IP Library Granted Patent US 9,669,138
Granted Patent B2
US 9,669,138 · App. 14/920,680 · Granted Jun 6, 2017

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.
A61M1/0031A61M1/009A61M1/0025A61M1/0049A61M1/0052A61M1/0088A61M1/0096A61M27/00A61M2205/15
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Quick Facts
Patent No.
US 9,669,138
App. No.
14/920,680
Granted
Jun 6, 2017
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 (46)

1. A wound therapy device, comprising:

a wound dressing comprising:

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

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

a wound interface layer positioned beneath the liquid retaining structure;

a moisture disperser layer positioned between the wound interface and the liquid-retaining structure; and

a vacuum disperser layer positioned between the liquid-retaining structure and the wound cover;

a source of negative pressure configured to apply negative pressure to the wound site through the wound dressing; and

a coupling attached to the wound cover configured to fluidically connect the wound dressing to the source of negative pressure, through a vacuum connection;

wherein when the wound dressing is applied to a wound site and negative pressure is applied by the source of negative pressure through the coupling to the wound cover, the liquid-retaining structure is configured to collect and retain liquid wound exudate and wherein a porous hydrophobic structure positioned between the liquid-retaining structure and the vacuum connection substantially blocks liquid from the liquid-retaining structure from flowing into the vacuum connection while the liquid-retaining structure simultaneously communicates negative pressure generated by the negative pressure source to the wound site.

2. The wound therapy device of claim 1 , wherein the liquid-retaining structure comprises a porous absorbent layer.

3. The wound therapy device of claim 2 , wherein the liquid-retaining structure comprises a super-absorbent polymer.

4. The wound therapy device of claim 1 , wherein the moisture disperser layer is configured to facilitate even absorption of wound fluids by the liquid-retaining structure.

5. The wound therapy device of claim 1 , wherein the vacuum disperser layer is configured to facilitate even distribution of vacuum within the liquid-retaining structure.

6. The wound therapy device of claim 1 , wherein the moisture disperser layer and the vacuum disperser layers are made of a three-dimensional knit spacer fabric material.

7. The wound therapy device of claim 1 , further comprising a color indicator configured to indicate a change in negative pressure at the wound site.

8. The wound therapy device of claim 1 , wherein the source of negative pressure is a vacuum source configured to be located remotely from the wound dressing.

9. The wound therapy device of claim 1 , wherein the vacuum disperser layer comprises a three-dimensional structure comprising two fiber layers.

10. The wound therapy device of claim 6 , wherein the three-dimensional knit spacer fabric material of each of the moisture disperser layer and the vacuum disperser layer comprises two faces separated by an inner spacer having a relative perpendicular orientation to the two faces.

11. The wound therapy device of claim 1 ,

wherein the flexible wound cover, the liquid-retaining structure, the wound interface layer, the moisture disperser layer and the vacuum disperser layer are configured to be applied to the wound site as a single unit.

12. The wound therapy device of claim 9 , wherein the first fiber layer is a first face and the second fiber layer is a second face, the first face being separate from the second face, and further comprising an inner spacer between the first face and the second face.

13. A wound therapy device, comprising:

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

a vacuum disperser layer positioned below the wound cover, the vacuum disperser layer configured to distribute vacuum;

a moisture disperser layer positioned below the vacuum disperser layer, the moisture disperser layer configured to distribute liquid;

an absorbent layer positioned between the vacuum disperser layer and the moisture disperser layer; and

a source of negative pressure positioned under the flexible wound cover and configured to deliver a reduced pressure to the tissue site.

14. The wound therapy device of claim 13 , wherein the source of negative pressure is a vacuum pump.

15. The wound therapy device of claim 13 , further comprising a power source positioned beneath the wound cover.

16. A wound therapy device, comprising:

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

a source of negative pressure positioned under the cover and configured to deliver a reduced pressure to the tissue site; and

a liquid barrier configured to retain liquid within the cover and prevent liquid from reaching the source of negative pressure.

17. The wound therapy device of claim 16 , further comprising an absorbent layer under the flexible wound cover.

18. The wound therapy device of claim 17 , further comprising a moisture disperser beneath the absorbent layer.

19. The wound therapy device of claim 17 , further comprising a three-dimension knit spacer fabric beneath the absorbent layer.

20. The wound therapy device of claim 17 , further comprising a vacuum disperser above the absorbent layer.

21. The wound therapy device of claim 17 , further comprising a three-dimension knit spacer fabric above the absorbent layer.

22. The wound therapy device of claim 17 , wherein the wound cover comprises a first portion over the absorbent layer, and a second portion offset from the first portion over the source of negative pressure.

23. The wound therapy device of claim 22 , wherein the vacuum pump comprises an inlet and an outlet, the outlet configured to vent gas outside the wound cover.

24. The wound therapy device of claim 16 , wherein the source of negative pressure is a vacuum pump.

25. The wound therapy device of claim 24 , wherein the vacuum pump comprises an inlet and an outlet, the outlet configured to vent gas outside the wound cover.

26. The wound therapy device of claim 25 , wherein the inlet comprises a hydrophobic filter.

27. The wound therapy device of claim 16 , further comprising a power source positioned beneath the wound cover.

28. The wound therapy device of claim 16 , wherein the wound cover comprises a first portion configured to cover at least a portion of the wound, and a second portion offset from the first portion, wherein the source of negative pressure is positioned under the second portion of the wound cover.

Assignments (1)
MERGER Recorded Dec 14, 2017
From: KALYPTO MEDICAL, INC.
To: SMITH &NEPHEW, INC.
Reel/Frame 044401/0127 →
Continuity (5)
Continuation 13912716 · Jun 7, 2013
Continuation 12592049 · Nov 18, 2009
Division 11610458 · Dec 13, 2006
Continuation In Part 11432855 · May 11, 2006
Related Publication 20160051737A1 · Feb 25, 2016