IP Library Granted Patent US 11,389,059
Granted Patent B2
US 11,389,059 · App. 16/805,253 · Granted Jul 19, 2022

Ocular-performance-based head impact measurement using a faceguard

Inventor: Wesley W. O. Krueger (San Antonio, TX)
A61B3/113A42B3/046A61B5/4064A61B5/6821G02B27/0093G02B2027/0187
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Quick Facts
Patent No.
US 11,389,059
App. No.
16/805,253
Granted
Jul 19, 2022
Kind
B2
Abstract

A faceguard is configured for measuring a human eye muscle movement response. The faceguard is configured for protecting at least one part of a human face and has an aperture for human vision through the faceguard. The faceguard comprises an eye sensor, a head orientation sensor, and an electronic circuit. The eye sensor comprises a video camera and is configured for measuring eyeball movement, pupil size, and/or eyelid movement. The head orientation sensor senses pitch and/or yaw of a person's head. The electronic circuit is responsive to the eye sensor and the head orientation sensor.

Claims (108)

1. A faceguard wherein:

the faceguard is configured for measuring an eye movement;

the faceguard comprises:

a structural member configured for protecting at least one part of a human face;

at least one aperture configured for human vision through the faceguard;

an eye sensor wherein:

the eye sensor comprises an imaging sensor; and

the eye sensor senses eye information selected from the group of:

eye movement;

pupil movement; and

eyelid movement;

a head orientation sensor wherein:

the head orientation sensor senses a head movement selected from the group of pitch and yaw of a person's head wherein pitch represents a rotation about a first axis representing up and down movement of the person's face when the rear of the person's head moves in the opposite direction and yaw represents horizontal movement of the face when looked at from the front about a second axis substantially aligned with the spine and perpendicular to the first axis; and

an electronic circuit wherein:

the electronic circuit comprises a central processing unit, and a memory unit;

the electronic circuit is responsive to the eye information received from the eye sensor; and

the electronic circuit is responsive to the head movement information received from the head orientation sensor.

2. The faceguard of claim 1 wherein:

the faceguard is configured for attachment to a helmet wherein the helmet is configured for being worn by a human.

3. The faceguard of claim 1 wherein:

the faceguard is configured for measuring a human health condition selected from the group of:

a concussion; and

a traumatic brain injury.

4. The faceguard of claim 1 wherein:

the imaging sensor is below the inferior margin of the upper eyelid.

5. The faceguard of claim 1 wherein:

the faceguard further comprises an impact sensor and an alarm wherein the alarm is responsive to the impact sensor when an impact threshold has been reached.

6. The faceguard of claim 1 wherein:

the electronic circuit further comprises a communication unit; and

the communication unit is configured for wireless transmission of information selected from the group of:

the eye information;

the head movement information; and

the measured eye movement response.

7. The faceguard of claim 1 wherein:

the electronic circuit is configured for generating an alarm signal in response to information selected from the group of:

the eye information;

the head movement information; and

the measured eye movement response.

8. The faceguard of claim 1 wherein:

the faceguard is configured for measuring and correcting slippage offsets between the faceguard and a helmet.

9. The faceguard of claim 1 wherein:

the faceguard further comprises a forward-facing camera configured for recording video images at a minimum of 24 frames per second.

10. The faceguard of claim 1 wherein:

the imaging sensor comprises a video camera configured for receiving images at a minimum of 90 frames per second.

11. The faceguard of claim 1 wherein:

the faceguard further comprises a forward-pointing visual cue projector.

12. The faceguard of claim 1 wherein:

the head orientation sensor comprises a micro-electro-mechanical system integrated circuit comprising a module selected from the group consisting of an accelerometer, a magnetometer, and a gyroscope.

13. A human ocular performance measuring system wherein:

the system is configured for measuring an eye movement;

the system comprises:

an eye imaging sensor wherein:

the eye imaging sensor is affixed to a faceguard wherein the faceguard comprises:

a structural member configured for protecting at least one part of a human face; and

at least one aperture configured for human vision through the faceguard; and

the eye imaging sensor senses eye movement information selected from the group of:

horizontal eye movement;

vertical eye movement;

pupil movement; and

eyelid movement;

a head orientation sensor wherein:

the head orientation sensor is affixed to the faceguard;

the head orientation sensor senses a head movement selected from the group of pitch and yaw of a person's head wherein pitch represents a rotation about a first axis representing up and down movement of the person's face when the rear of the person's head moves in the opposite direction and yaw represents horizontal movement of the face when looked at from the front about a second axis substantially aligned with the spine and perpendicular to the first axis; and

an electronic circuit wherein:

the electronic circuit comprises a central processing unit, and a memory unit;

the electronic circuit is responsive to the eye movement information received from the eye sensor; and

the electronic circuit is responsive to head movement information received from the head orientation sensor.

14. The human ocular performance measurement system of claim 13 wherein:

the system is responsive to a human generated input signal selected from the group of:

an auditory human input signal;

a haptic human input signal.

15. A method for measuring human ocular performance comprising the steps of:

establishing a faceguard that comprises:

a structural member configured for protecting at least one part of a human face, and at least one aperture configured for allowing human vision through the faceguard;

an eye sensor configured for sensing

eye movement information selected from the group of:

horizontal eye movement;

vertical eye movement;

pupil movement; and

eyelid movement;

a head orientation sensor configured for sensing a head movement selected from the group of pitch and yaw of a person's head wherein pitch represents a rotation about a first axis representing up and down movement of the person's face when the rear of the person's head moves in the opposite direction and yaw represents horizontal movement of the face when looked at from the front about a second axis substantially aligned with the spine and perpendicular to the first axis; and

using an electronic circuit to:

receive eye movement information from the eye sensor;

receive head movement information from the head orientation sensor.

16. The faceguard of claim 1 wherein:

the faceguard is configured for measuring an ocular parameter from the group of:

vestibular ocular reflex;

smooth pursuit;

saccades; and

vergence.

17. The faceguard of claim 1 wherein:

the faceguard is configured for measuring visual pursuit wherein visual pursuit comprises:

measurement of eye movement while the eyes follow a moving visual element and the head remains motionless; followed by

measurement of head and eye movement while the head is moving in the same direction as the moving visual element.

18. The faceguard of claim 1 wherein:

the faceguard is configured for detecting a cognitive deficit.

19. The faceguard of claim 1 wherein:

the faceguard is configured for detecting and measuring corrective saccade information from the group of:

the number of saccades associated with a person's eye movement to a fixation point;

a corrective saccade latency;

a corrective saccade amplitude;

a corrective saccade accuracy; and

a corrective saccade velocity.

20. The human ocular performance measurement system of claim 13 wherein:

the system is used to predict human performance in a setting selected from the group of:

an occupational activity;

a sports activity; and

a military activity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2023
From: KRUEGER, WESLEY W.O.
To: NOVUTZ LLC
Reel/Frame 064525/0176 →
Continuity (7)
Continuation In Part 16351326 · Mar 12, 2019
Continuation In Part 16264242 · Jan 31, 2019
Continuation In Part 15713418 · Sep 22, 2017
Continuation In Part 15162300 · May 23, 2016
Continuation In Part 14326335 · Jul 8, 2014
Continuation In Part 13749873 · Jan 25, 2013
Related Publication 20200214559A1 · Jul 9, 2020
Cited By (2)
US 12,197,645 US 12,613,095