IP Library Granted Patent US 8,801,685
Granted Patent B2
US 8,801,685 · App. 13/381,885 · Granted Aug 12, 2014

Apparatuses and methods for negative pressure wound therapy

Inventors: Ed Armstrong (Palm Harbor, FL); Iain Michael Blackburn (Cottingham, GB); Robert Emmerson (Beverly, GB); Steven Gianelis (Abington, MA); Joseph Gordon (Mansfield, MA); Mark Guarraia (Providence, RI); Andrew Linton (Woodthorpe, GB); Dan Nelsen (Warwick, RI); Michael Salame (Norwich, CT); Tim Stern (Belper, GB); Mark White (Norton, GB)
Assignee: Smith & Nephew, Inc.
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Quick Facts
Patent No.
US 8,801,685
App. No.
13/381,885
Granted
Aug 12, 2014
Kind
B2
Abstract

Disclosed herein are several embodiments of a negative pressure appliance and methods of using the same in the treatment of wounds. Some embodiments are directed to improved fluidic connectors or suction adapters for connecting to a wound site, for example using softer, kink-free conformable suction adapters.

Claims (29)

1. A suction adapter suitable to treat a wound site with negative pressure, comprising:

an applicator having an upper surface and a lower surface; and

an elongate bridge having a proximal end and a distal end, the distal end of the bridge connected to the upper surface of the applicator, the bridge comprising:

upper, intermediate, and lower flexible film layers;

an upper fluid passage formed between the upper and intermediate film layers, the upper fluid passage connected to an air leak and comprising an elongate upper channel layer positioned between the upper and intermediate flexible film layers;

a lower fluid passage formed between the intermediate and lower film layers, the lower fluid passage configured to be in fluid communication with a source of negative pressure, the lower fluid passage comprising a 3D knitted or 3D fabric material positioned between the intermediate and lower film layers.

2. The suction adapter of claim 1 , wherein the upper channel layer comprises foam.

3. The suction adapter of claim 1 , further comprising an air leak disposed at a proximal end of the upper layer of the bridge.

4. The suction adapter of claim 1 , wherein the 3D fabric material comprises a fabric layer with a thickness between 1.5 mm and 6 mm.

5. The suction adapter of claim 1 , wherein the 3D fabric material comprises a top knitted layer, a bottom knitted layer and a middle area comprising vertically extending fibers.

6. The suction adapter of claim 1 , wherein the distal end of the bridge has an enlarged shape.

7. The suction adapter of claim 6 , wherein the 3D knitted or 3D fabric material at the enlarged distal end of the bridge has a generally circular shape.

8. The suction adapter of claim 1 , wherein the lower fluid passage comprising the 3D knitted or 3D fabric material is able to resist compression to less than half of its original thickness when subjected to a load of 15 psi.

9. A negative pressure wound treatment system, comprising:

a suction adapter adapted to treat a wound site with negative pressure, comprising:

an applicator having an upper surface and a lower surface, and

a bridge having a proximal end and a distal end, the distal end of the bridge connected to the upper surface of the applicator, the bridge comprising:

upper, intermediate, and lower flexible film layers;

an upper fluid passage formed between the upper and intermediate film layers, the upper fluid passage connected to an air leak and comprising an elongate upper channel layer positioned between the upper and intermediate flexible film layers; and

a lower fluid passage formed between the intermediate and lower film layers, the lower fluid passage configured to be in fluid communication with a source of negative pressure, the lower fluid passage comprising a 3D knitted or 3D fabric material positioned between the intermediate and lower film layers; and

a flexible drape configured to be positioned over a wound and sealed to skin surrounding the wound,

wherein the suction adapter is configured to attach to the drape and surround at least one aperture formed in the drape.

10. The system of claim 9 , further comprising a vacuum pump connected by at least one conduit to the suction adapter.

11. The negative pressure wound treatment system of claim 9 , wherein the upper channel layer comprises foam.

12. The negative pressure wound treatment system of claim 9 , further comprising an air leak disposed at a proximal end of the upper layer of the bridge.

13. The negative pressure wound treatment system of claim 9 , wherein the 3D knitted or 3D fabric material comprises a fabric layer with a thickness between 1.5 mm and 6 mm.

14. The negative pressure wound treatment system of claim 9 , wherein the 3D knitted or 3D fabric material comprises a top knitted layer, a bottom knitted layer and a middle area comprising vertically extending fibers.

15. The negative pressure wound treatment system of claim 9 , wherein the distal end of the bridge has an enlarged shape.

16. The negative pressure wound treatment system of claim 9 , wherein the lower fluid passage comprising the 3D knitted or 3D fabric material is able to resist compression to less than half of its original thickness when subjected to a load of 15 psi.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2012
From: ALBERT, SEAN J.; ARMSTRONG, ED; BEAUDOIN, KEN; BLACKBURN, IAIN MICHAEL; BUSSONE, PHIL; CRAWFORD, BRENDAN; EMMERSON, ROBERT; EWASCHUK, MIKE; GIANELIS, STEPHEN; GODDARD, ANDREW; GORDON, JOSEPH; GUARRAIA, MARK; JOHNSON, TIM; KEITH-LUCAS, DARWIN; LINTON, ANDREW; NELSEN, DAN; SALAME, MICHAEL; STERN, TIM; WHITE, MARK
To: SMITH & NEPHEW, INC.
Reel/Frame 027571/0847 →
Continuity (4)
Provisional Application 61289358 · Dec 22, 2009
Provisional Application 61332440 · May 7, 2010
Provisional Application 61369008 · Jul 29, 2010
Related Publication 20120116334A1 · May 10, 2012