IP Library Granted Patent US 11,071,498
Granted Patent B2
US 11,071,498 · App. 16/751,245 · Granted Jul 27, 2021

Smart clothing with inertial, strain, and electromyographic sensors for human motion capture

Inventor: Robert A. Connor (St. Paul, MN)
Assignee: Medibotics LLC
A61B5/6804A41D1/002A61B5/11A61B5/24A61B5/389A61B5/7278A61B2503/10A61B2503/12A61B2562/0219A61B2562/0261A61B2562/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,071,498
App. No.
16/751,245
Granted
Jul 27, 2021
Kind
B2
Abstract

This invention is smart clothing which enables human motion capture through combined analysis of data from inertial sensors, strain (or bend) sensors, and electromyographic (EMG) sensors. In a preferred embodiment, a first inertial motion sensor is located proximal to the body joint, a second inertial sensor is located distal to the body joint, two strain sensors span the body joint in different configurations, and an electromyographic (EMG) sensor collects data concerning electromagnetic energy from the muscles which move the body joint.

Claims (24)

1. A device or system for capturing human motion comprising:

an article of clothing worn by a person, wherein a portion of the article of clothing has a longitudinal axis which is configured to span a body joint, wherein the portion has a first cross-sectional circumference which is proximal relative to the body joint, wherein the portion has a second cross-sectional circumference which is distal relative to the body joint, and wherein proximal means closer to and distal means farther from the person's heart when the person is in Vitruvian Man configuration;

a first inertial motion sensor which is incorporated into the portion at the first cross-sectional circumference;

a second inertial motion sensor which is incorporated into the portion at the second cross-sectional circumference;

a first strain sensor which is incorporated into the portion and spans the body joint between the first cross-sectional circumference and the second cross-sectional circumference, wherein the first strain sensor collects data concerning the transmission of electromagnetic energy through the first strain sensor;

a second strain sensor which is incorporated into the portion and spans the body joint between the first cross-sectional circumference and the second cross-sectional circumference, wherein the second strain sensor collects data concerning the transmission of electromagnetic energy through the second strain sensor;

an electromyographic sensor which is incorporated into the portion and is in electromagnetic communication with a muscle which moves the body joint and/or with nerves which innervate the muscle, and wherein the electromyographic sensor collects data concerning electromagnetic energy emitted by the muscle and/or the nerves; and

a data processor which analyzes data from the first inertial motion sensor, the second inertial motion sensor, the first strain sensor, the second strain sensor, and the electromyographic sensor to measure a configuration and/or motion of the body joint.

2. A device or system for capturing human motion comprising:

an article of clothing worn by a person, wherein a portion of the article of clothing has a longitudinal axis which is configured to span a body joint, wherein the portion has a first cross-sectional circumference which is proximal relative to the body joint, wherein the portion has a second cross-sectional circumference which is distal relative to the body joint, and wherein proximal means closer to and distal means farther from the person's heart when the person is in Vitruvian Man configuration;

a first inertial motion sensor which is incorporated into the portion at the first cross-sectional circumference;

a second inertial motion sensor which is incorporated into the portion at the second cross-sectional circumference;

a first strain sensor which is incorporated into the portion and spans the body joint at a first angle relative to the longitudinal axis, wherein the first strain sensor collects data concerning the transmission of electromagnetic energy through the first strain sensor;

a second strain sensor which is incorporated into the portion and spans the body joint at a second angle relative to the longitudinal axis, wherein the second angle is rotated between 10 and 50 degrees relative to the first angle, and wherein the second strain sensor collects data concerning the transmission of electromagnetic energy through the second strain sensor;

an electromyographic sensor which is incorporated into the portion and is in electromagnetic communication with a muscle which moves the body joint and/or with nerves which innervate the muscle, and wherein the electromyographic sensor collects data concerning electromagnetic energy emitted by the muscle and/or the nerves; and

a data processor which analyzes data from the first inertial motion sensor, the second inertial motion sensor, the first strain sensor, the second strain sensor, and the electromyographic sensor to measure a configuration and/or motion of the body joint.

3. A device or system for capturing human motion comprising:

an article of clothing worn by a person, wherein a portion of the article of clothing has a longitudinal axis which is configured to span a body joint, wherein the portion has a first cross-sectional circumference which is proximal relative to the body joint, wherein the portion has a second cross-sectional circumference which is distal relative to the body joint, and wherein proximal means closer to and distal means farther from the person's heart when the person is in Vitruvian Man configuration;

a first inertial motion sensor which is incorporated into the portion at the first cross-sectional circumference;

a second inertial motion sensor which is incorporated into the portion at the second cross-sectional circumference;

a first strain sensor made with an elastomeric silicone-based polymer which has been doped, impregnated, or coated with electroconductive material and is incorporated into the portion and spans the body joint between the first cross-sectional circumference and the second cross-sectional circumference, wherein the first strain sensor collects data concerning the transmission of electromagnetic energy through the first strain sensor;

a second strain sensor made with an elastomeric silicone-based polymer which has been doped, impregnated, or coated with electroconductive material and is incorporated into the portion and spans the body joint between the first cross-sectional circumference and the second cross-sectional circumference, wherein the second strain sensor collects data concerning the transmission of electromagnetic energy through the second strain sensor;

an electromyographic sensor which is incorporated into the portion and is in electromagnetic communication with a muscle which moves the body joint and/or with nerves which innervate the muscle, and wherein the electromyographic sensor collects data concerning electromagnetic energy emitted by the muscle and/or the nerves; and

a data processor which analyzes data from the first inertial motion sensor, the second inertial motion sensor, the first strain sensor, the second strain sensor, and the electromyographic sensor to measure a configuration and/or motion of the body joint.

Cited By (1)
US 12,593,879