IP Library Granted Patent US 12,594,217
Granted Patent B2
US 12,594,217 · App. 17/328,523 · Granted Apr 7, 2026

Self-contained portable positionable oscillating motor array with strap tension sensing elements

Inventors: Harold David Shockley, Jr. (Austin, TX); Geoffrey Albert Marcek (Austin, TX); Robert Wiley Ellis (Miramar, FL)
Assignee: TACTILE SYSTEMS TECHNOLOGY, INC.
A61H23/0236A61B5/4833A61H1/008A61H23/006A61H23/02A61M16/0006A61B5/6805A61B2562/0252A61H2201/0111A61H2201/0157A61H2201/0173A61H2201/0192A61H2201/1207A61H2201/1619A61H2201/1621A61H2201/165A61H2201/1652A61H2201/5002A61H2201/5005A61H2201/5007A61H2201/501A61H2201/5023A61H2201/5038A61H2201/5046A61H2201/5061A61H2201/5082A61H2201/5084A61H2201/5097A61H2205/08A61H2205/084A61H2230/50
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Quick Facts
Patent No.
US 12,594,217
App. No.
17/328,523
Granted
Apr 7, 2026
Kind
B2
Abstract

A medical device system including a wearable harness worn, during use, on a torso of a subject. Engines coupled to the wearable harness apply an oscillation force to at least one treatment area of the subject in order to mobilize at least some secretions in an airway within the subject substantially adjacent to the at least one treatment area. The wearable harness is secured on the subject using one or more straps coupled to the wearable harness. A controller determines a tension force applied by at least one of the straps by receiving measurements of at least one property from a force sensing element (e.g., a force sensor) integrated with the strap. The tension force may also be correlated to forces being applied to the subject by the engines.

Claims (40)

1 . A system, comprising:

a wearable harness of a medical device positionable on a torso of a subject;

one or more straps coupled to the wearable harness for securing the wearable harness on the torso of the subject;

a plurality of engines coupled to the wearable harness, wherein the plurality of engines applies, during use, an oscillation force to at least one treatment area of the subject to mobilize a secretion in an airway within the subject substantially adjacent to the at least one treatment area;

at least one force sensing element integrated with a strap of the one or more straps, wherein the at least one force sensing element comprises:

a first non-conductive sensor body element comprising a first surface;

a second non-conductive sensor body element comprising a second surface facing the first surface of the first non-conductive sensor body element; and

a force sensor positioned between and in contact with the first and second surfaces of the first and second non-conductive sensor body elements,

wherein the force sensor has at least one property that changes with load applied to the force sensor by the first and second non-conductive sensor body elements in response to force applied to the at least one force sensing element from the strap, and

wherein the force sensor defines a plane disposed between the first and second surfaces of the first and second non-conductive sensor body elements such that the load applied by the non-conductive sensor body elements to the force sensor is applied substantially along the plane of the force sensor; and

a controller associated with the wearable harness, wherein the controller is configured to:

receive a measurement of the at least one property from the force sensor; and

determine a tension force applied to the at least one force sensing element by the strap based on the measurement of the at least one property.

2 . The system of claim 1 , wherein the at least one property is a resistance of the force sensor.

3 . The system of claim 1 , wherein at least one of the non-conductive elements is configured to move in response to a force applied to the at least one force sensing element, and wherein the movement of the at least one non-conductive element changes a force applied to the force sensor.

4 . The system of claim 1 , wherein the controller is configured to correlate the determined tension force applied to the at least one force sensing element with the oscillation force applied by the plurality of engines during use.

5 . The system of claim 1 , wherein the controller is configured to receive one or more additional inputs from one or more additional sensors coupled to the wearable harness, and determine a performance of the wearable harness in treating the subject.

6 . The system of claim 5 , wherein the controller is configured to determine the performance of the wearable harness in treating the subject based on one or more measurements of properties of the subject.

7 . The system of claim 1 , wherein the controller is configured to correlate the determined tension force applied to the at least one force sensing element with tension caused by increasing or decreasing force applied by the harness.

8 . The system of claim 1 , wherein at least a portion of the at least one force sensing element is attached to the wearable harness.

9 . The system of claim 1 , wherein the at least one force sensing element is attached to the strap.

10 . The system of claim 1 , wherein the one or more straps includes a first portion and a second portion coupled together using a connector to secure the wearable harness on the torso of the subject.

11 . The system of claim 1 , wherein the at least one force sensing element comprises a harness attachment portion coupled to the wearable harness.

12 . The system of claim 1 , wherein the at least one force sensing element comprises a strap attachment portion coupled to the strap using an opening defined by the strap attachment portion.

13 . A method, comprising:

applying an oscillation force to at least one treatment area of a subject using a plurality of engines coupled to a wearable harness positioned on a torso of the subject, wherein the oscillation force mobilizes a secretion in an airway within the subject substantially adjacent to the at least one treatment area, wherein the wearable harness is secured on the torso of the subject using one or more straps;

receiving, at a controller coupled to the wearable harness, a measurement of at least one property from at least one force sensing element integrated with a strap of the one or more straps, wherein the at least one force sensing element comprises:

a first non-conductive sensor body element having a first surface;

a second non-conductive sensor body element having a second surface facing the first surface of the first non-conductive sensor body element; and

a force sensor positioned between and in contact with the first and second surfaces of the first and second non-conductive sensor body elements,

wherein the at least one property changes with load applied to the force sensor by the first and second non-conductive sensor body elements in response to force applied to the at least one force sensing element from the strap, and

wherein the force sensor defines a plane disposed between the first and second surfaces of the first and second non-conductive sensor body elements such that the load applied by the non-conductive sensor body elements to the force sensor is applied substantially along the plane of the force sensor; and

determining, by the controller, a tension force applied to the at least one force sensing element by the strap based on the measurement of the at least one property.

14 . The method of claim 13 , wherein the at least one property received at the controller is a resistance of the force sensor.

15 . The method of claim 13 , further comprising correlating, by the controller, the determined tension force applied to the at least one force sensing element with the oscillation force applied by the plurality of engines.

16 . The method of claim 13 , further comprising correlating, by the controller, the determined tension force applied to the at least one force sensing element with tension caused by tightening or loosening the strap.

17 . The method of claim 13 , further comprising determining, by the controller, a performance of the wearable harness in treating the subject based on the determined tension force applied to the at least one force sensing element and one or more additional inputs.

18 . The method of claim 17 , wherein the one or more additional inputs includes at least one of either a measurement from at least one additional sensor coupled to the wearable harness or a measurement of at least one property of the subject.

19 . The method of claim 13 , further comprising determining, by the controller, a fit of the wearable harness on the torso of the subject based on the determined tension force applied to the at least one force sensing element.

20 . The method of claim 13 , further comprising determining, by the controller, whether the subject is using the wearable harness in compliance with a prescribed regimen based on the determined tension force applied to the at least one force sensing element.

Assignments (3)
CONFIRMATORY GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 17, 2021
From: TACTILE SYSTEMS TECHNOLOGY, INC. (DBA TACTILE MEDICAL)
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 057612/0760 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2021
From: INTERNATIONAL BIOPHYSICS CORPORATION
To: TACTILE SYSTEMS TECHNOLOGY, INC.
Reel/Frame 057459/0012 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2021
From: SHOCKLEY, HAROLD DAVID, JR; MARCEK, GEOFFREY ALBERT; ELLIS, ROBERT WILEY
To: INTERNATIONAL BIOPHYSICS CORPORATION
Reel/Frame 056857/0837 →
Continuity (5)
Continuation In Part 14876504 · Oct 6, 2015
Provisional Application 62183819 · Jun 24, 2015
Provisional Application 62101131 · Jan 8, 2015
Provisional Application 62060772 · Oct 7, 2014
Related Publication 20210283008A1 · Sep 16, 2021
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