deviation region is greatest at the optical axis.

13. An intraocular lens as claimed in claim 8 , wherein

deterioration in contrast is reduced, as compared to an intraocular lens with the same reference power distribution and no positive and negative power deviation regions, when the optical axis of the intraocular lens is de-centered from the optical axis of the eye.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2024
From: HOYA CORPORATION
To: HOYA MEDICAL SINGAPORE PTE. LTD.
Reel/Frame 069753/0200 →
Priority Claims (1)
JP 2006-165278 · Jun 14, 2006 · national
Continuity (2)
Continuation 12304651
Related Publication 20140309736A1 · Oct 16, 2014