AUGMENTED AND VIRTUAL REALITY DISPLAY SYSTEMS AND METHODS FOR PERFORMING RETINOSCOPY
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.
1 . A wearable augmented reality device configured to be used by a wearer, the device comprising:
an augmented reality head-mounted ophthalmic system comprising an augmented reality display platform, the augmented reality head-mounted ophthalmic system configured to pass light from the world into an eye of a wearer wearing the augmented reality head-mounted ophthalmic system, the eye having a retina;
at least one light source configured to project light into the eye of the wearer to form an image in the eye, the at least one light source configured to sweep light across the retina of the eye of the wearer producing a reflex of the retina; and
a sensor configured to measure a response of the retina to the swept light such that the augmented reality head-mounted ophthalmic system can perform retinoscopy to measure refractive error of the eye.
2 . The device of claim 1 , wherein the image can be dynamically modified to provide dynamic retinoscopy.
3 . The device of claim 1 , wherein the at least one light source comprises a fiber scanning display.
4 . The device of claim 1 , wherein the at least one light source comprises a fiber scanning display and a light generating source.
5 . The device of claim 1 , further comprising an adaptable optics element configured to project the image to a targeted portion of the eye of the wearer.
6 . The device of claim 5 , wherein the adaptable optics element comprises a variable focus element.
7 . The device of claim 6 , wherein the variable focus element comprises a membrane mirror.
8 . The device of claim 7 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.
9 . The device of claim 1 , further comprising a waveguide stack comprising a plurality of waveguides, wherein different waveguides are configured to project light from different depth planes.
10 . The device of claim 9 , wherein the waveguide stack further comprises one or more lenses.
11 . The device of claim 1 , wherein the wearable augmented reality device is configured to determine whether the measured refractive error has improved in response to a change in optical power.
12 . The device of claim 11 , wherein the wearable augmented reality device is configured to modify an applied optical power to reduce the measured refractive error.
13 . A method of performing a retinoscopy, comprising:
providing an augmented reality head-mounted ophthalmic system of a wearable augmented reality device configured to be used by a wearer and configured to pass light from the world into an eye of a wearer wearing the augmented reality head-mounted ophthalmic system, the eye having a retina;
projecting, with at least one light source of the wearable augmented reality device, light into the eye of the wearer to form an image in the eye, the at least one light source configured to sweep light across the retina of the eye of the wearer producing a reflex of the retina;
sensing, with a sensor of the wearable augmented reality device, a response of the retina to the swept light such; and
measuring a refractive error of the eye based on the response.
14 . The method of claim 13 , wherein the projecting the light includes projecting the light such that the image is dynamically modified.
15 . The method of claim 13 , wherein the at least one light source comprises a fiber scanning display.
16 . The method of claim 13 , wherein the projecting includes projecting the light with an adaptable optics element such that the image is formed on a targeted portion of the eye.
17 . The method of claim 16 , wherein the adaptable optics element comprises a variable focus element.
18 . The method of claim 17 , wherein the variable focus element comprises a membrane mirror.
19 . The method of claim 13 , wherein the wearable augmented reality device further comprising a waveguide stack comprising a plurality of waveguides, and wherein the projecting includes projecting the light from different depth planes.
20 . The method of claim 19 , wherein the waveguide stack further comprises one or more lenses.