IP Library Granted Patent US 11,899,844
Granted Patent B2
US 11,899,844 · App. 18/112,407 · Granted Feb 13, 2024

Robust motion sickness reduction device

Inventor: Evgene Fainstain (San Jose, CA)
Assignee: NEUROHAPTICS, INC.
G06F3/016G06F1/163G06F3/015
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Quick Facts
Patent No.
US 11,899,844
App. No.
18/112,407
Granted
Feb 13, 2024
Kind
B2
Abstract

A device for motion sickness reduction. The device operates by providing haptic feedback using transducers that convert electrical signals to a tactile sensation such as pressure, vibration, electrical stimulation, temperature, or airflow. The transducers are located at different locations on the body of a user, and actively change their operation to indicate a direction of motion or rotation to the user through haptic (tactile) feedback. This tactile feedback can be used to reduce motion sickness. In an embodiment, the feedback is improved by deducting motion associated with the user's visual frame of reference from motion associated with the user's vestibular frame of reference.

Claims (47)

1. A device for motion sickness reduction associated with physical movement, comprising:

an annular-shaped headband configured to be worn about a horizontal circumference of a human head, the headband having a circumference and comprising:

a plurality of transducers arranged about the circumference of the headband, each transducer being configured to provide haptic feedback to a wearer of the headband; and

a first sensor configured to periodically measure motion of the headband;

a controller comprising a processor, a memory, and a plurality of programming instructions stored in the memory which, when operating on the processor, cause the controller to:

receive motion data from the first sensor, the motion data indicating the direction and the magnitude of the motion of the headband;

receive data pertaining to motion of an external reference frame from a second sensor;

determine a differential motion between the headband and the motion of the external reference frame;

identify a first transducer of the plurality of transducers that is closest in direction to the direction of the differential motion;

operate the first transducer, the intensity of transducer operation corresponding to the magnitude of the differential motion;

while the magnitude of the differential motion meets or exceeds a threshold value, operate a plurality of additional transducers on either side of the first transducer, the intensity of operation of the plurality of additional transducers corresponding to the magnitude of the differential motion, but at a lower intensity than the operation of the first transducer;

while the magnitude of the difference in differential motion is below the threshold value, cease the operation of the plurality of additional transducers; and

repeating the operations of the controller set forth above as the differential motion data is recomputed as new data is received from the sensors.

2. The device of claim 1 , wherein the motion data comprises one or a combination of the headband's position, speed, velocity, or acceleration.

3. The device of claim 2 , wherein, when a new direction of the differential motion is detected from sensor data and a newly-selected first transducer is selected by the controller to reflect the new direction, one or more transducers are activated in sequence between the previously-selected first transducer and the newly-selected first transducer to indicate a rotational transition from the old direction to the new direction.

4. The device of claim 3 , wherein the intensity of operation of the one or more transducers activated in sequence is gradually reduced in the reverse order of their activation so as to cause a trailing off of intensity following the indication of rotational transition.

5. The device of claim 1 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

6. The device of claim 4 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

7. A method for motion sickness reduction associated with physical movement, comprising the steps of:

periodically receiving, at a controller, motion data from a first and a second sensor, the motion data from the first sensor indicating a direction and a magnitude of motion of a headband comprising a plurality of transducers and the motion data from the second sensor indicating a direction and a magnitude of motion of an external reference frame;

determining a differential motion between the external reference frame and the headband;

identifying a first transducer of the plurality of transducers that is closest in direction to the direction of the differential motion;

operating the first transducer, the intensity of transducer operation corresponding to the magnitude of the differential motion;

while the magnitude of the differential motion meets or exceeds a threshold value, operating a plurality of additional transducers to either side of the first transducer, the intensity of operation of the plurality of additional transducers corresponding to the magnitude of the differential motion, but at a lower intensity than the operation of the first transducer;

while the magnitude of the differential motion falls below the threshold value, ceasing the operation of the plurality of additional transducers; and

repeating the operations of the controller set forth above as the differential motion data is recomputed as new data is received from the sensors.

8. The method of claim 7 , wherein the motion data comprises one or a combination of the headband's position, speed, velocity, or acceleration.

9. The method of claim 8 , wherein, when a new direction of the differential motion is detected from sensor data and a newly-selected first transducer is selected by the controller to reflect the new direction, one or more transducers are activated in sequence between the previously-selected first transducer and the newly-selected first transducer to indicate a rotational transition from the old direction to the new direction.

10. The method of claim 9 , wherein the intensity of operation of the one or more transducers activated in sequence is gradually reduced in the reverse order of their activation so as to cause a trailing off of intensity following the indication of rotational transition.

11. The method of claim 7 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

12. The method of claim 10 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

13. A device for motion sickness reduction associated with physical movement, comprising:

an annular-shaped headband configured to be worn about a horizontal circumference of a human head and comprising:

a plurality of transducers arranged about a circumference of the headband, each transducer being configured to provide haptic feedback to a wearer of the headband; and

a sensor configured to periodically measure motion of the headband;

a controller comprising a processor, a memory, and a plurality of programming instructions stored in the memory which, when operating on the processor, cause the controller to:

receive motion data from the sensor, the motion data indicating a direction and a magnitude of the motion of the headband;

identify a first transducer of the plurality of transducers that is closest in direction to the direction of the motion;

operate the first transducer, the intensity of transducer operation corresponding to the magnitude of the motion;

while the magnitude of the motion meets or exceeds a threshold value, operate a plurality of additional transducers to either side of the first transducer, the intensity of operation of the plurality of additional transducers corresponding to the magnitude of the motion, but at a lower intensity than the operation of the first transducer;

while the magnitude of the motion falls below the threshold value, cease the operation of the plurality of additional transducers; and

repeat the operations of the controller set forth above as new motion data is received from the sensor.

14. The device of claim 13 , wherein the motion data comprises one or a combination of the headband's position, speed, velocity, or acceleration.

15. The device of claim 14 , wherein, when a new direction of the motion is determined and a newly-selected first transducer is selected by the controller to reflect the new direction, one or more transducers are activated in sequence between the previously-selected first transducer and the newly-selected first transducer to indicate a rotational transition from the old direction to the new direction.

16. The device of claim 15 , wherein the intensity of operation of the one or more transducers activated in sequence is gradually reduced in the reverse order of their activation so as to cause a trailing off of intensity following the indication of rotational transition.

17. The device of claim 13 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

18. The device of claim 16 , wherein the haptic feedback is in the form of pressure, vibration, or electrical stimulation.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2026
From: NEUROHAPTICS, INC.
To: FAINSTAIN, EVGENE
Reel/Frame 075004/0423 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2024
From: FAINSTAIN, EVGENE
To: NEUROHAPTICS, INC.
Reel/Frame 066139/0792 →
Continuity (7)
Continuation 17750246 · May 20, 2022
Continuation 17750243 · May 20, 2022
Continuation 17695699 · Mar 15, 2022
Continuation In Part 17695699 · Mar 15, 2022
Continuation 15930119 · May 12, 2020
Provisional Application 62846674 · May 12, 2019
Related Publication 20230280830A1 · Sep 7, 2023