IP Library › Granted Patent US 10,709,314
Granted Patent B2
US 10,709,314 · App. 14/552,978 · Granted Jul 14, 2020

Endoscope tool position holder

Inventors: Nison Galperin (Fairfield, CT); Carlo A. DiRusso (Bronx, NY)
Assignee: Gyrus ACMI Inc.
A61B1/00128A61B1/00066A61B1/00133A61B1/00147A61B1/018A61B17/00234A61B90/50A61M25/02A61B2017/0034
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Quick Facts
Patent No.
US 10,709,314
App. No.
14/552,978
Granted
Jul 14, 2020
Kind
B2
Abstract

An apparatus including a first end configured to connect to a control of an endoscope object removal tool; a second end having a connector configured to removably connect to a handle of an endoscope; and a spine connecting the first end to the second end. The spine comprises a plurality of serially interconnected members which are rotatable relative to each other. Connections of the members to one another comprise friction locks. The friction locks are configured to be temporarily unlocked by overcoming friction forces at the friction locks such that the spine is semi-flexible.

Claims (29)

1. An apparatus comprising:

a first end configured to connect to a control of an endoscope object removal tool, where the first end comprises a pocket configured to receive a portion of the endoscope object removal tool, where the pocket comprises an entrance in a front end of the pocket, a rear end which is closed and deflectable sides to resiliently deflect to hold the endoscope object removal tool when the endoscope object removal tool is inserted into the entrance, wherein the first end comprises a one-piece member, wherein the resiliently deflectable sides are adapted to snap on to a proximal end of a handle of the endoscope object removal tool without another member therebetween, and wherein the pocket and the resiliently deflectable sides are adapted to snap on to the endoscope object removal tool such that a majority of the endoscope object removal tool extends distally beyond the entrance of the pocket;

a second end having a connector configured to be received into a slot on a handle of an endoscope and retained therein to removably connect the second end to the endoscope; and

a spine connecting the first end to the second end, where the spine is connected to the first end by a connection at a portion of the first end which forms the closed rear end of the pocket, where the spine comprises a plurality of serially interconnected members which are rotatable relative to each other using connections in which a flexing movement of the members is limited by an engagement of an outer surface of each of the members with an interior surface of a successive member, where connections of the members to one another comprise friction locks, where the friction locks are configured to be temporarily unlocked by overcoming friction forces at the friction locks such that the spine is semi-flexible.

2. An apparatus as in claim 1 where the first end is configured to removably connect to the control of the endoscope object removal tool.

3. An apparatus as in claim 1 where the first end is configured to removably snap onto the proximal end of the endoscope object removal tool.

4. An apparatus as in claim 1 where the pocket is configured for snap-on attachment and detachment.

5. An apparatus as in claim 1 where the pocket is configured to be ergonomically formed for grasping by a hand of a user.

6. An apparatus as in claim 1 where the second end is configured to removably snap onto the handle of the endoscope.

7. An apparatus as in claim 1 where the connections of the members to one another comprise universally rotatable connections.

8. An apparatus as in claim 7 where the universally rotatable connections comprise ball and socket connections.

9. An apparatus as in claim 1 further comprising an endoscope object removal tool connected to the first end.

10. A method comprising:

providing a spine comprising a plurality of serially interconnected members which are rotatable relative to each other using connections in which a flexing movement of the interconnected members is limited by an engagement of an outer surface of each of the members with an interior surface of a successive member, where connections of the interconnected members to one another comprise friction locks, where the spine is semi-rigid and is reconfigurable to different semi-rigid shapes;

connecting a first connector to a first end of the spine, where the first connector is sized and shaped to removably connect to a control of an endoscope object removal tool, where the first connector comprises a pocket configured to receive a portion of the endoscope object removal tool, where the pocket comprises an entrance in a front end of the pocket, a rear end which is closed and deflectable sides to resiliently deflect to hold the endoscope object removal tool when the endoscope object removal tool is inserted into the entrance, wherein the first connector comprises a one-piece member, wherein the resiliently deflectable sides are adapted to snap on to a proximal end of a handle of the endoscope object removal tool without another member therebetween, where the spine is connected to the first connector by a connection at a portion of the first connector which forms the closed rear end of the pocket, and wherein the pocket and the resiliently deflectable sides are adapted to snap on to the endoscope object removal tool such that a majority of the endoscope object removal tool extends distally beyond the entrance of the pocket; and

connecting a second connector to an opposite second end of the spine, where the second connector is sized and shaped to be received into a slot on a handle of an endoscope and retained therein to removably connect the second end to the endoscope.

11. A method as in claim 10 where the spine is provided such that the friction locks are configured to be temporarily unlocked by overcoming friction forces at the friction locks.

12. A method as in claim 10 where the first connector is configured to removably snap onto a proximal end of the endoscope object removal tool.

13. A method as in claim 10 where the second connector is configured to removably snap onto the handle of the endoscope.

14. A method as in claim 10 where the connections of the interconnected members to one another are provided as universally rotatable connections.

15. A method as in claim 14 where the universally rotatable connections are provided as ball and socket connections.

16. An apparatus as in claim 1 where the connection of the spine to the first end is in-line with the pocket.

17. An apparatus comprising:

a first end configured to connect to a control of an endoscope object removal tool, wherein the first end comprises a one-piece member having resiliently deflectable sides adapted to snap on to a proximal end of a handle of the endoscope object removal tool without another member therebetween, and wherein a pocket and the resiliently deflectable sides are adapted to snap on to the endoscope object removal tool such that a majority of the endoscope object removal tool extends distally beyond the entrance of the pocket;

a second end having a connector configured to be received into a slot on a a handle of an endoscope and retained therein to connect the second end to the endoscope, where the second end is configured to be connected to a rear end of the handle of the endoscope such that the second end extends away from the rear end of the handle substantially in-line with the rear end of the handle; and

a spine connecting the first end to the second end, where the spine comprises a plurality of serially interconnected members which are rotatable relative to each other using connections in which a flexing movement of the members is limited by an engagement of an outer surface of each of the members with an interior surface of a successive member, where connections of the members to one another comprise friction locks, where the friction locks are configured to be temporarily unlocked by overcoming friction forces at the friction locks such that the spine is semi-flexible.

18. An apparatus as in claim 17 where the second end comprises a projection configured to be inserted into the slot at the rear end of the handle of the endoscope.

19. A method as in claim 10 where the connection of the spine to the first connector is in-line with the pocket.

20. A method as in claim 10 where the second connector is configured to be connected to a rear end of the handle of the endoscope such that the second end extends away from the rear end of the handle substantially in-line with the rear end of the handle.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 034529 FRAME: 0131. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 22, 2015
From: GALPERIN, NISON
To: GYRUS ACMI, INC., D.B.A. OLYMPUS SURGICAL TECHNOLOGIES AMERICA
Reel/Frame 034793/0628 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 034529 FRAME: 0325. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 22, 2015
From: DIRUSSO, CARLO A.
To: GYRUS ACMI, INC., D.B.A. OLYMPUS SURGICAL TECHNOLOGIES AMERICA
Reel/Frame 034793/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2014
From: GALPERIN, NISON
To: GYRUS ACMI, INC.
Reel/Frame 034529/0131 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2014
From: DIRUSSO, CARLO A.
To: GYRUS ACMI, INC.
Reel/Frame 034529/0325 →
Continuity (2)
Provisional Application 61915007 · Dec 12, 2013
Related Publication 20150164307A1 · Jun 18, 2015