IP Library › Granted Patent US 12,128,169
Granted Patent B2
US 12,128,169 · App. 17/036,351 · Granted Oct 29, 2024

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: Smith & Nephew, Inc.
A61M1/73A61F13/0206A61F13/0213A61F13/0243A61F13/05A61L15/28A61L15/425A61L15/58A61L15/60A61M1/74A61M1/743A61M1/78A61M1/784A61M1/90A61M1/915A61M1/962A61M1/882A61M1/964A61M1/982A61M27/00A61M2205/13A61M2205/15A61M2205/7509A61M2205/7518
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Quick Facts
Patent No.
US 12,128,169
App. No.
17/036,351
Granted
Oct 29, 2024
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 (21)

1. A method of treating a wound, comprising:

positioning a wound therapy device over a wound area and an area of intact skin adjacent to the wound area at least partially enclosing the wound area, the wound therapy device comprising:

a moisture vapor permeable cover layer,

an absorbent layer positioned beneath the cover layer,

a disperser layer positioned beneath or above the absorbent layer,

a silicone wound contact layer beneath the absorbent layer, the wound contact layer adhered to the moisture vapor permeable cover layer, and

a filter positioned beneath an opening in the cover layer and configured to prevent liquid from reaching a source of negative pressure; and

applying negative pressure to the wound therapy device such that negative pressure is transmitted through the absorbent layer, the disperser layer, and the wound contact layer to the wound area and to the intact skin adjacent to the wound area at least partially enclosing the wound area.

2. The method of treating a wound of claim 1 , wherein the moisture vapor permeable cover layer is adhered to the wound contact layer.

3. The method of treating a wound of claim 1 , wherein the absorbent layer comprises a superabsorbent.

4. The method of treating a wound of claim 1 , wherein negative pressure is provided by a negative pressure source.

5. The method of treating a wound of claim 4 , wherein the negative pressure source is external to the moisture vapor permeable cover layer.

6. The method of treating a wound of claim 4 , wherein the negative pressure source is within the moisture vapor permeable cover layer.

7. The method of treating a wound of claim 4 , wherein negative pressure is supplied by a vacuum pump.

8. The method of treating a wound of claim 1 , wherein the wound contact layer comprises a gel.

9. The method of treating a wound of claim 1 , wherein the absorbent layer comprises an antimicrobial agent.

10. The method of treating a wound of claim 1 , wherein the wound contact layer is porous.

11. The method of treating a wound of claim 1 , wherein the wound therapy device further comprises a sensor.

12. The method of treating a wound of claim 11 , wherein the sensor comprises a moisture sensor.

13. The method of treating a wound of claim 11 , wherein the sensor comprises an electrical conductivity sensor.

14. The method of treating a wound of claim 11 , wherein the sensor comprises a blood sensor.

Continuity (9)
Continuation 16542190 · Aug 15, 2019
Continuation 15713479 · Sep 22, 2017
Continuation 15280778 · Sep 29, 2016
Continuation 14920680 · Oct 22, 2015
Continuation 13912716 · Jun 7, 2013
Continuation 12592049 · Nov 18, 2009
Division 11610458 · Dec 13, 2006
Continuation In Part 11432855 · May 11, 2006
Related Publication 20210008255A1 · Jan 14, 2021