IP Library Granted Patent US 10,617,803
Granted Patent B2
US 10,617,803 · App. 15/652,442 · Granted Apr 14, 2020

Aspirating cautery forceps

Inventors: Joseph L. Mark (Indianapolis, IN); Brian C. Dougherty (Terre Haute, IN)
Assignee: Nico Corporation
A61M1/0084A61B18/148A61B2018/1475A61B2218/002A61B2218/007
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Quick Facts
Patent No.
US 10,617,803
App. No.
15/652,442
Granted
Apr 14, 2020
Kind
B2
Abstract

Multiple surgical devices that may be used during surgical procedures are shown and described herein. A surgical device includes an outer cannula and an inner member that has a pair of electrodes positioned at a distal end. The inner member defines an aspiration delivery channel with an opening. A handle assembly actuates the outer cannula relative to the inner member, thereby adjusting a size of the opening of the aspiration delivery channel. In another exemplary configuration, an irrigation hub is provided to deliver irrigation through the surgical device.

Claims (30)

1. A surgical device comprising:

a rigid outer cannula;

an inner member disposed within the outer cannula and having a pair of electrode channels formed within the inner member, each channel being spaced apart from one another and having an electrode disposed therein, the inner member having an unsplit compressible tip member that defines a distal end of the inner member, the electrodes extending from the distal end of the inner member, wherein the inner member defines an aspiration delivery channel having an opening at the distal end of the inner member, the electrodes not being exposed within the aspiration delivery channel due to the electrode channels; and

a selectively actuatable handle assembly connected to the outer cannula, the handle assembly configured to move the outer cannula distally over the inner member to selectively move the electrodes toward one another.

2. The surgical device of claim 1 , wherein the surgical device is selectively configurable between an open position and a closed position, wherein, the compressible tip member has an outer diameter greater than a diameter of the outer cannula when in the open position, such that the tip member extends radially outwardly from a distal end of the outer cannula, and wherein in the closed position, the tip member is at least partially compressed within the outer cannula.

3. The surgical device of claim 1 , wherein the tip member further includes a pair of land members.

4. The surgical device of claim 3 , wherein the pair of electrodes is positioned in a wall thickness that defines the tip member, adjacent the land members.

5. The surgical device of claim 3 , wherein the land members are separated by the opening to the aspiration delivery channel.

6. The surgical device of claim 1 , wherein a proximal end of the inner member is configured to be operatively attached to a vacuum supply source.

7. The surgical device of claim 1 , further comprising a vent tube in communication with the aspiration delivery channel, wherein the vent tube is configured to selectively relieve vacuum pressure from the aspiration delivery channel.

8. The surgical device of claim 1 , wherein the inner member is defined by a wall thickness, and wherein the pair of electrode channels are disposed within the wall thickness.

9. A surgical device comprising:

an outer cannula;

an inner member disposed within the outer cannula and having a pair of electrodes embedded within a wall of the inner member such that the electrodes are axially fixed with respect to the inner member, the electrodes extending from a distal end of the inner member, wherein the inner member defines an aspiration delivery channel having an opening at the distal end of the inner member;

a selectively actuatable handle assembly connected to the outer cannula, the handle assembly moving the outer cannula over the inner member to selectively move the electrodes toward one another; and

a wheel hub, wherein the wheel hub is mounted for fixed rotational movement with the inner member, such that rotation of the wheel hub rotates the inner member with respect to the outer cannula.

10. The surgical device of claim 9 , further comprising an aspiration supply connector operatively connected to a proximal end of the inner member.

11. The surgical device of claim 9 , further comprising

a support member, and wherein the outer cannula is fixedly mounted to a rail member, wherein the

handle assembly is configured to move the rail member with respect to the support member to move the outer cannula over the inner member.

12. The surgical device of claim 11 , further comprising

a tip member constructed of a flexible material, the tip member defining the distal end of the inner member, wherein the tip member is defined by a wall thickness, and wherein the tip member further includes a pair of land members having an increased wall thickness as compared to a remainder of the tip member, wherein the land members are arranged in an opposing manner.

13. The surgical device of claim 9 , wherein the electrode channels are sized to be larger than the electrodes to create an annular gap between the electrodes and inner surface of the electrode channels.

14. The surgical device of claim 13 , further comprising an irrigation hub that is in communication with the electrode channels, wherein the irrigation hub is configured to be operatively connected to an irrigation supply to deliver irrigation through the electrode channels.

15. The surgical device of claim 14 , wherein the irrigation hub further comprises a fitting member that is configured to connect to the irrigation supply, a passageway into which the inner member extends, and a channel that is in communication with the fitting member and with notches formed through the inner member that are in communication with the electrode channels.

16. The surgical device of claim 15 , further comprising sealing members disposed distally and proximally of the notches, wherein the sealing members cooperate with the inner member to define a sealed irrigation chamber within the irrigation hub.

17. A surgical device comprising:

an outer cannula;

an inner member disposed within the outer cannula and having a pair of electrode channels formed within the inner member, each channel being spaced apart from one another and having an electrode disposed therein, the electrode channels are sized to be larger than the electrodes to create an annular gap between the electrodes and an inner surface of the electrode channels, the inner member having an unsplit compressible tip member that defines a distal end of the inner member, the electrodes extending from the distal end of the inner member, wherein the inner member defines an aspiration delivery channel having an opening at the distal end of the inner member, the electrodes not being exposed within the aspiration delivery channel due to the electrode channels; and

a selectively actuatable handle assembly connected to the outer cannula, the handle assembly configured to move the outer cannula distally over the inner member to selectively move the electrodes toward one another.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2025
From: NICO CORPORATION
To: STRYKER CORPORATION
Reel/Frame 071475/0696 →
Continuity (4)
Continuation 14099564 · Dec 6, 2013
Continuation 14536724 · Nov 10, 2014
Provisional Application 61733999 · Dec 6, 2012
Related Publication 20170312404A1 · Nov 2, 2017