IP Library Granted Patent US 12,279,884
Granted Patent B2
US 12,279,884 · App. 16/950,271 · Granted Apr 22, 2025

Wireless pressure ulcer alert methods and systems therefor

Inventor: Denis Burke Drennan (Evanston, IL)
Assignee: Walgreens Health Solutions, LLC
A61B5/447A61B5/0004A61B5/7282A61B5/7405A61B5/742A61B5/746A61B2560/0475A61B2562/0247
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Quick Facts
Patent No.
US 12,279,884
App. No.
16/950,271
Granted
Apr 22, 2025
Kind
B2
Abstract

Pressure monitoring methods and systems for warning a patient or caregiver that soft tissue pressure has exceeded some predetermined level that over time would necessitate moving the patient to prevent or at least reduce a risk of soft tissue damage. The methods and systems entail the use of a pressure sensing unit adapted to be applied to or near a surface of the patient's body, and a sensor associated with the sensing unit to generate electrical outputs corresponding to soft tissue pressure sensed at the surface. The electrical outputs are wirelessly monitored over a preselected time period to generate a cumulative output signal based on the electrical outputs and corresponding to whether or not the soft tissue pressure has exceeded a predetermined pressure level during the preselected time period. An alarm is generated if the cumulative output signal exceeds a predetermined cumulative threshold until the soft tissue pressure drops below the predetermined pressure level.

Claims (31)

1. A carrier comprising:

a plurality of layers comprising at least a first inner layer, at least a first interior layer, at least a first foam layer embedded between the first inner layer and the first interior layer, a second foam layer on the first interior layer such that the first interior layer is between the first and second foam layers, and a second interior layer on the second foam layer such that the second foam layer is between the first and second interior layers and the second interior layer is between the second foam layer and an adhesive strip, the first inner layer and the first interior layer being formed of at least one dressing material;

an aperture within the carrier and defined by at least openings in the first foam layer, the first interior layer, and the second foam layer;

wherein the adhesive strip is configured to releasably overly the aperture, whereby the adhesive strip is configured and operable to peel back from over the aperture to expose the aperture and further allow for reapplication over the aperture; and

at least an additional layer overlying each of the first inner layer, the first interior layer, the first foam layer, the second foam layer, the second interior layer, and the adhesive strip.

2. The carrier of claim 1 , wherein the aperture is further defined by at least an a fourth opening formed within the second interior layer.

3. The carrier of claim 1 , further comprising a third interior layer between the first inner layer and the first foam layer.

4. The carrier of claim 3 , wherein the aperture is further defined by at least an opening formed within the third interior layer.

5. A pressure sensing unit comprising the carrier of claim 4 and a sensor within the aperture, the sensor comprising at least a first pressure transducer, the sensor wirelessly transmitting an electrical output signal generated by the transducer;

wherein the adhesive strip is configured to releasably overly the aperture to secure the sensor within the aperture;

wherein the adhesive strip is operable to peel back from over the aperture to expose the aperture and the sensor; and

wherein the adhesive strip is operable to allow for reapplication over the aperture to secure the sensor within the aperture.

6. The pressure sensing unit of claim 5 , wherein the sensor comprises a printed circuit board and the first transducer is located on the printed circuit board.

7. The pressure sensing unit of claim 6 , wherein the sensor comprises a vibration device located on the printed circuit board and adapted to generate a vibration alarm.

8. The carrier of claim 3 , wherein the first inner layer, the third interior layer, and the first foam layer are the same size.

9. The carrier of claim 8 , wherein the first interior layer, the second foam layer, and the second interior layer are the same size.

10. The carrier of claim 9 , wherein the first interior layer, the second foam layer, and the second interior layer are smaller than the first inner layer, the third interior layer, and the first foam layer.

11. The carrier of claim 1 , wherein the first inner layer is a lowermost layer of the carrier and comprises a first surface facing the first foam layer and a skin-facing surface opposite the first surface configured for directly facing a patient's skin;

wherein the first inner layer is a non-adhesive foam or absorbent material; and

wherein the first inner layer does not have an opening therein.

12. The carrier of claim 11 , wherein the skin-facing surface of the first inner layer has an adhesive covering along a border thereof adapted to adhere the carrier to skin.

13. The carrier of claim 1 , wherein the aperture is centrally located within the carrier.

14. The carrier of claim 1 , wherein the first inner layer and the first foam layer define a round periphery of the carrier.

15. The carrier of claim 1 , wherein the first inner layer and the first foam layer define an oval periphery of the carrier.

16. The carrier of claim 1 , wherein the dressing material is a foam, hydrocolloid, or alginate self-adherent dressing.

17. A pressure sensing unit comprising the carrier of claim 1 and a sensor within the aperture, the sensor comprising at least a first pressure transducer, the sensor wirelessly transmitting an electrical output signal generated by the transducer;

wherein the adhesive strip is configured to releasably overly the aperture to secure the sensor within the aperture;

wherein the adhesive strip is operable to peel back from over the aperture to expose the aperture and the sensor; and

wherein the adhesive strip is operable to allow for reapplication over the aperture to secure the sensor within the aperture.

18. The pressure sensing unit of claim 17 , wherein the sensor comprises a printed circuit board and the first transducer is located on the printed circuit board.

19. The pressure sensing unit of claim 18 , wherein the sensor comprises a vibration device located on the printed circuit board and adapted to generate a vibration alarm.

Assignments (1)
CHANGE OF NAME Recorded Jan 16, 2026
From: WALGREEN HEALTH SOLUTIONS, LLC
To: POSITION HEALTH, LLC
Reel/Frame 073491/0764 →
Continuity (4)
Division 16848323 · Apr 14, 2020
Division 14936596 · Nov 9, 2015
Provisional Application 62077393 · Nov 10, 2014
Related Publication 20210169401A1 · Jun 10, 2021
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