IP Library Granted Patent US 10,098,693
Granted Patent B2
US 10,098,693 · App. 14/520,024 · Granted Oct 16, 2018

Balloon catheter mesh

Inventors: Erhan H. Gunday (Great Neck, NY); Lawrence J. Gerrans (San Anselmo, CA)
Assignee: Sanovas Intellectual Property, LLC
A61B18/1492A61B17/320725A61B90/39A61B90/98A61M25/10A61B18/02A61B2017/00026A61B2017/22051A61B2018/0022A61B2018/00875A61B2090/3966A61B2218/002A61M2025/105A61M2025/109A61M2025/1079A61M2025/1081A61M2025/1086
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Quick Facts
Patent No.
US 10,098,693
App. No.
14/520,024
Granted
Oct 16, 2018
Kind
B2
Abstract

A resector balloon includes an outer wall having a resecting surface that resects biological material. The balloon also includes a woven sleeve including at least one woven thread disposed on at least a portion of the outer wall. The woven sleeve forms at least a portion of the resecting surface. In certain embodiments, the woven sleeve includes weft knit threads including crossover points where the threads overlap. In some embodiments, the woven sleeve includes electrically conductive threads.

Claims (58)

1. A resector balloon, comprising:

a resector balloon having an outer wall, wherein the outer wall comprises a resecting surface that resects biological material; and

a woven sleeve comprising at least one woven thread disposed on at least a portion of the outer wall, wherein the woven sleeve forms at least a portion of the resecting surface;

wherein the woven sleeve comprises a tubular sleeve within which the balloon is disposed such that the sleeve is disposed around the outer circumference of the balloon; and

wherein the woven sleeve comprises a plurality of electrically conductive portions extending longitudinally along the outer wall and a plurality of electrically conductive portions extending laterally along the outer wall, the longitudinally and laterally extending portions forming an electrically conductive mesh;

a data collection system electrically connected to the woven sleeve, wherein the data collection system obtains the electrical impedance of the woven sleeve; and

a central control system;

wherein the data collection system sends electrical impedance data to the central control system; and

wherein the central control system determines the distension of the woven sleeve based at least in part on the impedance data, and determines the diameter and dimensional characteristics of the balloon based at least in part on the determined distension.

2. The resector balloon of claim 1 , wherein the woven sleeve is weft knit.

3. The resector balloon of claim 1 , wherein the at least one woven thread is elastic string.

4. The resector balloon of claim 1 , wherein the at least one woven thread is polyurethane string.

5. The resector balloon of claim 1 , wherein the at least one woven thread comprises metallic fibers.

6. The resector balloon of claim 5 , wherein the at least one woven thread comprises steel fibers.

7. The resector balloon of claim 1 , wherein the electrically conductive portions comprise an electrically conductive core and an electrically insulative sheath.

8. The resector balloon of claim 1 , wherein the electrically conductive portions comprise an electrically insulative core and an electrically conductive sheath.

9. The resector balloon of claim 1 , wherein a proximal portion and a distal portion of the woven sleeve comprise electrically conductive portions and a middle portion of the woven sleeve comprises electrically insulative portions.

10. The resector balloon of claim 1 , wherein the woven sleeve comprises yarn coated with electrically conductive material.

11. The resector balloon of claim 1 , wherein the woven sleeve comprises yarn coated with electrically insulative material.

12. The resector balloon of claim 1 , wherein the woven sleeve comprises yarn that is alternately electrically insulative and conductive along its length.

13. The resector balloon of claim 1 , wherein at least part of the woven sleeve is radio opaque.

14. The resector balloon of claim 1 , further comprising:

a catheter coupled to the resector balloon;

wherein a proximal end and a distal end of the woven sleeve are coupled to the catheter.

15. The resector balloon of claim 1 , further comprising:

a catheter coupled to the resector balloon; and

a fluid source that inflates the resector balloon by supplying fluid thereto through the catheter.

16. The resector balloon system of claim 1 , wherein the woven sleeve is electrically connected to an energy source that transmits electrical energy to a target tissue via the woven sleeve.

17. The resector balloon of claim 16 , further comprising at least one wire molded into the catheter for conducting energy from the energy source to the woven sleeve.

18. The resector balloon system of claim 1 , further comprising:

a user interface in communication with the central control system;

wherein the central control system sends a signal reflecting the determined diameter to the user interface.

19. The resector balloon of claim 1 , further comprising:

a catheter coupled to the resector balloon;

a fluid source that inflates the resector balloon by supplying fluid thereto through the catheter; and

a fluid control system that controls the fluid source;

wherein:

the central control system sends a signal reflecting the determined diameter to the fluid control system; and

the fluid control system controls the fluid source based at least in part on the signal.

20. The resector balloon system of claim 1 , wherein the data collection system obtains the electrical impedance of material in contact with the woven sleeve.

21. The resector balloon system of claim 20 :

wherein the data collection system sends impedance data to the central control system; and

the central control system determines a tissue type corresponding to the material in contact with the woven sleeve.

22. The resector balloon system of claim 21 , wherein the central control system determines the tissue type by comparing the impedance data to a lookup table.

23. The resector balloon system of claim 21 , further comprising:

a user interface in communication with the central control system;

wherein the central control system sends a signal reflecting the tissue type to the user interface.

24. The resector balloon of claim 21 , further comprising:

a catheter coupled to the resector balloon;

a fluid source that inflates the resector balloon by supplying fluid thereto through the catheter; and

a fluid control system that controls the fluid source;

wherein:

the central control system sends a signal reflecting the determined tissue type to the fluid control system; and

the fluid control system controls the fluid source based at least in part on the signal.

25. The resector balloon of claim 1 , wherein the balloon has an inner chamber, further comprising:

a catheter passing from the proximal end of the balloon to the distal end of the balloon through the inner chamber of the balloon;

wherein the catheter has a lumen therein, and an outer wall having a hole located within the inner chamber of the balloon through which fluid is communicated from the lumen of the catheter to the inner chamber of the balloon.

26. The resector balloon of claim 1 , wherein the data control system and central control system are contained within a single unit.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2017
From: SANOVAS, INC.
To: SANOVAS INTELLECTUAL PROPERTY, LLC
Reel/Frame 043090/0504 →
MERGER Recorded Oct 31, 2014
From: SANOVAS, INC.
To: SANOVAS, INC.
Reel/Frame 034083/0248 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2014
From: GUNDAY, ERHAN H.
To: SANOVAS, INC.
Reel/Frame 034115/0580 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2014
From: GERRANS, LAWRENCE J.
To: SANOVAS, INC.
Reel/Frame 034115/0590 →
Continuity (2)
Continuation 13107426 · May 13, 2011
Related Publication 20150038960A1 · Feb 5, 2015