IP Library Granted Patent US 10,646,627
Granted Patent B2
US 10,646,627 · App. 15/632,744 · Granted May 12, 2020

Anti-clog suction tip apparatus and method

Inventors: Robert Sean Hensler (Wilmington, NC); Thomas Eric Melin (Wilmington, NC)
A61M1/0078A61M1/008A61M1/0041A61M1/0074A61M1/0086A61M1/0047
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,646,627
App. No.
15/632,744
Granted
May 12, 2020
Kind
B2
Abstract

An anti-clog suction tip apparatus includes a suction tip having a suction opening and an interior defining a suction channel. An ejection wire channel extends to a wire exit opening into the suction channel that is located proximate the suction opening. An ejection wire including a ball tip at an end thereof occupies the ejection wire channel and is transitionable between a retracted configuration and an advanced configuration such that, in the retracted configuration, the ejection wire including the ball tip is retained within the ejection wire channel and does not obstruct suctioning of debris through the suction channel; and in the advanced configuration, the ball tip of the ejection wire does not extend more than three millimeters beyond the suction opening.

Claims (40)

1. A suction tip apparatus for suctioning debris from a surgical site, comprising:

(a) a suction opening at a distal end of a distal portion of the apparatus for the removal of debris through suction applied at the suction opening,

(b) a hose attachment portion for attachment to the suction source,

(c) a handle portion for handling of the apparatus,

(d) a suction channel extending from the hose attachment portion through the handle portion and the distal portion to the suction opening,

(e) an ejection wire channel extending from an opening of the handle portion to and opening into the suction channel whereby the ejection wire channel merges into the such channel,

(f) an ejection wire extending within the ejection wire channel, and

(g) a manually operated control located on the handle portion for manually moving the ejection wire out of the ejection wire channel into the suction channel in a direction toward the suction opening,

(h) wherein an integrally formed piece of the suction tip apparatus defines both

(1) a part of the ejection wire channel along an extent from the opening of the handle portion to the suction channel, and

(2) a part of the merging of the ejection wire channel and the suction channel, and

(i) wherein the ejection wire of the suction tip apparatus is configured to transition from a retracted position, in which retracted position a distal end of the ejection wire is retained within the ejection wire channel and does not obstruct suctioning of debris through the suction channel of the suction tip apparatus, toward an advanced position, in which advanced position the ejection wire extends from the ejection wire channel into and through the suction channel of the suction tip apparatus to the suction opening, whereby advancement of the ejection wire expels debris from the suction channel.

2. The suction tip apparatus of claim 1 , wherein the ejection wire channel extends from the handle portion to the distal end of the distal portion of the suction tip apparatus.

3. The suction tip apparatus of claim 1 , wherein the ejection wire is biased away from the suction opening into the ejection wire channel and out of the suction channel.

4. The suction tip apparatus of claim 1 , further comprising a manually operated control located on the handle portion for manually transitioning the ejection wire assembly from the retracted position to the advanced position.

5. The suction tip apparatus of claim 4 , wherein the handle portion comprises a vacuum tunnel opening, and wherein the manually operated control is located on the same side of the handle portion as the vacuum tunnel opening.

6. A suction tip apparatus, comprising:

(a) a suction opening at a distal end of a distal portion of the apparatus for the removal of debris through suction applied at the suction opening,

(b) a hose attachment portion for attachment to a suction source,

(c) a handle portion for handling of the apparatus,

(d) a suction channel extending from the hose attachment portion through the handle portion and the distal portion to the suction opening,

(e) an ejection wire channel opening into and merging with the suction channel,

(f) an ejection wire extending within the ejection wire channel, and

(g) a manually operated control located on the handle portion for manually moving the ejection wire out of the ejection wire channel into the suction channel in a direction toward the suction opening,

(h) wherein an integrally formed piece of the suction tip apparatus defines both

(1) a part of the handle portion, and

(2) a part of the ejection wire channel and the suction channel at the merger of the ejection wire channel and the suction channel, and

(i) wherein the ejection wire of the suction tip apparatus is configured to transition from a retracted position, in which retracted position a distal end of the ejection wire is retained within the ejection wire channel and does not obstruct suctioning of debris through the suction channel of the suction tip apparatus, toward an advanced position, in which advanced position the ejection wire extends from the ejection wire channel into and through the suction channel of the suction tip apparatus to the suction opening, whereby advancement of the ejection wire expels debris from the suction channel.

7. The suction tip apparatus of claim 6 , wherein the ejection wire channel extends from the handle portion to the distal end of the distal portion of the suction tip apparatus.

8. The suction tip apparatus of claim 6 , wherein the ejection wire is spring-biased away from the suction opening into the ejection wire channel and out of the suction channel.

9. The suction tip apparatus of claim 6 , further comprising a manually operated control on the handle portion for manually transitioning the ejection wire assembly from the retracted position to the advanced position.

10. A suction tip apparatus, comprising:

(a) a suction channel having a suction opening for the removal of debris through suction;

(b) an ejection wire channel opening into the suction channel such that the ejection wire channel merges with the suction channel; and

(c) an ejection wire assembly located in part within a handle portion of the suction tip apparatus and transitionable between a retracted position in which an ejection wire of the ejection wire assembly is not disposed within the suction channel, and an advanced position in which the ejection wire of the ejection wire assembly is partially disposed within the suction channel and extends to the suction opening;

(d) wherein an integrally formed piece of the suction tip apparatus defines both

(1) a part of the handle portion, and

(2) a part of the ejection wire channel and the suction channel where the ejection wire channel opens into the suction channel such that the ejection wire channel merges with the suction channel.

11. The suction tip apparatus of claim 10 , wherein the ejection wire is biased away from the suction opening into the ejection wire channel and out of the suction channel.

12. The suction tip apparatus of claim 10 , further comprising a control on the handle portion for manually transitioning the ejection wire assembly from the retracted position to the advanced position, wherein the control comprises a slider.

Continuity (10)
Continuation 14466700 · Aug 22, 2014
Continuation 14071602 · Nov 4, 2013
Continuation In Part 13680055 · Nov 17, 2012
Continuation In Part 13596036 · Aug 27, 2012
Continuation In Part PCTUS2012052413 · Aug 25, 2012
Continuation 13596036 · Aug 27, 2012
Continuation PCTUS2012052413 · Aug 25, 2012
Provisional Application 61527123 · Aug 25, 2011
Provisional Application 61614915 · Mar 23, 2012
Related Publication 20170290962A1 · Oct 12, 2017