IP Library Granted Patent US 11,464,676
Granted Patent B2
US 11,464,676 · App. 17/683,743 · Granted Oct 11, 2022

Dual blade ophthalmologic surgery device

Inventors: John T. Sorensen (Lake Elsinore, CA); Michael Mittelstein (Laguna Niguel, CA); Soheila Mirhashemi (Laguna Niguel, CA)
Assignee: Microsurgical Technology, Inc.
A61F9/00781A61B17/320016A61B18/1482A61F9/007A61F9/0079A61F9/00736A61B2017/320064A61B2018/00083A61B2018/1497
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Quick Facts
Patent No.
US 11,464,676
App. No.
17/683,743
Granted
Oct 11, 2022
Kind
B2
Abstract

A dual blade device and method useable for performing an ab interno procedure within a human eye to remove a strip of trabecular meshwork tissue.

Claims (25)

1. An ab interno method for forming an opening in trabecular meshwork of a patient's eye, said method comprising the steps of:

obtaining a dual blade device that comprises

a probe that extends along a first longitudinal axis,

wherein the probe further comprising a distal portion that extends along a second longitudinal axis, the distal portion connected to the probe by a bend of an angle between approximately 30 degrees to approximately 90 degrees relative to the first longitudinal axis of the probe,

wherein the distal portion comprises: a distal end comprising a transverse width, a top surface, a bottom surface, and a tip disposed on a bottom of the distal end, wherein said tip is tapered such that the transverse width of the distal end is narrowest at the tip and ends in a vertical edge relative to the bottom surface;

wherein the distal end further comprises first and second lateral cutting edges, wherein the first and second lateral cutting edges are separated by a gap having a distance D, and wherein the first and second lateral cutting edges are configured to simultaneously cut tissue that passes over the top surface of the distal end and into contact with the first and second lateral cutting edges;

wherein the bend comprises a rounded corner;

and

wherein the distal portion is sized to fit within Schlemm's Canal of the human eye;

forming an opening into an anterior chamber of the eye;

inserting the probe through the opening and into the anterior chamber;

advancing the probe through the anterior chamber, to an operative position wherein the distal portion is positioned within Schlemm's Canal and the first and second lateral cutting edges are contacting the trabecular meshwork; and, thereafter

causing the distal portion to advance through Schlemm's Canal such that trabecular meshwork tissue passes over the top surface of the distal end and contacts the first and second lateral cutting edges;

and

cutting a strip of tissue having approximate width W with the first and second lateral cutting edges, from the trabecular meshwork, said approximate width W being approximately equal to the distance D between the first and second lateral cutting edges.

2. The method of claim 1 further comprising the step of infusing fluid into the anterior chamber under controlled pressure to keep the anterior chamber filled with fluid during performance of the method.

3. The method of claim 1 wherein the strip of tissue cut from the trabecular meshwork has a length of about 2 to 10 millimeters.

4. The method of claim 1 , further comprising the step of:

disconnecting the strip of tissue from the trabecular meshwork such that it may be removed from the eye.

5. The method of claim 4 , wherein the disconnecting step comprises using a tissue severing apparatus to transect or sever the strip of tissue so as to disconnect it from the patient's body.

6. The method of claim 1 further comprising the step of:

removing the strip of tissue from the patient's eye.

7. The method of claim 1 , wherein the step of forming an opening into the anterior chamber of the eye comprises forming an incision through a cornea of the eye.

8. The method of claim 1 wherein the method is performed under direct visualization through a lens device positioned on an anterior aspect of the eye.

9. The method of claim 1 wherein the angle of the bend is approximately 90 degrees relative to the first longitudinal axis of the probe.

Continuity (9)
Continuation 17115922 · Dec 9, 2020
Continuation 15714909 · Sep 25, 2017
Division 15076624 · Mar 21, 2016
Continuation 14789632 · Jul 1, 2015
Continuation 14481754 · Sep 9, 2014
Division 13159356 · Jun 13, 2011
Division 10560267
Provisional Application 60477258 · Jun 10, 2003
Related Publication 20220183883A1 · Jun 16, 2022
Cited By (1)
US 12,514,750