IP Library Granted Patent US 10,758,408
Granted Patent B1
US 10,758,408 · App. 15/783,458 · Granted Sep 1, 2020

Tethered eye cannula and method of use

Inventors: Christopher Lawrence Passaglia (Lutz, FL); Sharad Suryakant Malavade (Brandon, FL)
Assignee: University of South Florida
A61F9/0017A61B3/16A61B17/34A61B2017/3458A61B2017/3482
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Quick Facts
Patent No.
US 10,758,408
App. No.
15/783,458
Granted
Sep 1, 2020
Kind
B1
Abstract

A tethered cannula having at least two curved sections for implantation into an eye and a method for implanting the cannula in the eye. The cannula can withstand ever present and changing rotational forces from eye movement and mechanical forces from the movement of the subject. The cannula can be connected to implantable or tetherable devices that are too large, heavy, or obstructive to attach directly to the eye, such as an intraocular pressure sensor or infusion pump.

Claims (17)

1. A cannula, comprising:

a first end and a second end with a body extending therebetween,

the body being hollow with a first opening at the first end of the cannula and a second opening at the second end of the cannula to permit fluid to flow into and out of the body of the cannula;

in moving from the first end of the cannula to the second end of the cannula, the body having a first curve proximate the first end of the cannula followed by a second curve, wherein the first curve is concave and the second curve is convex, the first and second curves residing generally in a first plane, wherein the first plane, when viewed along the edge of the first plane, is arced in a direction perpendicular to the edge of the first plane to a degree that roughly matches the degree of curvature of an outer surface of an eye on which the cannula is intended to be attached; and

an insertion section disposed between the first curve of the body and the first end of the cannula, the insertion section is an elongated tubular section that is angled with respect to the first plane, such that the insertion section is not co-planar with respect to the first place, and is shaped to match a curvature of an iridocorneal angle.

2. The cannula of claim 1 , further comprising the first and second curves in the body collectively appearing to be generally Z-shaped.

3. The cannula of claim 1 , further comprising the first curve and the second curve having an angle less than 90-degrees.

4. The cannula of claim 1 , further comprising the second end tethered to a medical device.

5. The cannula of claim 1 , further including being comprised entirely of a biocompatible material.

6. A method of implanting a cannula into an eye, comprising: pre-shaping a cannula having a first end opposite a second end to include two consecutive bends separated by an intermediate section, wherein the two consecutive bends comprise a first bend and a second bend, wherein the first bend opens in a first direction and the second bend opens in a second direction, such that a shape of the two consecutive bends and the intermediate section is representative of a Z-shape; curving an attachment portion of the cannula, which includes the first bend, the intermediate section, and the second bend, to roughly match a degree of curvature of an outer surface of a subject's eye, wherein the curvature of the attachment portion of the cannula resides generally in a plane which, when viewed along the edge of the plane, is arced in a direction perpendicular to the edge of the plane to a degree that roughly matches the degree of curvature of the outer surface of the subject's eye; shaping an elongated tubular insertion section proximate to the first end to match a curvature of an iridocorneal angle of the subject's eye, wherein the insertion section is angled with respect to the plane in which the attachment portion of the cannula resides, such that the insertion section is not co-planar with the plane; cutting an incision in the subject's eye; threading the insertion section of the cannula at the first end of the cannula into the subject's eye through the incision; securing the cannula to the subject's eye by suturing at least the first bend, the intermediate section, and the second bend to the outer surface of the subject's eye; and connecting the second end of the cannula to a medical device.

7. The method of claim 6 , wherein the step of pre-shaping the cannula further comprises shaping the first bend and the second bend such that each has an angle less than 90-degrees.

8. The method of claim 6 , further comprising the step of dissecting conjunctival tissue to provide surgical space for attaching the cannula to the sclera in the subject's eye.

9. The method of claim 6 , further comprising the step of connecting the cannula to a subdermal coupler that is anchored to bone.

10. A cannula, comprising: a first end and a second end with a body extending therebetween, the body being hollow with a first opening at the first end of the cannula and a second opening at the second end of the cannula to permit fluid to flow into and out of the body of the cannula; and in moving from the first end of the cannula to the second end of the cannula, the body having a first curve proximate the first end of the cannula followed an intermediate section and then a second curve, wherein the first curve is concave and the second curve is convex; the first curve and the second curve having an angle less than 90-degrees; the first curve, the intermediate section, and the second curve collectively residing generally in a longitudinal plane, wherein said plane is curved in a lateral direction such that when viewed along the edge of the plane, the first curve, the intermediate section, and the second curve are collectively arced to a degree that roughly matches the degree of curvature of an outer surface of an eye on which the cannula is intended to be attached; and an insertion section disposed between the first curve of the body and the first end of the cannula, the insertion section is an elongated tubular section that is angled with respect to the plane such that the insertion section is not co-planar with the plane and is shaped to match a curvature of an iridocorneal angle.

11. The cannula of claim 10 , further comprising the first and second curves in the body collectively appearing to be generally Z-shaped.

12. The cannula of claim 10 , further comprising the second end tethered to a medical device.

13. The cannula of claim 10 , further including being comprised entirely of a biocompatible material.

Assignments (2)
CONFIRMATORY LICENSE Recorded Dec 6, 2017
From: UNIVERSITY OF SOUTH FLORIDA
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 044714/0195 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2017
From: PASSAGLIA, CHRISTOPHER LAWRENCE; MALAVADE, SHARAD SURYAKANT
To: UNIVERSITY OF SOUTH FLORIDA
Reel/Frame 043942/0332 →
Continuity (1)
Provisional Application 62407825 · Oct 13, 2016