US2020022832A1PendingUtilityA1
Sensor-based control of active wearable system
Est. expiryDec 20, 2032(~6.4 yrs left)· nominal 20-yr term from priority
Inventors:Roderick A. HydeJordin T. KareDennis J. RivetSuzanne Kathleen ScheeleKatherine E. SharadinLowell L. Wood, Jr.
A61N 1/36031A61F 2005/0188A61F 5/03A61F 5/028A61F 5/024A61B 5/1112A61F 2005/0197A61B 5/01A61N 1/36003A61F 5/34A61B 5/112A61B 5/1118A61B 5/1116A61N 1/08A61N 1/36014
52
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Claims
Abstract
An active wearable system includes a one or more positioning elements configured as a torso support and/or other wearable item, one or more sensors for sensing motion, posture, or gait of a subject, and at least one of force applying elements for applying force to selected regions of a body of a subject, and feedback device and other actuators, under the control of control circuitry responsive to sensed motion, posture or gait of the subject. In an aspect, force is applied according to spatial or temporal patterns. Related devices and methods are described.
Claims
exact text as granted — not AI-modified1 . A system comprising:
a wearable item including
a plurality of actuators, each actuator configured to be positioned with respect to a localized region of a body of a subject;
at least one landmark sensor adapted to sense a parameter indicative of a position of a landmark in or on the body of the subject and to produce at least one landmark position signal;
at least one positioning element adapted to be worn on the body of the subject and to position the at least one landmark sensor and the plurality of actuators with respect to the body of the subject, wherein each of the plurality of actuators is in a known position relative to the wearable item;
at least one activity sensor adapted to detect an input indicative of a posture, gait or activity of the subject, and to generate an activity signal indicative of the posture, gait or activity of the subject; and control circuitry including
electrical circuitry for receiving from the at least one landmark sensor the at least one landmark position signal;
electrical circuitry for receiving from the at least one activity sensor the at least one activity signal;
signal processing circuitry for calculating a position of a target region on the body of the subject relative to the wearable item based on the at least one landmark position signal and on a known position of the target region relative to the landmark;
signal processing circuitry for selecting at least one actuator positioned closest to the target region; and
electrical circuitry for generating an electrical control signal for controlling actuation of the at least one actuator based at least in part on the at least one activity signal.
2 .- 3 . (canceled)
4 . The system of claim 1 , including one or more neural stimulator, muscle stimulator, or thermal stimulus source carried by the at least one positioning element.
5 .- 6 . (canceled)
7 . The system of claim 1 , wherein the at least one landmark sensor includes an electromagnetic transducer, an optical sensor, an infrared sensor, an acoustic sensor, an electrical transducer, a magnetic transducer, an ultrasound transducer, a micro-impulse radar sensor, or a temperature sensor.
8 . The system of claim 1 , wherein the at least one landmark sensor is configured to sense muscle activity or neural activity.
9 . The system of claim 1 , wherein the at least one landmark sensor is configured to sense a signal indicative of at least one of a bony structure within the body of the subject, a soft-tissue structure within the body of the subject, vasculature below a skin surface of the body of the subject, muscle activity, neural activity, a local temperature on or below the skin surface, a marker or fiducial, on or below the skin surface of the subject.
10 . The system of claim 1 , wherein the at least one activity sensor includes at least one force sensor, pressure sensor, capacitance sensor, conductance sensor, stress sensor, strain sensor, camera, motion sensor, proximity sensor, perimeter sensor, micro-impulse radar sensor, infrared sensor, optical sensor, electromagnetic sensor, acoustic sensor, accelerometer, gyro, inclinometer, magnetometer, or position sensor.
11 . The system of claim 1 , wherein the electrical circuitry for receiving from the at least one landmark sensor the at least one landmark position signal includes electrical circuitry located on the wearable item.
12 . The system of claim 1 , wherein the electrical circuitry for receiving from the at least one activity sensor the at least one activity signal includes a receiver for receiving the at least one activity signal from a remote activity sensor.
13 . The system of claim 1 , wherein the signal processing circuitry for calculating the position of the target region on the body of the subject relative to the wearable item based on the at least one landmark position signal and on the known position of the target region relative to the landmark is configured to determine the position of the target region, wherein the target region is at a different location than the landmark.
14 . The system of claim 1 , wherein the signal processing circuitry for calculating the position of the target region on the body of the subject relative to the wearable item based on the at least one landmark position signal and on the known position of the target region relative to the landmark is configured to determine the position of the target region, wherein the target region is at the same location as the landmark.
15 . The system of claim 14 , wherein the signal processing circuitry for calculating the position of the target region on the body of the subject relative to the wearable item based on the at least one landmark position signal and on the known position of the target region relative to the landmark is configured to determine the position of the target region, wherein the target region is the landmark.
16 .- 17 . (canceled)
18 . The system of claim 1 , including a memory operably connected to the control circuitry, wherein the electrical circuitry for generating an electrical control signal for controlling actuation of the at least one actuator based at least in part on the at least one activity signal is configured to generate the electrical control signal based at least in part on a temporal pattern stored in the memory.
19 . The system of claim 1 , including a memory operably connected to the control circuitry, wherein the electrical circuitry for generating an electrical control signal for controlling actuation of the at least one actuator based at least in part on the at least one activity signal is configured to generate a plurality of control signals for controlling the plurality of actuators in a spatial and temporal pattern.
20 . The system of claim 1 , wherein one or more of the plurality of actuators has associated therewith an electrical sensor adapted to detect and electromyographic signal associated with muscle activity, wherein the electrical sensor is at least one of the at least one landmark sensor and the at least one activity sensor.
21 . A system comprising:
at least one remote sensor system including
at least one sensor adapted to detect an input indicative of a posture or activity of a subject; and
at least one transmitter adapted for transmitting at least one first activity signal indicative of the posture or activity of the subject;
an intermediate system including
at least one receiver for receiving the at least one first activity signal; and
at least one transmitter for transmitting at least one second activity signal, the at least one second activity signal containing at least a portion of the information indicative of the posture or activity of the subject contained in the first activity signal; and
a wearable item including
at least one actuator;
at least one positioning element adapted to position the at least one actuator with respect to the torso of the subject;
at least one receiver adapted to receive the at least one second activity signal from the intermediate system; and
a control circuitry including
electrical circuitry for generating a control signal for controlling actuation of the at least one actuator based at least in part on the at least one second activity signal.
22 .- 41 . (canceled)
42 . A torso support comprising:
at least one force applying element adapted to apply force to a localized region of a torso of a subject; at least one positioning element adapted to position the at least one force applying element with respect to the torso of the subject; at least one receiver adapted to receive at least one activity signal indicative of a posture or activity of the subject detected by at least one sensor system located remote from the torso support; at least one memory device adapted to store two or more pre-defined patterns for activation of the at least one force applying element, each pre-defined pattern corresponding to a pre-defined posture or activity of the subject; and control circuitry including
electrical circuitry for selecting a pre-defined pattern from the two or more pre-defined patterns based at least in part on the at least one activity signal; and
electrical circuitry for generating a control signal for controlling actuation of the at least one force applying element to apply force according to the selected pre-defined pattern.
43 .- 52 . (canceled)
53 . A torso support system comprising:
a remote sensor system including
a camera adapted to detect an image indicative of a posture or activity of a subject; and
at least one transmitter adapted for transmitting at least one activity signal based on the detected image, the at least one activity signal indicative of the posture or activity of the subject; and
a torso support including at least one force applying element adapted to apply force to a localized region of a torso of the subject;
at least one positioning element adapted to position the at least one force applying element with respect to the torso of the subject;
at least one receiver adapted to receive at least one activity signal indicative of the posture or activity of the subject detected by the at least one sensor system located remote from the torso support; and
a control circuitry including
electrical circuitry for generating a control signal for controlling actuation of the at least one force applying element based at least in part on the at least one activity signal received by the at least one receiver.
54 .- 61 . (canceled)
62 . A method of controlling a wearable item comprising:
receiving with an electrical circuitry operably coupled to the wearable item and including signal processing circuitry, at least one landmark position signal from at least one sensor, the at least one landmark position signal indicative of a position of a landmark in or on a body of a subject relative to at least a portion of the wearable item worn on the body of the subject, the wearable item including a plurality of actuators, at least one positioning element configured to position each of the plurality of actuators with respect to the body of the subject in a known position relative to the wearable item; and a control circuitry including electrical circuitry for generating an electrical control signal for controlling actuation of the at least one selected actuator to apply force to the target region; determining, with the signal processing circuitry, the position of the target region on the body of the subject relative to the wearable item based on the position of the landmark relative to the wearable item; selecting, with the signal processing circuitry, at least one actuator positioned closest to the target region from among a plurality of actuators based upon information indicative of the positions of the plurality of actuators relative to the wearable item; and controlling, with the control circuitry, actuation of the at least one selected actuator by generating the electrical control signal with the electrical circuitry for generating the electrical control signal.
63 .- 95 . (canceled)
96 . The system of claim 1 , wherein the plurality of actuators includes at least one of one or more force applying element or one or more haptic element.
97 . The system of claim 1 , wherein the at least one positioning element includes at least one garment, band, strap, belt or harness.Join the waitlist — get patent alerts
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