IP Library › Granted Patent US 12,575,975
Granted Patent B2
US 12,575,975 · App. 17/762,872 · Granted Mar 17, 2026

Systems and methods for sensing properties of fluids from a tissue site

Inventors: Christopher Brian Locke (Bournemouth, GB); Justin Alexander Long (Lago Vista, TX)
Assignee: Solventum Intellectual Properties Company
A61F13/05A61M1/73A61M1/90A61M1/915A61M1/92A61M2205/3324A61M2205/3368
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Quick Facts
Patent No.
US 12,575,975
App. No.
17/762,872
Granted
Mar 17, 2026
Kind
B2
Abstract

Systems, apparatuses, and methods for providing negative pressure to a tissue site are disclosed. Some embodiments are illustrative of an apparatus or system for delivering negative-pressure to a tissue site that can be used in conjunction with sensing properties of fluids extracted from a tissue site. For example, an apparatus may comprise a dressing interface or connector that includes a pH sensor, a humidity sensor, a temperature sensor and/or a pressure sensor embodied on a single pad within the connector and proximate the tissue site to provide data indicative of acidity, humidity, temperature and pressure. Such apparatus may further comprise an ambient port for providing the pressure sensor and the humidity sensor with access to the ambient environment providing readings relative to the atmospheric pressure and humidity.

Claims (44)

1 . A dressing for treating a tissue site, comprising:

a wound dressing including a foam layer having a tissue-facing surface and an opposing surface;

a dressing interface having a housing including a therapy cavity and a component cavity having an electrical component fluidly isolated from the therapy cavity and the wound dressing;

a sensor having a sensing portion positioned on the tissue-facing surface and adapted to contact the tissue site, a conductor portion coupled to the sensing portion and extending through a perforation in the wound dressing, and a terminal portion positioned on the opposing surface and coupled to the conductor portion, the terminal portion being configured to be electrically coupled to the electrical component;

an electrical connector adapted to electrically couple the terminal portion to the electrical component;

a mechanical coupler adapted to couple the dressing interface to the wound dressing and enhance the continuity of the electrical connector, the mechanical coupler comprising a magnetic attachment coupled to the terminal portion and a magnet disposed on the dressing interface within the therapy cavity and is releasably engageable to the magnetic attachment; and

a drape having an opening exposing the terminal portion and coupled to the opposing surface and covering the wound dressing and the tissue site to fluidly isolate the terminal portion from the wound dressing and the perforation.

2 . The dressing of claim 1 , the sensor is a pH sensor adapted to be electrically coupled to a microprocessor and further adapted to provide a pH output to the microprocessor based on the pH level detected.

3 . The dressing of claim 2 , wherein the pH sensor is electrically coupled to the microprocessor by a wireless communication device disposed in the dressing interface.

4 . The dressing of claim 1 , wherein the electrical connector comprises an electrical pad coupled to the terminal portion and an electrical contact disposed on the dressing interface, wherein the electrical contact is electrically coupled to the electrical component and releasably connectable to the electrical pad.

5 . The dressing of claim 1 , further comprising a port into the therapy cavity of the dressing interface and adapted to be fluidly coupled to a negative-pressure source and the therapy cavity in fluid communication with the wound dressing.

6 . A method of applying negative-pressure to a dressing for treating a tissue site, the method comprising:

positioning a tissue interface on the tissue site, the tissue interface having a first layer comprising a foam and a second layer comprising a plurality of apertures, the second layer adapted to be positioned between the first layer and the tissue site;

positioning a sensing portion of a pH sensor between the second layer and the tissue site and extending a conductor portion of the pH sensor through the tissue interface;

positioning a drape having an opening over the tissue interface to cover the tissue interface and the tissue site;

positioning a dressing interface adjacent the drape and the tissue interface wherein the dressing interface has a therapy cavity fluidly coupled to the first layer of the tissue interface and a component cavity fluidly isolated from the therapy cavity;

electrically coupling a terminal portion of the pH sensor to an electrical component disposed within the component cavity with an electrical connector, wherein the terminal portion is coupled to the conductor portion disposed on the first layer, the terminal portion being exposed through the opening in the drape, the drape further isolating the tissue interface from the terminal portion;

mechanically coupling the dressing interface to the tissue interface to enhance the continuity of the electrical connector by coupling a magnetic attachment on the terminal portion to a magnet disposed on the dressing interface within the therapy cavity, the magnet being releasably engageable to the magnetic attachment; and

applying negative pressure to the therapy cavity through a port to draw fluid from the tissue site, through the tissue interface, and into the therapy cavity.

7 . A dressing for treating a tissue site, comprising:

a tissue interface having a first layer comprising a foam and a second layer comprising a plurality of apertures, the second layer adapted to be positioned between the first layer and the tissue site;

a dressing interface having a housing including a therapy cavity and a component cavity fluidly isolated from the therapy cavity, the therapy cavity having an opening adapted to be in fluid communication with the first layer and a port adapted to be fluidly coupled to a negative-pressure source;

a control device disposed within the component cavity and including a microprocessor;

a first pH sensor having a sensing portion adapted to be positioned between the second layer and the tissue site and a terminal portion electrically coupled to the microprocessor, the first pH sensor configured to detect a pH level of fluid present at the tissue site and to provide a pH output to the microprocessor based on the pH level detected;

an electrical connector adapted to electrically couple the terminal portion to the microprocessor;

a mechanical coupler adapted to couple the dressing interface to the tissue interface and enhance the continuity of the electrical connector, the mechanical coupler comprising a magnetic attachment coupled to the terminal portion and a magnet disposed on the dressing interface within the therapy cavity and is releasably engageable to the magnetic attachment; and

a drape having an opening exposing the terminal portion and coupled to the first layer and covering the tissue interface and the tissue site to fluidly isolate the terminal portion from the tissue interface.

8 . The dressing of claim 7 , further comprising a second pH sensor having a sensing portion adapted to be positioned between the second layer and the tissue site and electrically coupled to the microprocessor, the second pH sensor configured to detect a pH level of fluid present at the tissue site and to provide a pH output to the microprocessor based on the pH level detected.

9 . The dressing of claim 8 , wherein the first layer comprises a central area and a peripheral area, and wherein the sensing portion of the first pH sensor is adapted to be positioned adjacent the central area and the sensing portion of the second pH sensor is adapted to be positioned adjacent the peripheral area.

10 . The dressing of claim 9 , wherein the sensing portion of the second pH sensor is adapted to be positioned adjacent periwound tissue of the tissue site.

11 . The dressing of claim 9 , wherein the control device further comprises a wireless transmitter coupled to the microprocessor for communicating information regarding the pH outputs provided by the first pH sensor and the second pH sensor.

12 . The dressing of claim 7 , wherein the foam is reticulated polymer foam.

13 . The dressing of claim 7 , wherein the foam is hydrophobic.

14 . The dressing of claim 7 , wherein:

the first layer comprises silicone; and

the second layer comprises a polyethylene film.

15 . The dressing of claim 7 , further comprising a cover adapted to be positioned between the dressing interface and the first layer of the tissue interface.

16 . The dressing of claim 7 , further comprising a vent port fluidly coupled to the therapy cavity and adapted to enable airflow into the therapy cavity.

17 . The dressing of claim 7 , further comprising a humidity sensor having a sensing portion adapted to be disposed within the therapy cavity and electrically coupled to the microprocessor, the humidity sensor configured to detect a humidity level of fluid present at the tissue site and to provide a humidity output to the microprocessor based on the humidity level detected.

18 . The dressing of claim 7 , further comprising a temperature sensor having a sensing portion adapted to be disposed within the therapy cavity and electrically coupled to the microprocessor, the temperature sensor configured to detect a temperature level of fluid present at the tissue site and to provide a temperature output to the microprocessor based on the temperature level detected.

19 . The dressing of claim 7 , further comprising a pressure sensor having a sensing portion adapted to be disposed within the therapy cavity and electrically coupled to the microprocessor, the pressure sensor configured to detect a pressure level of fluid present at the tissue site and to provide a pressure output to the microprocessor based on the pressure level detected.

20 . The dressing of claim 7 , further comprising a front-end amplifier disposed within the component cavity and electrically coupled between the first pH sensor and the microprocessor.

21 . The dressing of claim 7 , wherein the control device further comprises a wireless transmitter coupled to the microprocessor for communicating information regarding the pH output.

22 . The dressing of claim 7 , wherein the second layer comprises a central area and a peripheral area, and wherein the apertures in the peripheral area are larger than the apertures in the central area.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066431/0915 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION LISTED ON SCHEDULE OF IP RIGHTS ATTACHED TO ASSIGNMENT AT LINES 55: 71; 89; 116-129; AND 131 NEED TO BE DELETED PREVIOUSLY RECORDED AT REEL: 064788 FRAME: 0823. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 13, 2023
From: KCI LICENSING, INC.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 064886/0479 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2023
From: KCI LICENSING, INC.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 064788/0823 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2023
From: LOCKE, CHRISTOPHER BRIAN; LONG, JUSTIN ALEXANDER
To: KCI LICENSING, INC.
Reel/Frame 064747/0865 →
Continuity (2)
Provisional Application 62905859 · Sep 25, 2019
Related Publication 20220354702A1 · Nov 10, 2022
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