WO2022013410A2 - Method and system for evaluating visual accuity of a person - Google Patents
Method and system for evaluating visual accuity of a person Download PDFInfo
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- WO2022013410A2 WO2022013410A2 PCT/EP2021/069909 EP2021069909W WO2022013410A2 WO 2022013410 A2 WO2022013410 A2 WO 2022013410A2 EP 2021069909 W EP2021069909 W EP 2021069909W WO 2022013410 A2 WO2022013410 A2 WO 2022013410A2
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- mobile device
- user
- distance
- screen
- front camera
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/02—Subjective types, i.e. testing apparatus requiring the active assistance of the patient
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/0016—Operational features thereof
- A61B3/0033—Operational features thereof characterised by user input arrangements
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/0016—Operational features thereof
- A61B3/0041—Operational features thereof characterised by display arrangements
- A61B3/005—Constructional features of the display
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/02—Subjective types, i.e. testing apparatus requiring the active assistance of the patient
- A61B3/028—Subjective types, i.e. testing apparatus requiring the active assistance of the patient for testing visual acuity; for determination of refraction, e.g. phoropters
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/02—Subjective types, i.e. testing apparatus requiring the active assistance of the patient
- A61B3/028—Subjective types, i.e. testing apparatus requiring the active assistance of the patient for testing visual acuity; for determination of refraction, e.g. phoropters
- A61B3/032—Devices for presenting test symbols or characters, e.g. test chart projectors
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T3/00—Geometric image transformations in the plane of the image
- G06T3/40—Scaling of whole images or parts thereof, e.g. expanding or contracting
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T7/00—Image analysis
- G06T7/50—Depth or shape recovery
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B90/00—Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups A61B1/00 - A61B50/00, e.g. for luxation treatment or for protecting wound edges
- A61B90/06—Measuring instruments not otherwise provided for
- A61B2090/061—Measuring instruments not otherwise provided for for measuring dimensions, e.g. length
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T2207/00—Indexing scheme for image analysis or image enhancement
- G06T2207/30—Subject of image; Context of image processing
- G06T2207/30004—Biomedical image processing
Definitions
- the disclosure relates to the evaluation of the visual acuity of a person.
- the disclosure relates to a method for evaluating the visual acuity of a person using a mobile device.
- the disclosure further relates to a mobile device for measuring the visual acuity of a person.
- the disclosure relates to a display system for use to determine the visual acuity of a person.
- the naked eye visual acuity or corrected visual acuity of a person is evaluated by eye- care professionals. As such, it requires setting up an appointment with an ophthalmologist which makes it difficult to regularly and frequently check its visual acuity.
- Some methods of the prior art propose self-measurement solutions, for example using a smartphone application.
- the measurement is performed at arm’s length while the user hand-held the smartphone which limit the evaluation of the visual acuity to near vision.
- Other smartphone applications generally proposed for professional use, allows measuring visual acuity of a person in far vision but require the intervention of a second person, generally the eye care professional.
- the disclosure proposes a method for evaluating the visual acuity of a person using a mobile device comprising at least a front camera and a screen, the method comprising: a user positioning step during which the user of a mobile device positions himself in front of a mirror at a predefined distance d/2; a mobile device positioning step during which the mobile device is positioned with the front camera of the mobile device facing the mirror; a distance measuring step during which a distance d between the front camera of the mobile device and a virtual image of the mobile device in the mirror is measured; a displaying step during which the screen of the mobile device displays optotypes; and an evaluation step during which the visual acuity of the user is evaluated.
- the method according to the disclosure allows to evaluate the visual acuity of a person easily and accurately.
- the evaluation according to the method can be performed at home by the user.
- An optometrist at a remote location can then check if the test is precisely done.
- the user is no longer needed to go to an eyecare professional center to perform visual acuity evaluation test. This is more convenient for the user which has no more transportation or time constraints to perform the evaluation.
- the mobile device positioning step the mobile device is positioned vertically over an eye of the user; and/or during the evaluation step, the binocular visual acuity of the user is measured and/or during the evaluation step, the monocular visual acuity of the user is measured and/or the method further comprises prior to the displaying step, a distance controlling step during which the measured distance d is compared to the predefined distance d/2; and/or the method further comprises a notification step during which a notification is sent to the user based on the comparison of the measured distance d and the predefined distance d/ 2; and/or the notification indicates that the person is too close to the mirror when the measured distance d is smaller than or equal to 2 x (d/2)-Al; and/or the notification indicates that the person is too far to the mirror when the measured distance d is greater than or equal to 2 x (d/2)+A2; and/or the size of the optotypes displayed during the displaying step is adapted
- the disclosure further relates to a computer-readable storage medium having a program recorded thereon, wherein the program makes the computer execute a method according to the disclosure.
- the disclosure also relates to a non-transitory program storage device, readable by a computer, tangibly embodying a program of instructions executable by the computer to perform a method comprising: measuring a distance d between a front camera of a mobile device and a mirror facing the front camera of the mobile device; displaying optotypes on a screen of the mobile device; receiving inputs from a user of the mobile device, and evaluating a visual acuity of the user based on the received inputs.
- the disclosure further relates to mobile device comprising a screen; at least one front camera; a memory configured to store sequences of instructions; and a processor coupled to the memory, the screen and the at least one camera, wherein the processor is configured to execute the sequences of instructions to: measure a distance d between the front camera and a mirror facing the front camera; display on the screen of the mobile device optotypes; receive inputs from a user of the mobile device; and evaluate a visual acuity of the user based on the received inputs.
- the disclosure relates to display system for use to determine the visual acuity of a person, the display system comprising: controlling means for identifying and processing input data, the input data being received from the person; displaying means for displaying at least one optotype and at least one movable cursor, the optotype being oriented in a direction selected from a list of predefined orientation, and the movable cursor being configured to be displayed in any of the directions of the list of predefined directions, the orientation of the movable cursor displayed being based on the inputs processed by the controlling means.
- the display system provides a simple and accessible way to implement the method for evaluating a visual acuity of a person.
- the mobile device system may comprise the display system.
- the displaying means may be formed by the screen of the mobile device.
- the mobile device may further comprise the controlling means of the display system, said controlling means being configured for identifying and processing input data, the input data being received from the person.
- Figure 1 illustrates a chart-flow embodiment of the method for evaluating the visual acuity of a person using a mobile device
- Figures 2 illustrates a person measuring his visual acuity according to an embodiment of the disclosure
- Figures 3a and 3b illustrate a person measuring his visual acuity according to an embodiment of the disclosure
- Figures 4 illustrates an example of mobile device according to an embodiment of the disclosure
- Figure 5 illustrate a person measuring his visual acuity according to an embodiment of the disclosure.
- Figure 6 illustrates a display system for use to determine the visual acuity of a person according to an embodiment of the disclosure.
- the disclosure relates to a method for evaluating the visual acuity of a person using a mobile device 2.
- Visual acuity commonly refers to the clarity of vision, but technically rates a person's ability to recognize small details with precision.
- the visual acuity may be evaluated for a user with or without his glasses.
- a mobile device is a portable computer device that can be used independently, and small enough to be easily carried by the user and operated in the hand.
- the mobile device may be a smartphone, a phablet, or a tablet.
- the mobile device will be exemplified using a smartphone in the following disclosure.
- a person of ordinary skill in the art would be able to easily adapt the following examples to any other mobile device as defined by the present disclosure.
- the mobile device 2 comprises at least a screen 4 and a front camera 6.
- the screen 4 and the front camera 6 are positioned on the same face of the mobile device 2.
- the mobile device 2 further comprises a memory 8 configured to store sequences of instructions and a processor 12 coupled to the memory 10 and configured to execute the sequences of instructions stored in the memory 10.
- the method for evaluating the visual acuity of a person comprises a user positioning step S2.
- the user of the mobile device positions himself in front of a mirror at a predefined distance d/2 from the mirror.
- the user is positioned at a predefined distance d/2 facing the mirror 20 to see the virtual images created by the light reflected on the surface of the mirror.
- the mirror 20 is a plane mirror.
- the distance between said user and the virtual image he sees in the mirror may be defined as equal to two times the predefined distance d/2.
- the predefined distance d/2 is greater than or equal to 1.5m, preferably greater than or equal to 2.0m.
- the predefined distance d/2 is greater than or equal to 2.5m to better relax accommodation.
- the predefined distance d/2 may be smaller than or equal to 0.5m, preferably greater than or equal to 0.25m. With such conditions, the method of the disclosure evaluates the visual acuity of the user for near vision.
- the method for evaluating the visual acuity of a person further comprises a mobile device positioning step S4.
- the user positions the mobile device 2 to have the front camera 6 facing the mirror.
- the user positions the mobile device 2 with the front camera 6 facing the mirror 20.
- the mobile device 2 is positioned vertically to be substantially parallel to the plane of the mirror 20. More preferably, the mobile device 2 is positioned as close as possible to the head of the user.
- the mobile device 2 is positioned vertically over one eye of the user and the visual acuity of the other eye is evaluated.
- having the mobile device covering the eye of the user allow to facilitate evaluating the monocular visual acuity of the non-covered eye of the user.
- the method for evaluating the visual acuity of a person further comprises a distance measuring step S8.
- the distance measuring step S8 the distance d between the front camera of the mobile device and a virtual image of the mobile device is measured.
- the distance d between the front camera of the mobile device 2 and the virtual image 2’ created by the mirror 20 on which said mobile device is reflected may be measured using the mobile device 2 itself.
- the method for evaluating the visual acuity of a person may comprise a mobile device data receiving step SO during which mobile device data are received.
- the mobile device data comprise at least screen data relating at least to the physical size of the screen of the mobile device and at least camera data relating at least to the angular resolution of the front camera’s pixel.
- the screen data enables to adapt the display of optotypes and more particularly, the positioning and dimension of the optotypes based on the physical size of screen of the mobile device.
- the screen data enables to determine a size of an element to be displayed, having a known dimension, during the distance measuring step S8.
- the element displayed during the distance measuring step is an optotype.
- screen’s physical size expressed as w s x h s can be obtained from any mobile device 2 based on the resolution of the screen m s x n s and the pixel density of the screen D p s (expressed in dots per inches or dpi).
- the resolution and the pixel density of the screen can be easily obtained from the mobile device’s operating system (OS) or from manufacturer data.
- OS operating system
- the calculation of the screen’s physical size of a mobile device 2 is exemplified for a specific smartphone S with a screen resolution m s x n s equal to 1440 x 3040 and a pixel density D p s equal to 550 dpi.
- a physical screen’s width ws equal to 66.5mm and a physical screen’s height equal to 140.4mm.
- the physical screen’s size can be calculated from the diagonal physical size of the screen and the resolution.
- the angular resolution of the front camera’s pixel p c, e can be obtained from a front camera’s pixel size p c (expressed in meters) and a focal length f c .
- the front camera’s pixel size and the focal length can be obtained from the mobile device’s operating system (OS) or from manufacturer data. Knowing the values p c and f c , the value p c, e can be determined using the following equation:
- the display of an element, having a known dimension, on the screen of a mobile device having a front camera facing a mirror, enables to estimate the distance d, during the distance measuring step S8, based on the angular resolution of the front camera.
- the element displayed during the distance measuring step is an optotype.
- the calculation of the angular resolution of the front camera’s pixel of a mobile device 2 is exemplified for the specific smartphone S with a front camera pixel’s size p c equal to 1.22 pm and a focal length equal to 3.34mm.
- equation (2) we obtain angular resolution of the front camera’s pixel p c, e equal to 0.021°.
- the camera’s pixel physical size p c is considered to have the same value in horizontal and vertical directions.
- the reasoning could be easily extended if this condition is not true.
- the value f c can be replaced by the real distance between the lens and the camera’s sensor of the mobile device since the specified working distance of the front camera is likely not set at infinity.
- equation (2) leads to enough accuracy.
- the real distance between the lens and the camera’s sensor can be calculated by assuming that the camera is set for a finite distance between 0.5m and 1.0m, preferably at 0.8m.
- the distance d between the front camera of the mobile device 2 and the virtual image created by the mirror 20 on which said mobile device is reflected may be measured based on the mobile device data and data received by the front camera 6 of the mobile device 2.
- the measurement of the distance according to the disclosure does not require a step of calibration.
- a direct measurement of the distance d between the front camera and the virtual image of the element is performed based one the known size of the element displayed on the screen and the mobile device data.
- the distance d can be continuously estimated during the visual acuity evaluation method, knowing the width of the mobile device screen and adapting the dimension of the displayed optotype based on the mobile device screen width.
- the distance d can be continuously estimated, as the dimension of the displayed optotype and the mobile device data are known.
- the optotype size maybe defined based on the width of the screen of the mobile device.
- the method for evaluating the visual acuity of a person may further comprise a camera data receiving step S6 during which the front camera 6 of the mobile device 2 obtains data related to the scene it is facing.
- the front camera 6 of the mobile device 2 captures images and/or videos of the scene, and particularly of the mirror and of the virtual image formed by the mirror facing the front camera.
- the images and/or videos may further be processed to extract data relating to the size of the virtual image of the screen of the mobile device reflected by the mirror.
- the width of the screen of the virtual mobile device reflected by the mirror may be expressed as a number of pixels m c.ci on a picture/video recorded by the front camera.
- the height of the screen of the virtual mobile device reflected by the mirror may be expressed as a number of pixels n c.ci on a picture/video recorded by the front camera.
- the distance d between the front camera of the mobile device 2 and the virtual image created by the mirror 20 can be determined using the following equations:
- the distance d may be measured by displaying on the screen 4 of the mobile device 2, different shapes of predefined known dimensions. Knowing the dimension of the displayed shapes, the distance d can be measured using equations (2) to (4).
- the method for evaluating the visual acuity of a person may further comprise a parallelism measuring step during which the parallelism of the mobile device 2 in relation to the mirror 20 is measured.
- the parallelism of the mobile device may be measured using the IMU of the mobile device.
- the parallelism of the mobile device 2 may be measured by displaying on the screen 4 of the mobile device 2, a predefined shape, for example a rectangle and comparing the displayed shape with the shape of the virtual image created by the mirror 20. For example, when the mobile device 2 is not parallel to the mirror 20, a rectangle displayed on the screen and reflected by the mirror 20 will generates a trapezoidal shape.
- the method for evaluating the visual acuity of a person may further comprise a distance controlling step S10.
- the distance controlling step the measured distance d between the front camera of the mobile device 2 and the virtual image created by the mirror 20 is compared to the predefined distance d/2.
- the method for evaluating the visual acuity of a person may further comprise a parallelism controlling step during which the shape of the virtual image generated by the mirror 20 is compared to a predefined shape displayed by the screen 4.
- the method for evaluating the visual acuity of a person may further comprise a notification step SI 2.
- a notification is sent to the user based on the comparison of the measured distance d and the predefined distance d/2.
- the notification may indicate that the user is too close to the mirror.
- a deviation A1 may be considered.
- the deviation A1 represents a tolerance value of the predefined distance d/2.
- the notification may indicate that the user is too close to the mirror.
- the deviation A1 may correspond to a variation of 20%, preferably 10% of the predefined distance d/2.
- the notification may indicate that the user is too far to the mirror.
- a deviation D2 may be considered.
- the deviation D2 represents a tolerance value of the predefined distance d/2.
- the notification may indicate that the user is too close to the mirror.
- the deviation D2 may correspond to a variation of 20%, preferably 10% of the predefined distance d/2.
- a maximal deviation AD from the value of the predefined distance d/2 may be defined.
- the notification may indicate that the user is too close to the mirror.
- the notification may indicate that the user is too far from the mirror.
- the maximal deviation AD may correspond to a variation of 20%, preferably 10%of the predefined distance d/2.
- a notification may be sent to the user based on the comparison of the shape of the virtual image generated by the mirror 20 and a predefined shape displayed by the screen 4. For example, when the variation between the compared shapes is too important, for example a variation of 10%, the notification may indicate that the mobile device 2 is not parallel to the mirror 20.
- the method for evaluating the visual acuity of a person further comprises a displaying step SI 4.
- the displaying step is performed after the distance controlling step and the notification step.
- optotypes are displayed on the screen 4 of the mobile device 2.
- optotypes refer to standardized symbols commonly used to test the vision of a person.
- the optotypes displayed on the screen 4 of the mobile 2 are reflected on the mirror which generates virtual images of the optotypes.
- a symmetry is applied to the displayed optotype.
- the user will perceive the virtual images of the displayed optotypes with the correct orientation.
- the displayed optotypes may be Landolt C or Snellen E or any other standardized optotypes, letters, or drawings.
- the optotypes may be displayed one by one on the screen 4 of the mobile device during the displaying step.
- optotypes may be displayed line by line with multiple optotype on each line.
- the size and/or orientation and/or contrast of each optotype may vary during the displaying step.
- multiple lines of optotypes may be displayed at the same time, with optotypes of different size and/or orientation and/or contrast on each line, for example ETDRS charts like or 2-lines VR800 procedures.
- the displayed optotypes may correspond to words or short sentences.
- the size of the displayed optotypes may be adapted based on the measured distance d.
- the size of the displayed optotypes may be determined based on the predefined distance d/2 from the mirror.
- the angular size of the displayed optotypes on the screen 4 of the mobile device 2 may be adapted based on the measured distance d.
- the optotype considered for the following calculation is a Landolt ring with an aperture so that the virtual image at a distance d of the displayed Landolt ring has an angular size of DQ.
- the physical size As of the aperture displayed on the screen is given by the following equation:
- the distance d between the front camera and the mirror is frequently measured during the displaying step.
- the distance d may be measured before displaying a different optotype or series of optotypes.
- the distance d between the front camera and the mirror is measured in real time.
- it allows updating regularly, for example in real time, the size and/or the angular size of the displayed optotypes on the screen of the mobile device, thereby providing a more accurate evaluation of the visual acuity of the person.
- the method for evaluating the visual acuity of a person further comprises an evaluation step SI 8. During the evaluation step, the visual acuity of the user is evaluated.
- the method for evaluating the visual acuity of a person may further comprise, prior to the evaluation step, an input receiving step SI 6.
- indications are received from the user in response to the displayed optotype.
- the indication of the user may be received using speech recognition and/or gesture recognition and/or mobile device movement.
- the user may identify the letter or read the sentences.
- These indications received from the user may be obtained using speech recognition, for example through a microphone of the mobile device.
- the user may indicate the direction of the aperture he perceived.
- the indication relating to the direction of the aperture perceived by the user may be obtained by speech recognition using a microphone of the mobile device, mobile device movement using an IMU of the mobile device or the front camera of the mobile device, and head movement and/or arm movement using the front camera of the mobile device.
- the mobile device 2 may further comprise physical plus and minus volume buttons 8a and 8b.
- the plus volume button 8a and the minus volume button 8b are disposed on the side of the mobile device 2, for example on the left side of the mobile device 2 when facing the screen.
- the plus and minus volume buttons 8a and 8b may be used by the user to provide an indication during the input receiving step SI 6.
- the displayed optotypes may be Landolt-C with an aperture having different directions.
- the displayed optotypes may further comprise a movable cursor 50.
- the movable cursor may be for example, a circular art that move along the different possible directions of the aperture of the Landolt-C.
- the user may utilize the physical plus and minus buttons 8a and 8b of the mobile device to have the direction of the movable cursor 50 aligned with the perceived aperture of the Landolt-C.
- the chosen position of the cursor may then be validated after a short waiting period, for example comprised between 0.5sec and 2.0sec, preferably after a waiting period of 1.Osec.
- the visual acuity of the user may be evaluated during the evaluation step based on the received indications from the user.
- a first series various randomized optotypes for example corresponding to a first level of visual acuity, are presented to the user.
- the evaluation step SI 8 the indications received by the user are evaluated and a score corresponding to the accuracy of the indications may be attributed to the user. If the user reaches a sufficient score, the displaying step SI 4, input receiving step SI 6 and evaluation step SI 8 may be repeated with a second series of various randomized optotypes, corresponding to a second level of visual acuity.
- the disclosure further relates to a computer-readable storage medium having a program recorded thereon, wherein the program makes the computer execute a method according to the disclosure.
- the disclosure also relates to a non-transitory program storage device, readable by a computer, tangibly embodying a program of instructions executable by the computer to perform the method according to the disclosure.
- the method comprises the steps of measuring a distance d between a front camera of a mobile device and a mirror facing the front camera of the mobile device, displaying optotypes on a screen of the mobile device, receiving inputs from a user of the mobile device, and evaluating a visual acuity of the user based on the received inputs.
- the disclosure further relates to a mobile device 2 comprising at least a screen 4, at least one front camera 6, the screen and the front camera being placed on the same face of the mobile device, a memory 10 (not represented) configured to store sequences of instructions, and a processor 12 (not represented) coupled to the memory 10, the at least one screen 4 and the at least one front camera 6.
- the processor 12 is configured to execute the sequences of instructions to measure a distance d between the front camera of a mobile device and a mirror facing the front camera of the mobile device, display optotypes on the screen of the mobile device, receive inputs from a user of the mobile device, and evaluate a visual acuity of the user based on the received inputs.
- the disclosure further relates to a display system for use to determine the visual acuity of a person.
- the display system is a system comprising a graphical user interface.
- the display system comprises controlling means.
- the controlling means allow identifying and processing input data received from the user of the display system.
- the display system further comprises displaying means.
- the displaying means allow displaying at least one optotype and at least one movable cursor.
- the at least one optotype is oriented in a direction selected from a list of predefined orientation.
- the movable cursor is configured to be positioned and displayed in any of the directions of the list of predefined directions. The position of the displayed movable cursor is determined based on the inputs received from the user, and identified and processed by the controlling means.
- Embodiments of the present invention may include apparatuses for performing the operations herein.
- This apparatus may be specially constructed for the desired purposes, or it may comprise a general-purpose computer or Digital Signal Processor ("DSP") selectively activated or reconfigured by a computer program stored in the computer.
- DSP Digital Signal Processor
- Such a computer program may be stored in a computer readable storage medium, such as, but is not limited to, any type of disk including floppy disks, optical disks, CD-ROMs, magnetic-optical disks, read-only memories (ROMs), random access memories (RAMs) electrically programmable read-only memories (EPROMs), electrically erasable and programmable read only memories (EEPROMs), magnetic or optical cards, or any other type of media suitable for storing electronic instructions, and capable of being coupled to a computer system bus.
- a computer readable storage medium such as, but is not limited to, any type of disk including floppy disks, optical disks, CD-ROMs, magnetic-optical disks, read-only memories (ROMs), random access memories (RAMs) electrically programmable read-only memories (EPROMs), electrically erasable and programmable read only memories (EEPROMs), magnetic or optical cards, or any other type of media suitable for storing electronic instructions, and capable of being coupled to a computer system bus.
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Abstract
Description
Claims
Priority Applications (7)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CA3185092A CA3185092A1 (en) | 2020-07-15 | 2021-07-15 | Method and system for evaluating visual accuity of a person |
| EP21745788.6A EP4181760A2 (en) | 2020-07-15 | 2021-07-15 | Method and system for evaluating visual accuity of a person |
| JP2023502809A JP2023533839A (en) | 2020-07-15 | 2021-07-15 | Method and system for evaluating human vision |
| CN202180061044.3A CN116171123A (en) | 2020-07-15 | 2021-07-15 | Method and system for assessing visual acuity of a human |
| US18/005,271 US20230255474A1 (en) | 2020-07-15 | 2021-07-15 | Method and system for evaluating visual accuity of a person |
| KR1020237001181A KR102876125B1 (en) | 2020-07-15 | 2021-07-15 | Method and system for assessing human vision |
| BR112023000418A BR112023000418A2 (en) | 2020-07-15 | 2021-07-15 | METHOD AND SYSTEM FOR ASSESSING A PERSON'S VISUAL ACUITY |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP20315350 | 2020-07-15 | ||
| EP20315350.7 | 2020-07-15 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2022013410A2 true WO2022013410A2 (en) | 2022-01-20 |
| WO2022013410A3 WO2022013410A3 (en) | 2022-03-03 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2021/069909 Ceased WO2022013410A2 (en) | 2020-07-15 | 2021-07-15 | Method and system for evaluating visual accuity of a person |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US20230255474A1 (en) |
| EP (1) | EP4181760A2 (en) |
| JP (1) | JP2023533839A (en) |
| KR (1) | KR102876125B1 (en) |
| CN (1) | CN116171123A (en) |
| BR (1) | BR112023000418A2 (en) |
| CA (1) | CA3185092A1 (en) |
| WO (1) | WO2022013410A2 (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2023283217A3 (en) * | 2021-07-07 | 2023-02-23 | Warby Parker Inc. | Systems and methods for vision test and uses thereof |
| EP4437938A1 (en) | 2023-03-27 | 2024-10-02 | Essilor International | Device and method for estimating a refractive error from measured visual acuity |
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| WO2025049559A1 (en) * | 2023-08-28 | 2025-03-06 | Crest Trials, Inc. | Method and system for facilitating compliance with study protocol |
| USD1105124S1 (en) * | 2024-08-02 | 2025-12-09 | Essilor International | Display screen or portion thereof with graphical user interface |
| USD1106243S1 (en) * | 2024-08-02 | 2025-12-16 | Essilor International | Display screen or portion thereof with graphical user interface |
| USD1106244S1 (en) * | 2024-08-02 | 2025-12-16 | Essilor International | Display screen or portion thereof with animated graphical user interface |
| USD1106242S1 (en) * | 2024-08-02 | 2025-12-16 | Essilor International | Display screen or portion thereof with animated graphical user interface |
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| GB830141A (en) * | 1956-02-03 | 1960-03-09 | Harry Maurice Felix Asher | Improvements in instruments for testing vision |
| RU2210972C1 (en) * | 2001-12-21 | 2003-08-27 | Закрытое акционерное общество "Научно-производственное предприятие Центр "Реабилитация" | Device for carrying out screening vision function diagnosis |
| AU2010247901B2 (en) * | 2009-05-09 | 2015-05-21 | Vital Art And Science, Llc | Shape discrimination vision assessment and tracking system |
| US9033508B2 (en) * | 2009-05-09 | 2015-05-19 | Vital Art And Science, Llc | Handheld vision tester and calibration thereof |
| US20140354949A1 (en) * | 2013-05-31 | 2014-12-04 | Sherwyne R. Bakar | Interactive platform for health assessment |
| CN110251066B (en) * | 2013-06-06 | 2022-05-27 | 6超越6视觉有限公司 | System and method for measuring refractive error of eye based on subjective distance measurement |
| DE202013010668U1 (en) * | 2013-11-28 | 2014-03-13 | Ipro Gmbh | Software for controlling a 3D-monitor for the subjective refraction (visual acuity test) for monocular refraction under binocular conditions in a 3D environment |
| US20170258319A1 (en) * | 2014-11-27 | 2017-09-14 | Koninklijke Philips N.V. | System and method for assessing eyesight acuity and hearing ability |
| EP3332692B1 (en) * | 2015-08-03 | 2020-09-23 | National University Corporation Ehime University | Visual field measuring method and visual field measuring apparatus |
| EP3295862B1 (en) * | 2016-09-15 | 2019-04-03 | Essilor International | Online determination of a customer's prescription knowing his previous prescription and using a measurement or a model of the evolution of its values |
| FR3059538B1 (en) * | 2016-12-07 | 2023-10-27 | Essilor Int | METHOD FOR MEASURING REFRACTION, METHOD FOR OPTICAL DESIGN OF AN OPHTHALMIC LENS, OPHTHALMIC LENS, METHOD FOR ASSISTING IN THE SELECTION OF A FRAME AND PAIR OF GLASSES |
| NL2019319B1 (en) * | 2017-07-21 | 2019-02-06 | Easee Health B V | A method of performing an eye examination test. |
| EP3542704A1 (en) * | 2018-03-22 | 2019-09-25 | Tilak Healthcare | Visual testing using mobile devices |
| CN108478185A (en) * | 2018-04-27 | 2018-09-04 | 安佳怡 | True pseudo-myopia detecting system |
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- 2021-07-15 KR KR1020237001181A patent/KR102876125B1/en active Active
- 2021-07-15 CA CA3185092A patent/CA3185092A1/en active Pending
- 2021-07-15 WO PCT/EP2021/069909 patent/WO2022013410A2/en not_active Ceased
- 2021-07-15 CN CN202180061044.3A patent/CN116171123A/en active Pending
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- 2021-07-15 BR BR112023000418A patent/BR112023000418A2/en unknown
- 2021-07-15 JP JP2023502809A patent/JP2023533839A/en active Pending
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Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2023283217A3 (en) * | 2021-07-07 | 2023-02-23 | Warby Parker Inc. | Systems and methods for vision test and uses thereof |
| US12499542B2 (en) | 2021-07-07 | 2025-12-16 | Warby Parker Inc. | Systems and methods for vision test and uses thereof |
| EP4437938A1 (en) | 2023-03-27 | 2024-10-02 | Essilor International | Device and method for estimating a refractive error from measured visual acuity |
| WO2024199869A1 (en) | 2023-03-27 | 2024-10-03 | Essilor International | Device and method for estimating a refractive error from measured visual acuity |
Also Published As
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|---|---|
| CN116171123A (en) | 2023-05-26 |
| KR102876125B1 (en) | 2025-10-27 |
| WO2022013410A3 (en) | 2022-03-03 |
| EP4181760A2 (en) | 2023-05-24 |
| CA3185092A1 (en) | 2022-01-20 |
| JP2023533839A (en) | 2023-08-04 |
| KR20230038200A (en) | 2023-03-17 |
| US20230255474A1 (en) | 2023-08-17 |
| BR112023000418A2 (en) | 2023-01-31 |
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