IP Library Granted Patent US 11,730,345
Granted Patent B2
US 11,730,345 · App. 15/738,351 · Granted Aug 22, 2023

Sheath for an endoscope

Inventor: Lawrence J. St. George (Sudbury, MA)
Assignee: Gyrus ACMI, Inc.
A61B1/00135A61B1/0014A61B1/00073A61B1/00082A61B1/00094A61B1/015A61B1/307A61B17/22A61M1/77A61M3/0283A61M25/0662A61B2017/00022A61B2017/00084A61B2017/22051A61B2017/22069A61B2217/007A61M1/772A61M3/0279A61M2025/004A61M2025/0024A61M2025/0681A61M2205/3334A61M2205/3368
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Quick Facts
Patent No.
US 11,730,345
App. No.
15/738,351
Granted
Aug 22, 2023
Kind
B2
Abstract

A sheath includes a sheath body, an inflow port at a proximal end of the sheath body, an outflow port at the proximal end of the sheath body, and a plurality of radially expandable flexible members which extend along a length of the sheath body. The plurality of radially expandable flexible members are attached to the sheath body at a plurality of anchor points along the length of the sheath body. The plurality of radially expandable flexible members expand during active fluid inflow. The radially expandable flexible members are spaced apart along the sheath body to define one or more isolated spaces that extend between adjacent radially expandable flexible members when the radially expandable flexible members are inflated within a body passage.

Claims (26)

1. A sheath capable of receiving an insertion tube of an endoscope, the sheath comprising:

a sheath body;

an inflow port at a proximal end of the sheath body;

an outflow port at the proximal end of the sheath body;

a region including a plurality of outflow channels which extend along a length of the sheath body to remove debris from an anatomical region of interest; and

a plurality of radially expandable flexible members which extend along the length of the sheath body, the plurality of radially expandable flexible members being attached to an outer surface of the sheath body at a plurality of anchor points along the length of the sheath body, the plurality of radially expandable flexible members being configured to expand outwardly from the outer surface of the sheath during active fluid inflow from the inflow port to a distal end of the sheath, where fluid flows out of the distal end and into the anatomical region of interest, wherein an outflow channel of the plurality of outflow channels is on a radially expandable flexible member of the plurality of radially expandable flexible members,

wherein the plurality of radially expandable flexible members are spaced apart along the sheath body to define (i) at least a portion of the outflow channels and (ii) one or more isolated spaces that extend between adjacent radially expandable flexible members when the plurality of radially expandable flexible members are inflated within a body passage and through which the fluid flows when it is supplied to the inflow port, wherein the one or more isolated spaces are separate from and at least partially surrounded by at least one of the plurality of outflow channels, wherein the plurality of outflow channels includes rigid channels that are attached to the plurality of radially expandable flexible members at a plurality of anchor points.

2. The sheath of claim 1 , wherein the plurality of outflow channels includes rigid channels that are spaced apart to define additional isolated spaces that extend along the length of the sheath body.

3. The sheath of claim 1 , wherein the active fluid inflow provides irrigation fluid to a body region.

4. The sheath of claim 1 , further comprising one or more sensors located at the distal end of the sheath body.

5. The sheath of claim 4 , wherein the one or more sensors measures at least one of pressure, temperature, and fluid flow rate.

6. The sheath of claim 1 , wherein the plurality of outflow channels include a rigid rib disposed on one of the plurality of radially expandable flexible members.

7. A sheath capable of receiving an insertion tube of an endoscope, the sheath comprising:

a sheath body;

an inflow port at a proximal end of the sheath body;

an outflow port at the proximal end of the sheath body;

a region including a plurality of outflow channels which extend along a length of the sheath body to remove debris from an anatomical region of interest, wherein the plurality of outflow channels includes rigid channels that are attached to the sheath body at a plurality of anchor points; and

a plurality of radially expandable flexible members which extend along the length of the sheath body, the plurality of radially expandable flexible members being attached to an outer surface of the sheath body at a plurality of anchor points along the length of the sheath body, the plurality of radially expandable flexible members being configured to expand outwardly from the outer surface of the sheath during active fluid inflow from the inflow port to a distal end of the sheath, where fluid flows out of the distal end and into the anatomical region of interest, wherein an outflow channel of the plurality of outflow channels is on a radially expandable flexible member of the plurality of radially expandable flexible members,

wherein the plurality of radially expandable flexible members are spaced apart along the sheath body to define (i) at least a portion of the outflow channels and (ii) one or more isolated spaces that extend between adjacent radially expandable flexible members when the plurality of radially expandable flexible members are inflated within a body passage and through which the fluid flows when it is supplied to the inflow port, wherein the one or more isolated spaces are separate from and at least partially surrounded by at least one of the plurality of outflow channels.

8. A sheath capable of receiving an insertion tube of an endoscope, the sheath comprising:

a sheath body;

an inflow port at a proximal end of the sheath body;

an outflow port at the proximal end of the sheath body;

a region including a plurality of outflow channels which extend along a length of the sheath body to remove debris from an anatomical region of interest; and

a plurality of radially expandable flexible members which extend along the length of the sheath body, the plurality of radially expandable flexible members being attached to an outer surface of the sheath body at a plurality of anchor points along the length of the sheath body, the plurality of radially expandable flexible members being configured to expand outwardly from the outer surface of the sheath during active fluid inflow from the inflow port to a distal end of the sheath, where fluid flows out of the distal end and into the anatomical region of interest, wherein an outflow channel of the plurality of outflow channels is on a radially expandable flexible member of the plurality of radially expandable flexible members,

wherein the plurality of radially expandable flexible members are spaced apart along the sheath body to define (i) at least a portion of the outflow channels and (ii) one or more isolated spaces that extend between adjacent radially expandable flexible members when the plurality of radially expandable flexible members are inflated within a body passage and through which the fluid flows when it is supplied to the inflow port, wherein the one or more isolated spaces are separate from and at least partially surrounded by at least one of the plurality of outflow channels, wherein the plurality of outflow channels includes rigid channels having ribs that are spaced apart to define the one or more isolated spaces between adjacent ribs that extend along the length of the sheath body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2018
From: ST. GEORGE, LAWRENCE J.
To: GYRUS ACMI, INC. D/B/A OLYMPUS SURGICAL TECHNOLOGIES AMERICA
Reel/Frame 046855/0945 →
Continuity (2)
Provisional Application 62186090 · Jun 29, 2015
Related Publication 20180184885A1 · Jul 5, 2018