IP Library Granted Patent US 11,857,329
Granted Patent B2
US 11,857,329 · App. 17/809,135 · Granted Jan 2, 2024

Modular garment for a wearable medical device

Inventors: Michael J Gabrin (Pittsburgh, PA); Christopher L Swenglish (Connellsville, PA); Gary A Freeman (Waltham, MA)
Assignee: ZOLL Medical Corporation
A61B5/361A61B5/346A61B5/6805A61B5/6831A61N1/0484A61N1/3904A61B5/282A61B5/363A61B5/6823A61N1/046
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Quick Facts
Patent No.
US 11,857,329
App. No.
17/809,135
Granted
Jan 2, 2024
Kind
B2
Abstract

A cardiac monitoring and treatment system includes a controller, a first wearable portion, and a second wearable portion separate from the first wearable portion. The first wearable portion includes an elongated strap configured to encircle a thoracic region of a patient, a plurality of ECG sensing electrodes disposed about the elongated strap, one or more receiving ports configured to receive one or more additional components including a treatment electrode and/or an additional sensor, and a plurality of conductive wires configured to couple the plurality of ECG sensing electrodes and the one or more receiving ports with the controller. The second wearable portion is configured to be worn over at least one shoulder of the patient and includes a wearable substrate, one or more treatment electrodes disposed on the wearable substrate, and at least one conductive wire configured to releasably connect the one or more treatment electrodes to the controller.

Claims (53)

1. A cardiac monitoring and treatment system, comprising:

a controller comprising at least one processor;

a first wearable portion, comprising

an elongated strap configured to encircle a thoracic region of a patient, the elongated strap being configured to be immobilized relative to a skin surface of the thoracic region of the patient by exerting one or more compression forces against the thoracic region,

wherein the elongated strap is configured to exert the one or more compression forces in a range from 0.025 psi to 0.75 psi,

a plurality of ECG sensing electrodes disposed about the elongated strap, the plurality of ECG sensing electrodes configured to sense an ECG signal of the patient,

one or more receiving ports configured to receive one or more additional components including at least one of a treatment electrode or an additional sensor, and

a plurality of conductive wires, the plurality of conductive wires configured to couple the plurality of ECG sensing electrodes and the one or more receiving ports with the controller; and

a second wearable portion separate from the first wearable portion, the second wearable portion configured to be worn over at least one shoulder of the patient, comprising

a wearable substrate,

one or more treatment electrodes disposed on the wearable substrate, the one or more treatment electrodes comprising a corresponding conductive surface configured to contact an anterior area and a posterior area of the thoracic region of the patient, and

at least one conductive wire configured to releasably connect the one or more treatment electrodes to the controller.

2. The system of claim 1 , wherein the second wearable portion is configured to be worn for a cumulative duration less than or equal to a duration of wear of the first wearable portion.

3. The system of claim 1 , wherein the second wearable portion comprises a compression force relatively lower than the one or more compression forces of the elongated strap.

4. The system of claim 1 , further comprising an ECG acquisition circuit in communication with the plurality of ECG sensing electrodes and the at least one processor and configured to provide ECG information for the patient based on the sensed ECG signal.

5. The system of claim 4 , wherein the at least one processor is configured to

predict a likelihood of a cardiac event based on an analysis of the ECG information, and

provide a notification to the patient to wear the second wearable portion upon detecting an impending cardiac event.

6. The system of claim 1 , wherein the elongated strap is sized to fit about the thoracic region by matching a length of the elongated strap to one or more circumferential measurements of the thoracic region during an initial patient fitting.

7. The system of claim 1 , wherein elongated strap dimensions are derived from a 3D scan of the thoracic region such that the elongated strap is sized to fit proportions, dimensions, and shape of the thoracic region.

8. The system of claim 7 , wherein at least a portion of the elongated strap is 3D printed to at least one of body proportions, body shape, body posture, or linear surface measurements of the thoracic region of the patient.

9. The system of claim 1 , wherein the elongated strap comprises an adjustable latching mechanism configured to secure the elongated strap about the thoracic region of the patient.

10. The system of claim 1 , wherein the elongated strap comprises a breathable skin-facing layer having a moisture vapor transmission rate (MVTR) of between about 600 g/m 2 /day and about 1,400 g/m 2 /day.

11. The system of claim 1 , wherein the elongated strap comprises a breathable skin-facing layer having a moisture vapor transmission rate (MVTR) of between about 100 g/m 2 /day and about 1,400 g/m 2 /day.

12. The system of claim 1 , wherein the one or more compression forces are in a range from 0.05 to 0.70 psi.

13. The system of claim 1 , wherein the one or more compression forces are in a range from 0.075 to 0.675 psi.

14. The system of claim 1 , wherein the one or more compression forces are in a range from 0.1 to 0.65 psi.

15. The system of claim 1 , wherein the system is configured to provide a notification of the one or more compression forces exerted by the elongated strap.

16. The system of claim 15 , further comprising one or more pressure sensors distributed on the elongated strap, wherein the notification of the one or more compression forces exerted by the elongated strap is based on data from the one or more pressure sensors.

17. The system of claim 16 , wherein the one or more pressure sensors comprise one or more force sensitive resistors.

18. The system of claim 1 , wherein the elongated strap comprises a vertical span in a range of 1 to about 15 centimeters along at least 50 percent of a length of the elongated strap.

19. The system of claim 1 , wherein the elongated strap comprises a vertical span in a range of 2 to about 12 centimeters along at least 50 percent of a length of the elongated strap.

20. A cardiac monitoring and treatment system, comprising:

a controller comprising at least one processor;

a first wearable portion, comprising

an elongated strap configured to encircle a thoracic region of a patient, the elongated strap being configured to be immobilized relative to a skin surface of the thoracic region of the patient by exerting one or more compression forces against the thoracic region,

wherein the elongated strap comprises a breathable skin-facing layer having a moisture vapor transmission rate (MVTR) of between about 100 g/m 2 /day and about 1,400 g/m 2 /day,

a plurality of ECG sensing electrodes disposed about the elongated strap, the plurality of ECG sensing electrodes configured to sense an ECG signal of the patient,

one or more receiving ports configured to receive one or more additional components including at least one of a treatment electrode or an additional sensor, and

a plurality of conductive wires, the plurality of conductive wires configured to couple the plurality of ECG sensing electrodes and the one or more receiving ports with the controller; and

a second wearable portion separate from the first wearable portion, the second wearable portion configured to be worn over at least one shoulder of the patient, comprising

a wearable substrate,

one or more treatment electrodes disposed on the wearable substrate, the one or more treatment electrodes comprising a corresponding conductive surface configured to contact an anterior area and a posterior area of the thoracic region of the patient, and

at least one conductive wire configured to releasably connect the one or more treatment electrodes to the controller.

21. The system of claim 20 , wherein the MVTR of the breathable skin-facing layer is between about 600 g/m 2 /day and about 1,400 g/m 2 /day.

22. The system of claim 20 , wherein the second wearable portion comprises a compression force relatively lower than the one or more compression forces of the elongated strap.

23. The system of claim 20 , further comprising an ECG acquisition circuit in communication with the plurality of ECG sensing electrodes and the at least one processor and configured to provide ECG information for the patient based on the sensed ECG signal.

24. The system of claim 23 , wherein the at least one processor is configured to

predict a likelihood of a cardiac event based on an analysis of the ECG information, and

provide a notification to the patient to wear the second wearable portion upon detecting an impending cardiac event.

25. The system of claim 20 , wherein the system is configured to provide a notification of the one or more compression forces exerted by the elongated strap.

26. The system of claim 25 , further comprising one or more pressure sensors distributed on the elongated strap, wherein the notification of the one or more compression forces exerted by the elongated strap is based on data from the one or more pressure sensors.

27. The system of claim 26 , wherein the one or more pressure sensors comprise one or more force sensitive resistors.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2026
From: ZOLL MANUFACTURING CORPORATION
To: ZOLL MEDICAL CORPORATION
Reel/Frame 073985/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2025
From: SWENGLISH, CHRISTOPHER L.
To: ZOLL MANUFACTURING CORPORATION
Reel/Frame 072776/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2022
From: GABRIN, MICHAEL J; SWENGLISH, CHRISTOPHER L; FREEMAN, GARY A
To: ZOLL MEDICAL CORPORATION
Reel/Frame 060566/0321 →
Continuity (2)
Division 16455823 · Jun 28, 2019
Related Publication 20220338782A1 · Oct 27, 2022
Cited By (1)
US 12,708,785