IP Library › Granted Patent US 10,028,823
Granted Patent B2
US 10,028,823 · App. 15/103,610 · Granted Jul 24, 2018

Accommodating intraocular lens

Inventor: Junsuke Akura (Wakayama, JP)
Assignee: MIRAI EYE INC.
A61F2/1635A61F2/16015A61F2/1648A61F2/1694A61F2/1627A61F2002/1682A61F2250/0003
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Quick Facts
Patent No.
US 10,028,823
App. No.
15/103,610
Granted
Jul 24, 2018
Kind
B2
Abstract

An intraocular lens includes a lens capsule expanding device and an optical portion. The lens capsule expanding device includes a front supporting portion to make contact with an inner surface of an anterior capsule. A rear supporting portion provided on a rear side of the front supporting portion makes contact with an inner surface of a posterior capsule while facing the front supporting portion. A connecting portion connects the front supporting portion and the rear supporting portion so as to have biasing force in a direction of separating the front supporting portion and the rear supporting portion from each other. Due to the biasing force, the front supporting portion presses the inner surface of the anterior capsule and the rear supporting portion presses the inner surface of the posterior capsule. The optical portion changes the curvature of a central portion according to movement of the connecting portion.

Claims (21)

1. An accommodating intraocular lens (IOL) configured to be inserted into a lens capsule from which contents are removed during an ophthalmic surgery, comprising:

a lens capsule expanding device; and

an optical portion arranged centrally within the lens capsule expanding device, the optical portion comprising an anterior convex surface, a posterior convex surface, a central portion, and a circumferential portion, the optical portion being elastically deformable, the lens capsule expanding device comprising:

a front ring-shaped supporting portion comprising an anterior capsular-engaging circumferential surface provided in such a manner as to make contact with an inner surface of an anterior capsule so as to pass light toward a rear side of the intraocular lens, the anterior capsular-engaging circumferential surface gradually inclined toward the rear side of the intraocular lens as it advances from an inner circumferential portion of the front ring-shaped supporting portion toward an outer circumferential portion of the front ring-shaped supporting portion, the front ring-shaped supporting portion further comprising radial notches extending from the inner circumferential portion toward the outer circumferential portion;

a rear ring-shaped supporting portion comprising a posterior capsular-engaging circumferential surface provided in such a manner as to make contact with an inner surface of a posterior capsule while facing the front supporting portion so as to pass light from a front side of the intraocular lens toward the rear side of the intraocular lens, the posterior capsular-engaging circumferential surface gradually inclined toward the front side of the intraocular lens as it advances from an inner circumferential portion of the rear ring-shaped supporting portion toward an outer circumferential portion of the rear ring-shaped supporting portion; and

a connecting portion placed between the front ring-shaped supporting portion and the rear ring-shaped supporting portion, the connecting portion comprising:

a plurality of discrete connecting thin plate members formed of an elastic material and provided at equal intervals in the circumferential direction of the front ring-shaped supporting portion and the rear ring-shaped supporting portion, the plurality of discrete connecting thin plate members connecting the inner circumferential portion of the front ring-shaped supporting portion and the inner circumferential portion of the rear ring-shaped supporting portion in such a manner as to have biasing force in a direction of separating the front ring-shaped supporting portion and the rear supporting portion from each other,

a bent portion formed in the connecting portion at each of the plurality of discrete connecting thin plate members so as to be bent in such a manner as to expand in a radially outward direction of the front ring-shaped supporting portion and the rear ring-shaped supporting portion, and

a plurality of U-shaped or V-shaped locking members provided on an inner side of the bent portion of the connecting portion at each of the plurality of discrete connecting thin plate members,

wherein

due to the biasing force of the connecting portion, the front ring-shaped supporting portion is configured to press the inner surface of the anterior capsule and the rear ring-shaped supporting portion is configured to press the inner surface of the posterior capsule, and

the circumferential portion of the optical portion is locked directly to the plurality of U-shaped or V-shaped locking members of the bent portion of the connecting portion in such a manner that the optical portion is surrounded by the connecting portion of the lens capsule expanding device, and force is applied directly or indirectly in a radial direction from the connecting portion to the circumferential portion of the optical portion according to movement of the connecting portion when the front ring-shaped supporting portion and the rear ring-shaped supporting portion move in a direction closer to or away from each other with movement of the lens capsule whereby a curvature of the optical portion is changed,

wherein the plurality of U-shaped or V-shaped locking members are open in a radially inward direction of the optical portion so as to lock the circumferential portion of the optical portion by sandwiching the circumferential portion from a front-back direction,

wherein the optical portion is formed of an elastic film that can be expanded and contracted, and has a predetermined thickness, and a flowable optical substance is filled in the elastic film,

wherein the elastic film of the circumferential portion of the optical portion is thicker than the elastic film of the central portion of the optical portion,

wherein the optical portion is formed so that the thickness of the elastic film gradually increases as it advances from the central portion toward the circumferential portion, and

wherein the optical portion is formed so that a refractive index of the flowable optical substance gradually increases toward a center of the optical portion.

2. The accommodating intraocular lens according to claim 1 , wherein

the elastic film of the circumferential portion of the optical portion has a thickness of 20 μm to 100 μm, the elastic film of the central portion of the optical portion has a thickness of 5 μm to 20 μm.

3. The accommodating intraocular lens according to claim 1 , wherein

the optical portion has an injector for injecting the flowable substance into the optical portion.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2018
From: XLENS TECHNOLOGIES INC.
To: MIRAI EYE INC.
Reel/Frame 046026/0407 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2017
From: AKURA, JUNSUKE
To: XLENS TECHNOLOGIES, INC
Reel/Frame 040876/0470 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2017
From: FRONTIER VISION CO., LTD
To: XLENS TECHNOLOGIES INC.
Reel/Frame 040876/0523 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2016
From: AKURA, JUNSUKE
To: FRONTIER VISION CO., LTD
Reel/Frame 038879/0857 →
Priority Claims (1)
JP 2013-257870 · Dec 13, 2013 · national
Continuity (1)
Related Publication 20160310264A1 · Oct 27, 2016