IP Library Granted Patent US 10,371,947
Granted Patent B2
US 10,371,947 · App. 15/269,435 · Granted Aug 6, 2019

Methods and systems for modifying eye convergence for diagnosing and treating conditions including strabismus and/or amblyopia

Inventors: Nicole Elizabeth Samec (Fort Lauderdale, FL); John Graham Macnamara (Plantation, FL); Christopher M. Harrises (Nashua, NH); Brian T. Schowengerdt (Seattle, WA); Rony Abovitz (Hollywood, FL); Mark Baerenrodt (Fort Lauderdale, FL)
Assignee: Magic Leap, Inc.
G02B27/0172A61B3/0008A61B3/022A61B3/024A61B3/028A61B3/063A61B3/066A61B3/08A61B3/085A61B3/10A61B3/102A61B3/1015A61B3/1035A61B3/113A61B3/12A61B3/1216A61B3/13A61B3/14A61B3/165A61B5/0059A61B5/0476A61B5/0496A61B5/1455A61B5/14532A61B5/14555A61B5/6803A61B8/10A61B8/461A61F9/0026A61M21/02G02B21/0032G02B27/0093G02B27/0179G06T19/006G16H40/63G16H40/67A61B5/0066A61B5/0077A61B5/01A61B2562/0204A61B2562/0219A61B2562/0247A61F2007/0004A61F2009/00863A61H2201/165A61M2021/0022A61M2021/0027A61M2021/0066A61M2205/3375A61M2205/507A61N2005/0648G02B2027/014G02B2027/0138G02B2027/0185G06T2207/10024G06T2207/10148G06T2207/10152G06T2207/30041
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Quick Facts
Patent No.
US 10,371,947
App. No.
15/269,435
Granted
Aug 6, 2019
Kind
B2
Abstract

Configurations are disclosed for a health system to be used in various healthcare applications, e.g., for patient diagnostics, monitoring, and/or therapy. The health system may comprise a light generation module to transmit light or an image to a user, one or more sensors to detect a physiological parameter of the user's body, including their eyes, and processing circuitry to analyze an input received in response to the presented images to determine one or more health conditions or defects.

Claims (42)

1. A wearable augmented reality device configured to be used by a wearer having two eyes deficient in aligning at a convergence point, the device comprising:

an augmented reality head-mounted ophthalmic system comprising a wearable augmented reality display platform configured to pass light from the world into the eyes of the wearer wearing the head-mounted system;

at least one light source configured to output light for propagation into the eyes of the wearer to form an image;

a first waveguide stack for a first eye of the wearer and a second waveguide stack for a second eye of the wearer, wherein each waveguide stack comprises a plurality of waveguides, wherein different waveguides of the plurality of waveguides are configured to output light with wavefront divergence corresponding to different depth planes; and

an eye tracking system configured to determine a gaze of the eye,

wherein the device is configured to modify the image by adding a compensating prism correction configured to align both eyes to a single convergence point.

2. The device of claim 1 , wherein the device further comprises diffractive optical elements configured to in-couple light, projected via the at least one light source, into particular waveguides of one or more of the first waveguide stack or second waveguide stack.

3. The device of claim 1 , wherein each waveguide of the plurality of waveguides has an associated diffractive out-coupling element.

4. A wearable augmented reality device configured to be used by a wearer having two eyes deficient in aligning at a convergence point, the device comprising:

an augmented reality head-mounted ophthalmic system comprising a wearable augmented reality display platform, the augmented reality display platform configured to pass light from the world into the eyes of the wearer wearing the head-mounted system;

at least one light source configured to output light for propagation into the eyes of the wearer to form an image;

a first waveguide stack for a first eye of the wearer and a second waveguide stack for a second eye of the wearer, wherein each waveguide stack comprises a plurality of waveguides, wherein different waveguides are configured to output light with wavefront divergence corresponding to different depth planes;

an eye tracking system configured to determine a gaze of the eyes; and

an adaptable optics element configured to add a compensating prism correction to the light forming the image, the compensating prism correction configured to align both eyes to a single convergence.

5. The device of claim 4 , wherein the adaptable optics element comprises a variable focus element.

6. The device of claim 5 , wherein the variable focus element comprises a membrane mirror.

7. The device of claim 6 , further comprising:

one or more electrodes coupled to the membrane mirror; and

a control system configured to selectively control the one or more electrodes to modify a shape of the membrane mirror based on a corneal shape of the eye.

8. The device of claim 4 , wherein the device further comprises diffractive optical elements configured to in-couple light, projected via the at least one light source, into particular waveguides of one or more of the first waveguide stack or second waveguide stack.

9. The device of claim 4 , wherein each waveguide of the plurality of waveguides has an associated diffractive out-coupling element.

10. A wearable display device configured to be used by a wearer having two eyes deficient in aligning at a convergence point, the display device comprising:

a wearable head-mounted ophthalmic system;

at least one light source configured to output light for propagation into the eyes of the wearer to form an image;

a first waveguide stack for a first eye of the wearer and a second waveguide stack for a second eye of the wearer, wherein each waveguide stack comprises a plurality of waveguides and wherein different waveguides are configured to output light with wavefront divergence corresponding to different depth planes; and

an eye tracking system configured to determine a gaze of the eyes,

wherein the device is configured to modify the image by adding a compensating prism correction configured to align both eyes to a single convergence point.

11. The device of claim 10 , wherein each waveguide stack further comprises one or more lenses.

12. The device of claim 10 , wherein each waveguide stack is part of an augmented reality display system, the waveguide stack configured to pass light from the world into a respective eye of the wearer wearing the head-mounted display system.

13. The device of claim 10 , wherein the device further comprises diffractive optical elements configured to in-couple light, projected via the at least one light source, into particular waveguides of one or more of the first waveguide stack or second waveguide stack.

14. The device of claim 10 , wherein each waveguide of the plurality of waveguides has an associated diffractive out-coupling element.

15. A wearable augmented reality device configured to be used by a wearer having two eyes deficient in aligning at a convergence point, the device comprising:

an augmented reality head-mounted ophthalmic system comprising an augmented reality display configured to pass light from the world into the eyes of the wearer wearing the head-mounted system;

at least one light source configured to output light for propagation into the eyes of the wearer to form an image;

a first waveguide stack for a first eye of the wearer and a second waveguide stack for a second eye of the wearer, wherein each waveguide stack comprises a plurality of waveguides and wherein different waveguides are configured to output light with wavefront divergence corresponding to different depth planes; and

an eye tracking system configured to determine a gaze of the eyes,

wherein the wearable augmented reality device is configured to re-train the eyes to align with a single convergence point.

16. The device of claim 15 , wherein the wearable augmented reality device is configured to re-train the eyes by occluding one eye.

17. The device of claim 15 , wherein the wearable augmented reality device is configured to re-train the eyes by reducing intensity of light into one eye.

18. The device of claim 15 , wherein the wearable augmented reality device is configured to re-train the eyes by defocusing the light directed into one eye.

19. The device of claim 12 , wherein the device further comprises diffractive optical elements configured to in-couple light, projected via the at least one light source, into particular waveguides of one or more of the first waveguide stack or second waveguide stack.

20. The device of claim 15 , wherein each waveguide of the plurality of waveguides has an associated diffractive out-coupling element.

Assignments (4)
SECURITY INTEREST Recorded Oct 24, 2025
From: MAGIC LEAP, INC.; MENTOR ACQUISITION ONE, LLC; MOLECULAR IMPRINTS, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073255/0581 →
ASSIGNMENT OF SECURITY INTEREST IN PATENTS Recorded Nov 7, 2019
From: JPMORGAN CHASE BANK, N.A.
To: CITIBANK, N.A.
Reel/Frame 050967/0138 →
PATENT SECURITY AGREEMENT Recorded Aug 22, 2019
From: MAGIC LEAP, INC.; MOLECULAR IMPRINTS, INC.; MENTOR ACQUISITION ONE, LLC
To: JP MORGAN CHASE BANK, N.A.
Reel/Frame 050138/0287 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2019
From: SAMEC, NICOLE ELIZABETH; MACNAMARA, JOHN GRAHAM; HARRISES, CHRISTOPHER M.; SCHOWENGERDT, BRIAN T.; ABOVITZ, RONY; BAERENRODT, MARK; TECHNICAL SOLUTIONS, INC.
To: MAGIC LEAP, INC.
Reel/Frame 049584/0749 →
Continuity (3)
Continuation 15072290 · Mar 16, 2016
Provisional Application 62133870 · Mar 16, 2015
Related Publication 20170000683A1 · Jan 5, 2017
Cited By (1)
US 12,345,892