IP Library › Granted Patent US 10,492,903
Granted Patent B1
US 10,492,903 · App. 16/512,081 · Granted Dec 3, 2019

Prosthetic capsular devices, systems, and methods

Inventor: Gary N. Wortz (Nicholasville, KY)
Assignee: Omega Ophthalmics LLC
A61F2/14A61F2/1648A61F2/1694A61F2/16A61F2/1662
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Quick Facts
Patent No.
US 10,492,903
App. No.
16/512,081
Granted
Dec 3, 2019
Kind
B1
Abstract

The present invention relates to a prosthetic capsular bag and method for inserting the same. The prosthetic capsular bag helps to maintain the volume of the natural capsular bag, thereby stabilizing the effective lens position of an IOL so that refractive outcomes may be improved with cataract surgery. The prosthetic capsular bag further provides an integrated refractive surface, providing a means for experimentally determining an effective lens position prior to inserting an IOL.

Claims (36)

1. A prosthetic implant device for insertion into a natural capsular bag of an eye after removal of a cataract, wherein the prosthetic implant device comprises:

an anterior side including an opening; and

a posterior side comprising a first refractive surface,

wherein the prosthetic implant device is configured to mechanically maintain substantially a volume of the natural capsular bag;

wherein the prosthetic implant device is configured to self-expand to maintain the volume of the natural capsular bag; and

wherein the prosthetic implant device is adapted to contain a second refractive surface, and

wherein at least one of the first refractive surface and the second refractive surface comprises an accommodative lens.

2. The prosthetic implant device of claim 1 , wherein at least one of the first refractive surface and the second refractive surface has a non-zero diopter optical power.

3. The prosthetic implant device of claim 1 , wherein at least one of the first refractive surface and the second refractive surface includes at least one or more of the following characteristics: concave, convex, spherical, aspheric, wavefront, multifocal diffractive, multifocal refractive, multifocal zonal, UV filtering, diffractive chromatic aberration reducing, and astigmatism correcting toric form.

4. The prosthetic implant device of claim 1 , wherein at least one of the first refractive surface and the second refractive surface has an optical power between +30 diopter and −30 diopter.

5. The prosthetic implant device of claim 1 , wherein the first refractive surface is adapted to allow calculation of a refractive power based on at least one of a power or location of the first refractive surface, the refractive power configured to be used to select the second refractive surface.

6. The prosthetic implant device of claim 1 , wherein the opening is circular.

7. The prosthetic implant device of claim 1 , wherein a portion of the prosthetic implant device is shaped such that an exterior contour of the prosthetic implant device conforms to a shape of the natural capsular bag and maintains the volume of the natural capsular bag.

8. The prosthetic implant device of claim 1 , wherein the opening is configured to be open when the prosthetic implant device is placed in the eye.

9. The prosthetic implant device of claim 1 , wherein the prosthetic implant device comprises a substantially discoid shape.

10. The prosthetic implant device of claim 1 , further comprising an interior receptacle configured to deliver pharmaceuticals to the eye.

11. The prosthetic implant device of claim 1 , wherein the prosthetic implant device is approximately the size, shape, and volume of a natural human lens.

12. A prosthetic implant device for insertion into a natural capsular bag of an eye after removal of a cataract, wherein the prosthetic implant device comprises:

an anterior side including an opening;

a posterior side; and

a deformable sidewall between the anterior side and the posterior side,

wherein the prosthetic implant device is configured to mechanically maintain substantially a volume of the natural capsular bag,

wherein the prosthetic implant device is configured to self-expand to maintain the volume of the natural capsular bag,

wherein the prosthetic implant device is adapted to contain an intraocular lens comprising an accommodative lens, and

wherein the intraocular lens is in physical contact with a peripheral internal surface of the deformable sidewall.

13. The prosthetic implant device of claim 12 , wherein the posterior side comprises a refractive surface.

14. The prosthetic implant device of claim 13 , wherein the refractive surface is adapted to allow calculation of a refractive power based on at least one of a power or location of the refractive surface, the refractive power configured to be used to select the intraocular lens.

15. The prosthetic implant device of claim 13 , wherein the refractive surface is integrated into the posterior side.

16. The prosthetic implant device of claim 12 , wherein the prosthetic implant device comprises a substantially discoid shape.

17. The prosthetic implant device of claim 12 , wherein the opening is circular.

18. The prosthetic implant device of claim 12 , wherein the prosthetic implant device is a biologically compatible, deformable prosthetic implant device.

19. The prosthetic implant device of claim 12 , wherein a portion of the prosthetic implant device is shaped such that an exterior contour of the prosthetic implant device conforms to a shape of the natural capsular bag and maintains the volume of the natural capsular bag.

20. The prosthetic implant device of claim 12 , further comprising an interior receptacle configured to deliver pharmaceuticals to the eye.

21. The prosthetic implant device of claim 12 , wherein the opening is configured to be open when the prosthetic implant device is placed in the eye.

22. The prosthetic implant device of claim 12 , wherein the prosthetic implant device has sufficient elasticity to resume a pre-folded shape once positioned in the eye.

23. The prosthetic implant device of claim 12 , wherein the prosthetic implant device is approximately the size, shape, and volume of a natural human lens.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2019
From: WORTZ, GARY N.
To: BLUEGRASS EYE SURGERY, PSC
Reel/Frame 050863/0876 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2019
From: BLUEGRASS EYE SURGERY, PSC
To: OMEGA OPHTHALMICS LLC
Reel/Frame 050863/0936 →
Continuity (3)
Continuation 16135806 · Sep 19, 2018
Continuation 14551544 · Nov 24, 2014
Continuation 13402398 · Feb 22, 2012
Cited By (2)
US 12,186,179 US 12,290,434