IP Library Granted Patent US 11,559,330
Granted Patent B2
US 11,559,330 · App. 17/173,531 · Granted Jan 24, 2023

Surgical cannula with removable pressure seal

Inventors: Christopher K. Jones (Colorado Springs, CO); Douglas Snell (Overland Park, KS); Isaac Running (Bozeman, MT); R. Sean Churchill (Mequon, WI); Nathan Kemper (Virginia Beach, VA)
Assignee: Embody, Inc.
A61B17/3462A61B17/3423A61B17/3498A61F2/4601
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Quick Facts
Patent No.
US 11,559,330
App. No.
17/173,531
Granted
Jan 24, 2023
Kind
B2
Abstract

The present disclosure relates to a surgical cannula with a removable seal at one end. The surgical cannula is a wide gauge surgical cannula, that allows materials and tools to be introduced into a body during a surgical procedure. The cannula includes a seal structure at one end, which may be attached to and detached from the cannula body as desired. The seal structure includes one or more valves that retain pressure within the cannula. The one or more valves are configured to allow a tool through the valve(s), while retaining pressure inside the cannula, so that surgical tools may be inserted through the cannula even when the seal structure is attached to an end of the cannula.

Claims (40)

1. A surgical cannula comprising:

a seal structure including at least one valve, the valve being a duckbill valve that acts as a one-way check valve by opening in response to pressure applied onto the valve from one direction but not from an opposite direction; and

a continuous unitary piece of material forming a cannula body, including:

an insertion portion having a distal opening that is configured to be inserted into tissue, and

a receiving portion that includes a proximal opening and is configured to reversibly receive the seal structure;

the cannula body defining a longitudinal axis extending from the proximal opening to the distal opening;

wherein the seal structure is configured to removably associate with the proximal opening of the cannula body; and

wherein the seal structure is configured to retain a positive pressure within the cannula body when engaged with the cannula body, and the seal structure is configured to retain a positive pressure within the cannula body when an object is inserted through the cannula and the seal structure;

the cannula further including one or more suture attachment structures extending outward laterally from the cannula body;

wherein the one or more suture attachment structures each include a flange having an eyelet hole extending therethrough; and

wherein the one or more suture attachment structures are oriented such that the eyelet holes extend at a non-zero angle with respect to the longitudinal axis of the cannula; and

one or more internal recesses in an inner wall of the cannula located directly adjacent to the one or more suture attachment structures, and extending substantially radially outward from the longitudinal axis into the inner wall of the cannula.

2. The surgical cannula of claim 1 , wherein:

the cannula body includes a retaining lip adjacent to the proximal opening that extends outward laterally from the receiving portion; and

the seal structure is configured to engage with the retaining lip so as to cover the proximal opening.

3. The surgical cannula of claim 1 , wherein:

the cannula body includes

a first retaining lip located adjacent to the proximal opening and extending outward laterally from the receiving portion,

a second retaining lip located closer to the distal opening than the first retaining lip and also extending outward laterally from the receiving portion, and

a retaining groove located between the first retaining lip and the second retaining lip; and

the seal structure includes a retaining hook structure extending laterally inward from a sidewall of the seal structure, the retaining hook structure being configured to reversibly engage with the retaining groove on the cannula body.

4. The surgical cannula of claim 1 , wherein:

the cannula body is substantially rigid and formed, at least in part, of a material selected from the group consisting of polycarbonate and polypropylene; and

the insertion portion of the cannula body has a first gauge, the receiving portion of the cannula body has a second gauge, and the second gauge is larger than the first gauge.

5. A method of performing an arthroscopic surgery, comprising:

inserting the surgical cannula according to claim 1 into an incision in the skin of a patient providing access to a surgical site;

delivering an implant through the cannula to the surgical site; and

securing the implant to tissue at the surgical site.

6. The surgical cannula of claim 1 , wherein

the valve and the seal structure are all a continuous unitary piece of an elastomeric material.

7. The surgical cannula of claim 1 , wherein:

the seal structure further includes a tether, and a tab portion;

the tether including an arm portion connecting the seal structure to a tether ring, the tether ring surrounding the cannula body;

the tab portion extending laterally outward from the seal structure and being configured to be gripped in order to facilitate removal of the seal structure from the receiving portion of the cannula body; and

the seal structure, the tether, and the tab portion are all a continuous unitary piece of an elastomeric material.

8. The surgical cannula of claim 1 , wherein

the insertion portion of the cannula body has a first width at the distal opening;

the insertion portion having a second width at an end of the insertion portion opposite the distal opening;

wherein the second width is larger than the first width; and

wherein the insertion portion gradually narrows from the second width to the first width.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2022
From: JONES, CHRISTOPHER K.; SNELL, DOUGLAS; RUNNING, ISAAC; CHURCHILL, R. SEAN; KEMPER, NATHAN
To: EMBODY, INC.
Reel/Frame 061782/0336 →
SECURITY INTEREST Recorded Sep 2, 2021
From: EMBODY, INC.
To: HORIZON TECHNOLOGY FINANCE CORPORATION
Reel/Frame 057372/0332 →
Continuity (2)
Provisional Application 62972897 · Feb 11, 2020
Related Publication 20210275220A1 · Sep 9, 2021
Cited By (1)
US 12,324,577