IP Library Granted Patent US 10,799,338
Granted Patent B2
US 10,799,338 · App. 15/449,893 · Granted Oct 13, 2020

Wide depth of focus vortex intraocular lenses and associated methods

Inventor: Tjundewo Lawu (Tokyo, JP)
Assignee: Hoya Corporation
A61F2/164A61F2/1618A61F2/1637G02C7/045A61F2002/1681A61F2002/1696A61F2240/004A61F2250/0053G02C7/042
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Quick Facts
Patent No.
US 10,799,338
App. No.
15/449,893
Granted
Oct 13, 2020
Kind
B2
Abstract

A wide range depth of focus vortex IOL or other optical device or element and processes for manufacturing same.

Claims (21)

1. An optical device comprising:

an intraocular lens (IOL) composed entirely of a refractive multifocal optical element implementing an angular modulation of a transmittance of said lens and defining a center and an optical boundary;

wherein the lens includes one or more surfaces implementing a power that varies in the azimuthal direction, thereby defining an azimuthal power distribution, and that does not vary in the radial direction from the center to the optical boundary, and

wherein the refractive multifocal optical element includes spiral or helical structure implemented to control the refractive foci of incident light.

2. The optical device of claim 1 , wherein the lens provides total visual depth of focus (DOF) for the optical device of about 2.0 D to 3.0 D.

3. The optical device of claim 1 , wherein the lens provides total visual depth of focus (DOF) for the optical device of about 1.0 D to 2.0 D.

4. The optical device of claim 1 , wherein the lens provides total visual depth of focus (DOF) for the optical device of about 0.5 D to 1.0 D.

5. The optical device of claim 1 , wherein the azimuthal power distribution is linear.

6. The optical device of claim 1 , wherein the azimuthal power distribution is nonlinear.

7. The optical device of claim 6 , wherein the azimuthal power distribution corresponds to a nonlinear dioptric power distribution determined based on a sinusoidal function.

8. The optical device of claim 6 , wherein the azimuthal power distribution corresponds to a nonlinear dioptric power distribution determined based on an error function.

9. The optical device of claim 1 , wherein the azimuthal power distribution is implemented in an angular dioptic power zone ranging from a lowest dioptic power sector to a highest dioptic power sector, the lens including a surface step reduction between the lowest dioptric power sector and the highest dioptric power sector.

10. The optical device of claim 1 , wherein the azimuthal power distribution provides more power in one or more of a distance vision zone, an intermediate vision zone, and a near vision zone.

11. The optical device of claim 1 , wherein the azimuthal power distribution provides more power in one of a distance vision zone and an intermediate vision zone.

12. The optical device of claim 1 , wherein the azimuthal power distribution provides more power in an intermediate vision zone.

13. The optical device of claim 1 , wherein the azimuthal power distribution provides less power in a distance vision zone extending visual depth of focus.

14. The optical device of claim 1 , wherein the azimuthal power distribution changes slower in one or more of a low power portion, a medium power portion, and a high power portions thereof as compared to an adjacent portion of the azimuthal power distribution.

15. The optical device of claim 1 , wherein the azimuthal power distribution changes slower in low and high power portions thereof as compared to a portion of the azimuthal power distribution between said low and high power portions.

16. The optical device of claim 1 , wherein the azimuthal power distribution changes slower in a portion of the lens along the azimuthal power distribution as compared to one or more adjacent portions of the lens.

17. The optical device of claim 1 , wherein the lens is an extended depth of focus lens.

18. The optical device of claim 1 , wherein the azimuthal power distribution provides more power in high and low intermediate vision zones.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2024
From: HOYA CORPORATION
To: HOYA MEDICAL SINGAPORE PTE. LTD.
Reel/Frame 069753/0200 →
Continuity (3)
Continuation In Part PCTIB2015056780 · Sep 4, 2015
Provisional Application 62046530 · Sep 5, 2014
Related Publication 20170196682A1 · Jul 13, 2017