IP Library Granted Patent US 9,241,786
Granted Patent B2
US 9,241,786 · App. 13/983,988 · Granted Jan 26, 2016

Method for producing an incision figure for a corneal prosthesis

Inventors: Johannes Krause (Nuremberg, DE); Mathias Woelfel (Erlangen, DE)
Assignee: Wavelight GmbH
A61F2/143A61F2/142A61F2/148A61F9/0081A61F9/00831A61F9/00836A61F2009/00872
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Quick Facts
Patent No.
US 9,241,786
App. No.
13/983,988
Granted
Jan 26, 2016
Kind
B2
Abstract

Proposed is an apparatus for assistance in the implantation of a corneal prosthesis in a human eye. The apparatus comprises a laser device for providing focussed, pulsed laser radiation, and a control program for the laser device. The control program is designed, to create an incision figure in the tissue of the eye by means of the laser radiation, this incision figure allowing the corneal prosthesis to be inserted. The incision figure in this case comprises a bed incision located entirely in the depth of the corneal material and an annular incision, which, within the circumferential line of the bed incision, extends from the latter, along its entire annular circumference, as far as the corneal anterior surface. The incision figure further may comprise an auxiliary incision, which extends from a location of the eye surface outside the circumferential line of the bed incision as far the bed incision.

Claims (27)

1. Method for producing an incision figure through which a corneal prosthesis can be inserted into a human eye, comprising:

providing focussed, pulsed laser radiation,

producing an incision figure in the tissue of the eye using the laser radiation by:

producing a bed incision located entirely in the depth of a corneal material,

producing an annular incision, which, within a circumferential line of the bed incision, extends from the bed incision to a corneal anterior surface, the annular incision produced by scanning the laser radiation with a plurality of superimposed ring scans or a spiral scan from the bed incision to the corneal anterior surface; and

producing an auxiliary incision through which the corneal prosthesis can be inserted, the auxiliary incision extending from the corneal anterior surface outside the circumferential line of the bed incision to the bed incision, at each location the auxiliary incision being narrower than the greatest diameter of the annular incision.

2. Method for implanting a corneal prosthesis into a human eye, comprising:

providing focussed, pulsed laser radiation,

producing an incision figure in the tissue of the eye using the laser radiation by:

producing a bed incision located entirely in the depth of a corneal material

producing an annular incision, which, within a circumferential line of the bed incision, extends from the bed incision to a corneal anterior surface, the annular incision produced by scanning the laser radiation with a plurality of superimposed ring scans or a spiral scan from the bed incision to the corneal anterior surface; and

producing an auxiliary incision through which the corneal prosthesis can be inserted, the auxiliary incision extending from the corneal anterior surface outside the circumferential line of the bed incision to the bed incision, at each location the auxiliary incision being narrower than the greatest diameter of the annular incision;

folding together the prosthesis before introducing it into the auxiliary incision; and

unfolding the prosthesis after it has passed through the auxiliary incision.

3. Method according to claim 1 , the bed incision extending at a constant depth of the corneal material.

4. Method according to claim 1 , wherein producing the auxiliary incision comprises scanning the laser radiation from a first end of the auxiliary incision located at the corneal anterior surface to a second end of the auxiliary incision located at the bed incision.

5. Method according to claim 1 , wherein producing the bed incision comprises scanning the laser radiation from an area of transition between the auxiliary incision and the bed incision and to an opposite edge portion of the bed incision.

6. Method according to claim 1 , wherein producing the incision figure comprises producing the figure in this order: the auxiliary incision, the bed incision, and the annular incision.

7. Method according to claim 1 , further comprising:

removing a piece of corneal tissue delimited by the bed incision and the annular incision.

8. Method for implanting a corneal prosthesis into a human eye, comprising:

providing focussed, pulsed laser radiation,

producing an incision figure in the tissue of the eye using the laser radiation by:

producing a bed incision located entirely in the depth of a corneal material,

producing an annular incision, which, within a circumferential line of the bed incision, extends from the bed incision to a corneal anterior surface, the annular incision produced by scanning the laser radiation with a plurality of superimposed ring scans or a spiral scan from the bed incision to the corneal anterior surface; and

producing an auxiliary incision through which the corneal prosthesis can be inserted, the auxiliary incision extending from the corneal anterior surface outside the circumferential line of the bed incision to the bed incision, at each location the auxiliary incision being narrower than the greatest diameter of the annular incision; and

inserting the corneal prosthesis into the eye through the auxiliary incision such that a main portion of the prosthesis sits in an opening left by the removed piece of tissue, and one or more support elements projecting laterally from the prosthesis main portion extend into the regions of the bed incision located outside the opening.

Assignments (2)
CONFIRMATORY DEED OF ASSIGNMENT EFFECTIVE APRIL 8, 2019 Recorded Dec 11, 2019
From: WAVELIGHT GMBH
To: ALCON INC.
Reel/Frame 051257/0835 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2013
From: WOLFEL, MATHIAS; KRAUSE, JOHANNES
To: WAVELIGHT GMBH
Reel/Frame 030953/0301 →
Continuity (1)
Related Publication 20130331935A1 · Dec 12, 2013