IP Library Granted Patent US 11,850,121
Granted Patent B2
US 11,850,121 · App. 17/165,992 · Granted Dec 26, 2023

Negative pressure therapy systems and sponges

Inventor: Scott Rapp (Cincinnati, OH)
A61F13/00008A61F13/00055A61F13/00068A61F13/00029A61F13/00034A61F13/022A61F13/0206A61F13/0216A61F2013/00174A61F2013/00536
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Quick Facts
Patent No.
US 11,850,121
App. No.
17/165,992
Granted
Dec 26, 2023
Kind
B2
Abstract

Negative pressure wound therapy sponges that are custom-fabricated to fit a given wound to be treated, corresponding methods of creating said sponges in situ or external to a wound, and related systems for performing negative pressure wound therapy using said sponges. Exemplary sponge embodiments may have pressure-sensing capabilities.

Claims (55)

1. A negative pressure therapy system for a wound environment comprising:

a) a pump adapted to generate a negative pressure for the wound environment;

b) a film connected to the pump and positioned outward from a negative pressure sponge; the negative pressure sponge conforming to contours of the wound environment and the film forming a seal creating the negative wound environment;

c) a pressure sensor coating attached to at least a portion of an outer surface of the negative pressure sponge; the pressure sensor coating bendable with the outer surface of the negative pressure sponge and adapted to sense positive, negative and zero pressures associated with the wound environment; and

d) a monitor/controller intercommunicating with the pressure sensor coating and the pump; the monitor/controller comprising software adapted to:

i) quantify the positive, negative and zero pressures sensed by the pressure sensor coating;

ii) cause the controller to automatically control the negative pressures supplied by the pump to the wound environment, wherein the controller's automatic control is dependent on the positive, negative and zero pressures sensed by the pressure sensor coating; and

iii) create a visual graphic depiction on the monitor of simultaneous negative, positive and zero pressures associated with the wound environment, wherein the visual graphic depiction assists a user in remotely and manually controlling the negative, positive and zero pressures of the wound environment and negative pressure supplied by the pump to the wound environment.

2. The negative pressure therapy system of claim 1 , wherein the monitor/controller intercommunicates with the pressure sensor coating via wireless radio frequency communications.

3. The negative pressure therapy system of claim 2 further comprising a second sensor adapted to sense one or more of the following:

a) temperature;

b) pH;

c) glucose; and/or

d) growth factor.

4. The negative pressure therapy system of claim 3 , wherein the negative pressure sponge includes one or more of the following:

a) antimicrobials;

b) rigidity agents;

c) stem cells;

d) growth factors;

e) wound healing enhancers;

f) debriding agents;

g) angiogenic agents;

h) fibroblastic agents;

i) tissue promoting agents; and/or

j) pharmaceutical agents.

5. The negative pressure therapy system of claim 2 , wherein a multi-component liquid is delivered to the wound environment to create the negative pressure sponge conforming to contours of the wound environment.

6. The negative pressure therapy systems of claim 2 , wherein the film comprises an injection port.

7. A negative pressure therapy system for a wound environment comprising:

a) a pump adapted to generate a negative pressure;

b) a film connected to the pump and positioned outward from a negative pressure sponge; the negative pressure sponge conforming to contours of the wound environment and the film forming a seal creating the negative wound environment;

c) a pressure sensor coating attached to at least a portion of an outer surface of the negative pressure sponge; the pressure sensor coating to sense positive, negative and zero pressures associated with the wound environment; and

d) a monitor/controller intercommunicating with the pressure sensor coating and the pump; the monitor/controller adapted to:

i) quantify the variable pressures sensed by the pressure sensor coating; and

ii) cause the controller to automatically control negative pressures supplied by the pump to the wound environment.

8. The negative pressure therapy system of claim 7 wherein the monitor/controller intercommunicates with the pressure sensor coating via wireless radio frequency communications.

9. The negative pressure therapy system of claim 8 , wherein pressure sensor coating is bendable with the outer surface of the negative pressure sponge.

10. The negative pressure therapy system of claim 9 further comprising a second sensor adapted to sense one or more of the following:

a) temperature;

b) pH;

c) glucose; and/or

d) growth factor.

11. The negative pressure therapy system of claim 10 , wherein the software creates a visual graphic depiction on the monitor of simultaneous negative, positive and zero pressures associated with the wound environment, wherein the visual graphic depiction assists a user in remotely and manually controlling the negative, positive and zero pressures of the wound environment and negative pressure supplied by the pump to the wound environment.

12. The negative pressure therapy system of claim 11 , wherein the negative pressure sponge includes one or more of the following:

a) antimicrobials;

b) rigidity agents;

c) stem cells;

d) growth factors;

e) wound healing enhancers;

f) debriding agents;

g) angiogenic agents;

h) fibroblastic agents;

i) tissue promoting agents; and/or

j) pharmaceutical agents.

13. The negative pressure therapy system of claim 7 , wherein a multi-component liquid is delivered to the wound environment to create the negative pressure sponge conforming to contours of the wound environment.

14. The negative pressure therapy systems of claim 7 , wherein the film comprises an injection port.

Continuity (3)
Continuation 15482877 · Apr 10, 2017
Provisional Application 62319852 · Apr 8, 2016
Related Publication 20210177660A1 · Jun 17, 2021
Cited By (20)
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