IP Library Granted Patent US 10,799,097
Granted Patent B2
US 10,799,097 · App. 16/002,498 · Granted Oct 13, 2020

Endoscope system including a resilient reservoir

Inventors: Ming J. Cheng (W. Warwick, RI); David C. Church (Millington, TN); Daniel R. Goldberg (Memphis, TN); Gregory S. Konstorum (Stamford, CT); J. Andrew Willhite (Memphis, TN)
Assignee: Gyrus Acmi, Inc.
A61B1/015A61B1/00068A61B1/00119A61B1/00135A61B1/00142A61B1/06A61B1/126A61B90/70A61B1/00128A61B2090/701
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Quick Facts
Patent No.
US 10,799,097
App. No.
16/002,498
Granted
Oct 13, 2020
Kind
B2
Abstract

A system comprising: (a) a sheath configured to receive all or a portion of an endoscope; (b) an irrigation line connecting the sheath to an irrigation source; (c) a suction line connecting the sheath to a suction source; and (d) a control module located between the sheath, and the irrigation source and the suction source and controls flow of irrigation fluid from the irrigation source to the sheath and movement of suction between the suction source and the sheath; wherein the irrigation source is connected to a resilient reservoir that is located within the control module and movement of the control module compresses the resilient reservoir moving irrigation fluid from the resilient reservoir to the sheath so that the irrigation fluid assists in cleaning the endoscope, and wherein the control module includes a valve and compression of the resilient reservoir initiates movement of the valve so that the valve opens and suction from the suction line is applied to the sheath.

Claims (38)

1. A control module comprising:

a) a base;

b) an actuation member;

c) a valve configured to be operably connected to an irrigation line, a suction line, and an endoscope sheath; and

d) a resilient reservoir;

wherein the actuation member is configured to be capable of controlling both the suction line and the irrigation line during an operation; and

wherein movement of the actuation member compresses the resilient reservoir to move irrigation fluid from the resilient reservoir to the endoscope sheath to assist in cleaning an endoscope.

2. The control module of claim 1 , wherein the resilient reservoir is configured to be connectable to an irrigation source.

3. The control module of claim 1 , wherein compression of the resilient reservoir initiates movement of the valve so that the valve opens the suction line that is connected to a suction source.

4. The control module of claim 1 , wherein the actuation member is configured to evenly apply compression to the resilient reservoir to create pressure to move irrigation fluid from the resilient reservoir.

5. The control module of claim 1 , wherein the resilient reservoir expands when compression of the resilient reservoir is complete so that irrigation fluid ceases to be applied and releases the valve so that suction is applied to the endoscope sheath.

6. The control module of claim 1 , wherein the actuation member is movable relative to the base.

7. The control module of claim 1 , wherein the actuation member is a foot pedal.

8. The control module of claim 1 , wherein the resilient reservoir is located between the actuation member and the base.

9. The control module of claim 1 , wherein movement of the actuation member triggers a response where after a predetermined amount of time, the valve is actuated so that suction is applied through the suction line.

10. The control module of claim 1 , wherein the suction line extends through the valve.

11. The control module of claim 1 , wherein the suction line is generally parallel to the irrigation line at the base.

12. The control module of claim 11 , wherein the resilient reservoir comprises an entrance port for supplying fluid to the resilient reservoir and an exit port for supplying the fluid to the endoscope sheath, and the entrance port and the export are aligned on opposite sides of the resilient reservoir.

13. The control module of claim 1 , wherein the resilient reservoir is located at one end of the base and the valve is located an opposite end of the base.

14. A control module comprising

a) a base;

b) an actuation member;

c) a valve configured to be operably connected to an irrigation line, a suction line, and an endoscope sheath,

d) a reservoir

wherein the actuation member is configured to be capable of controlling both the suction line and the irrigation line during an operation,

wherein movement of the actuation member compresses the reservoir to move irrigation fluid from the reservoir to the endoscope sheath, and

wherein the compression of the reservoir initiates movement of the valve so that the valve opens the suction line.

15. The control module of claim 14 , wherein the reservoir is configured to expand when compression of the reservoir is complete so that the irrigation fluid ceases to be applied to the endoscope and releases the valve so that suction is applied to the endoscope sheath.

16. The control module of claim 14 , wherein movement of the actuation member triggers a response where after a predetermined amount of time, the valve is actuated so that suction is applied through the suction line.

17. The control module of claim 15 , wherein movement of the actuation member triggers a response where after a predetermined amount of time, the valve is actuated so that suction is applied through the suction line.

18. The control module of claim 14 , wherein the actuation member is a foot pedal.

19. A control module comprising:

a) a base;

b) an actuation member;

c) a valve configured to be operably connected to an irrigation line, a suction line, and an endoscope sheath; and

d) a resilient reservoir;

wherein the actuation member is configured to be capable of controlling both the suction line and the irrigation line during an operation; and

wherein the resilient reservoir expands when compression of the resilient reservoir is complete so that irrigation fluid ceases to be applied and releases the valve so that suction is applied to the endoscope sheath.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2018
From: CHENG, MING J.; CHURCH, DAVID C.; GOLDBERG, DANIEL R.; KONSTORUM, GREGORY S.; WILLHITE, J. ANDREW
To: GYRUS ACMI, INC., D/B/A OLYMPUS SURGICAL TECHNOLOGIES AMERICA
Reel/Frame 046024/0238 →
Continuity (4)
Continuation 15095651 · Apr 11, 2016
Division 14497815 · Sep 26, 2014
Provisional Application 61882652 · Sep 26, 2013
Related Publication 20180279861A1 · Oct 4, 2018
Cited By (1)
US 12,262,870