IP Library Granted Patent US 9,168,330
Granted Patent B2
US 9,168,330 · App. 13/912,716 · Granted Oct 27, 2015

Device and method for wound therapy

Inventors: Ashok V. Joshi (Salt Lake City, UT); John Howard Gordon (Salt Lake City, UT); Sai Bhavaraju (West Jordan, UT); Troy C. Dayton (Syracuse, UT); Jeremy Heiser (Salt Lake City, UT)
Assignee: Kalypto Medical, Inc.
A61M1/0088A61M1/009A61M1/0025A61M1/0049A61M1/0031A61M27/00A61M2205/15
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Quick Facts
Patent No.
US 9,168,330
App. No.
13/912,716
Granted
Oct 27, 2015
Kind
B2
Abstract

A wound therapy device is disclosed. The wound therapy device may include a housing for covering at least a portion of a wound and for sealing to a body surface of a patient. The housing may also include a liquid collector for retaining liquid therein and a vacuum connection for coupling to a vacuum source. The vacuum connection may be in gaseous communication with the liquid collector. The vacuum connection may be separated from the liquid collector by a liquid barrier.

Claims (44)

1. A wound therapy device, comprising:

a liquid-retaining structure adapted to be positioned at a tissue site and configured to absorb liquid from the tissue site;

a source of negative pressure configured to be in fluid communication with the liquid-retaining structure and configured to deliver a reduced pressure to the tissue site;

a vacuum disperser layer configured to be positioned between the liquid-retaining structure and the source of negative pressure, wherein the vacuum disperser layer is configured to distribute vacuum within the liquid-retaining structure; and

a liquid barrier configured to be positioned between the liquid-retaining structure and the source of negative pressure.

2. The wound therapy device of claim 1 , further comprising an interface layer adapted to be positioned at the tissue site.

3. The wound therapy device of claim 2 , wherein the interface layer further comprises a pouch comprising porous beads.

4. The wound therapy device of claim 1 , wherein the liquid-retaining structure comprises a superabsorber.

5. The wound therapy device of claim 1 , further comprising a wound cover configured to cover the liquid retaining structure.

6. The wound therapy device of claim 5 , wherein the wound cover is positioned over the source of negative pressure and the liquid-retaining structure.

7. A wound therapy device, comprising:

a flexible wound cover configured to cover at least a portion of a tissue site;

a liquid-retaining structure configured to absorb wound exudate positioned under the wound cover;

a disperser layer configured to be positioned over the tissue site;

a liquid barrier configured to retain liquid within the wound cover; and,

a wound interface positioned beneath the liquid retaining structure and the disperser layer.

8. The wound therapy device of claim 7 , further comprising a source of negative pressure.

9. The wound therapy device of claim 8 , wherein the source of negative pressure is mounted to the flexible wound cover.

10. The wound therapy device of claim 8 , wherein the flexible wound cover further comprises a fluidic connector configured to transmit negative pressure from the source of negative pressure to the tissue site.

11. The wound therapy device of claim 7 , wherein the liquid-retaining structure further comprises a cellulose material.

12. The wound therapy device of claim 7 , further comprising a seal configured to seal the wound therapy device to the body.

13. The wound therapy device of claim 7 , further comprising a saturation indicator for indicating absorption of liquid within the liquid-retaining structure.

14. The wound therapy device of claim 7 , wherein the disperser layer comprises a moisture disperser layer positioned below the liquid-retaining structure, the moisture disperser layer configured to distribute liquid within the liquid-retaining structure.

15. A method of treating a wound, comprising:

positioning a wound dressing over at least a portion of a wound, the wound dressing comprising a liquid-retaining structure and a disperser layer; and

applying negative pressure to the wound through the wound dressing, wherein negative pressure is applied to the wound dressing using a negative pressure source;

wherein when negative pressure is applied the liquid-retaining structure absorbs wound exudate and the disperser layer distributes fluid within the liquid-retaining structure, and the wound dressing comprises a liquid barrier positioned between the liquid-retaining structure and the negative pressure source that prevents liquid from traveling from the liquid-retaining structure to the negative pressure source, while the liquid-retaining structure simultaneously communicates negative pressure generated by the negative pressure source to the wound.

16. The method of treating a wound of claim 15 , wherein the wound dressing further comprises a flexible wound cover.

17. The method of treating a wound of claim 15 , wherein the disperser layer is located beneath the liquid-retaining structure.

18. The method of treating a wound of claim 15 , wherein the wound dressing further comprises a flexible wound cover and a wound contact layer, wherein the flexible wound cover and the wound contact layer are configured to enclose the liquid retaining structure and the disperser layer, such that the wound dressing is applied to the wound as a single unit.

19. The method of claim 15 , further comprising detecting a change in negative pressure at the wound using an indicator.

20. The method of claim 19 , wherein the indicator is configured to change color.

21. The method of claim 17 , wherein the wound dressing further comprises a vacuum disperser layer positioned above the liquid-retaining structure, wherein the vacuum disperser layer distributes vacuum within the liquid-retaining structure when negative pressure is applied.

22. The wound therapy device of claim 5 , wherein the liquid barrier is underneath the wound cover.

23. The wound therapy device of claim 1 , further comprising a moisture disperser layer positioned below the liquid-retaining structure, the moisture disperser layer configured to distribute liquid within the liquid-retaining structure.

24. The wound therapy device of claim 1 , further comprising an indicator configured to detect a change in negative pressure at the tissue site.

25. The wound therapy device of claim 24 , wherein the indicator is configured to change color.

26. The wound therapy device of claim 7 , wherein the disperser layer comprises a three dimensional knit.

27. The wound therapy device of claim 7 , wherein the disperser layer comprises a vacuum disperser layer positioned above the liquid-retaining structure, the vacuum disperser layer configured to distribute vacuum within the liquid-retaining structure.

28. The wound therapy device of claim 27 , further comprising a moisture disperser layer positioned below the liquid-retaining structure, the moisture disperser layer configured to distribute liquid within the liquid-retaining structure.

29. The wound therapy device of claim 7 , wherein the liquid-retaining structure comprises a super-absorbent polymer.

30. The wound therapy device of claim 7 , wherein the liquid barrier is located beneath the wound cover.

31. The wound therapy device of claim 7 , further comprising an indicator configured to detect a change in negative pressure at the tissue site.

32. The wound therapy device of claim 31 , wherein the indicator is configured to change color.

Assignments (1)
MERGER Recorded Dec 14, 2017
From: KALYPTO MEDICAL, INC.
To: SMITH &NEPHEW, INC.
Reel/Frame 044401/0127 →
Continuity (4)
Continuation 12592049 · Nov 18, 2009
Division 11610458 · Dec 13, 2006
Continuation In Part 11432855 · May 11, 2006
Related Publication 20140018753A1 · Jan 16, 2014