IP Library Granted Patent US 11,376,356
Granted Patent B2
US 11,376,356 · App. 16/372,280 · Granted Jul 5, 2022

Reduced pressure treatment system

Inventor: Richard Scott Weston (Encinitas, CA)
Assignee: Smith & Nephew, Inc.
A61M1/90A61F13/00059A61F13/00068A61F13/0216A61F15/008A61M1/732A61F2013/0028A61F2013/00153A61M2205/3344
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Quick Facts
Patent No.
US 11,376,356
App. No.
16/372,280
Granted
Jul 5, 2022
Kind
B2
Abstract

A wound treatment apparatus is provided for treating tissue damage, which comprises a fluid impermeable wound cover sealed over a site for purposes of applying a reduced pressure to the site. The apparatus also can include a cover with protrusions on its surface for purposes of monitoring pressure at the site. One or more sensors can be positioned under the cover to provide feedback to a suction pump controller. The apparatus can have a miniature and portable vacuum source connected to the wound cover.

Claims (20)

1. A system for administering a reduced pressure treatment to a wound site, comprising:

a wound dressing comprising a wound cover for covering and enclosing the wound site and surrounding normal skin at the wound site;

at least one pressure measurement device to measure pressure beneath the wound cover; and

a vacuum system comprising:

a reduced pressure source; and

a control device configured to transmit electrical signals to control the reduced pressure source, the control device comprising a feedback system to control the reduced pressure source based on one or more pressure differentials measured using the at least one pressure measurement device, wherein the at least one pressure measurement device comprises at least one pressure sensor configured to detect a pressure differential between pressure at the wound site and pressure outside the wound site;

wherein the reduced pressure source and the at least one pressure measurement device are part of the wound dressing.

2. The system of claim 1 , wherein the wound dressing further comprises a matrix material beneath the wound cover to distribute suction across the wound site.

3. The system of claim 1 , further comprising a suction port coupled to the wound cover for providing reduced pressure below the wound cover.

4. The system of claim 1 , further comprising a tube connecting the wound dressing to the vacuum system.

5. A system for administering a reduced pressure treatment to a wound site, comprising:

a wound dressing comprising a wound cover for covering and enclosing the wound site and surrounding normal skin at the wound site;

at least one pressure measurement device to measure pressure beneath the wound cover; and

a vacuum system comprising:

a reduced pressure source; and

a control device configured to transmit electrical signals to control the reduced pressure source, the control device comprising a feedback system to control the reduced pressure source based on one or more pressure differentials measured using the at least one pressure measurement device, wherein the at least one pressure measurement device comprises at least one pressure sensor configured to detect a pressure differential between pressure provided by the reduced pressure source and pressure at the wound site;

wherein the reduced pressure source and the at least one pressure measurement device are part of the wound dressing.

6. The system of claim 5 , wherein the wound dressing further comprises a matrix material beneath the wound cover to distribute suction across the wound site.

7. The system of claim 5 , further comprising a suction port coupled to the wound cover for providing reduced pressure below the wound cover.

8. The system of claim 5 , further comprising a tube connecting the wound dressing to the vacuum system.

Continuity (8)
Division 14854717 · Sep 15, 2015
Continuation 14142635 · Dec 27, 2013
Continuation 13302175 · Nov 22, 2011
Continuation 12938291 · Nov 2, 2010
Continuation 10652100 · Aug 28, 2003
Provisional Application 60430827 · Dec 4, 2002
Provisional Application 60407783 · Sep 3, 2002
Related Publication 20190224387A1 · Jul 25, 2019