IP Library › Granted Patent US 12,133,682
Granted Patent B2
US 12,133,682 · App. 17/273,667 · Granted Nov 5, 2024

Method and system for virtual reality-based visual field inspection

Inventor: Sang Jin Jeon (Seongnam-Si, KR)
Assignee: M2S CO., LTD
A61B3/024A61B3/0033A61B3/0041A61B3/0091A61B3/063A61B5/162G02B27/01G06F3/011A61B3/005A61B3/10A61B3/113G06F3/013
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Quick Facts
Patent No.
US 12,133,682
App. No.
17/273,667
Granted
Nov 5, 2024
Kind
B2
Abstract

A method for virtual reality-based visual field inspection according to an embodiment is a method that performs a visual field inspection on a head-mounted display. The method includes: outputting a background including a background image and a focus point image; outputting an indicator on the background; and sensing user input from an examinee according to output of the indicator.

Claims (59)

1. A method for virtual reality-based visual field inspection in which a processor of a head-mounted display performs a visual field inspection, the method comprising:

outputting a background including a background image and a focus point image;

outputting an indicator in the background;

sensing user input from an examinee according to output of the indicator,

wherein the outputting of an indicator in the background includes determining a position where the indicator will be output in the background, outputting the indicator with predetermined brightness at the determined position, and continuously increasing the brightness of the output indicator,

measuring a reaction speed of the examinee,

wherein the measuring of the reaction speed of the examinee includes calculating the reaction speed by outputting an indicator for measuring the reaction speed with predetermined brightness at a predetermined position in the background, and then sensing user input; and

acquiring a visual field inspection result on the basis of the reaction speed, an output position of the indicator, a point in time of outputting the indicator, and a point in time of the user input.

2. The method of claim 1 , wherein the continuously increasing of the brightness of the output indicator includes increasing the brightness of the indicator by controlling transparency of a pixel showing the indicator.

3. The method of claim 1 , wherein the increasing of the brightness of the indicator by controlling transparency of a pixel showing the indicator includes:

outputting the indicator while setting the transparency of the pixel showing the indicator at the point in time of outputting as a first value; and

gradually increasing the brightness of the indicator by uniformly increasing the transparency of the pixel from the first value as time passes.

4. The method of claim 1 , the continuously increasing of the brightness of the output indicator includes:

increasing the brightness of the indicator at a first speed for a first period after the point in time of outputting; and

increasing the brightness of the indictor at a second speed smaller than the first speed for a second period after the first period.

5. The method of claim 1 , wherein the outputting of an indicator in the background further includes:

stooping output of the output indicator, and determining a next position where an indicator is output in the background, when the user input is sensed while the brightness of the indicator is increased.

6. The method of claim 1 , wherein the outputting of a background including a background image and a focus point image includes displaying a first background and the indicator in a left eye area of a display unit and simultaneously displaying only a second background that is the same as the first background in a right eye image of the display unit.

7. The method of claim 1 , wherein the calculating of the reaction speed by outputting an indicator for measuring the reaction speed with predetermined brightness at a predetermined position in the background, and then sensing user input includes:

determining one position of a first position at the left upper end, a second position at the right upper end, a third position at the left lower end, and a fourth position at the right lower end with respect to the focus point image that is an origin; and

outputting the indicator for measurement at the determined position.

8. The method of claim 1 , wherein the calculating of the reaction speed by outputting an indicator for measuring the reaction speed with predetermined brightness at a predetermined position in the background, and then sensing user input includes:

sequentially outputting the indicator for measurement at a plurality of positions of a first position at the left upper end, a second position at the right upper end, a third position at the left lower end, and a fourth position at the right lower end with respect to the focus point image that is an origin; and

determining the reaction speed of the user on the basis of a time difference between the point in time of outputting a plurality of the indicators for measurement and the point in tome of user input.

9. The method of claim 1 , wherein acquiring of a visual field inspection result on the basis of the reaction speed, an output position of the indicator, a point in time of outputting the indicator, and a point in time of the user input includes:

calculating a light sensitivity threshold for the position of the indicator by applying the reaction speed determined at the point in time of user input; and

acquiring a graph showing a light sensitivity threshold calculated for each display position of the indicator as visual field inspection result information.

10. A method for virtual reality-based visual field inspection in which an ophthalmic examination console device performs a visual field inspection by controlling a head-mounted display, the method comprising:

providing an ophthalmic examination setting interface for inputting user setting for an ophthalmic examination;

performing a visual field inspection when the visual field inspection is selected from the interface;

controlling the head-mounted display to output a virtual reality image for the visual field inspection;

acquiring measurement data according to the virtual reality image from the head-mounted display;

outputting a visual field inspection progress image for an examiner for the visual field inspection by controlling a display device,

wherein the controlling of the head-mounted display to output a virtual reality image for the visual field inspection includes:

outputting a background including a background image and a focus point image; and

outputting an indicator in the background, and

the outputting of the indicator in the background includes:

determining a position where an indicator will be output in the background;

outputting an indicator with predetermined brightness at the determined position; and

continuously increasing the brightness of the output indicator;

measuring a reaction speed of the examinee,

wherein the measuring of the reaction speed of the examinee includes calculating the reaction speed by outputting an indicator for measuring the reaction speed with predetermined brightness at a predetermined position in the background, and then sensing user input; and

acquiring a visual field inspection result on the basis of the reaction speed, an output position of the indicator, a point in time of outputting the indicator, and a point in time of the user input.

11. The method of claim 10 , wherein the outputting of a visual field inspection progress image for an examiner by controlling a display device includes outputting progress information of a visual field inspection that is progressed in real time, and

the visual field inspection progress information includes at least one or more of personal information of the examinee, a visual field inspection VR image, the inspection data, analysis values according to the inspection data, and a real-time visual field inspection result value.

12. The method of claim 11 , wherein the visual field inspection VR image includes a graphic image obtained by converting a 3D VR image output from the head-mounted display into 2D.

13. The method of claim 12 , wherein the outputting of a visual field inspection progress image for an examiner by controlling a display device further includes:

outputting the graphic image obtained by converting a 3D VR image for a visual field inspection into 2D on the display device; and

providing an examiner with an interface controlling the 3D VR image of the head-mounted display during the visual field inspection.

14. The method of claim 13 , wherein the providing of an examiner with an interface controlling the 3D VR image of the head-mounted display during the visual field inspection includes changing at least one or more of a shape, a size, brightness, illuminance, chroma, luminosity, depth, or an output position of the 3D VR image.

15. The method of claim 14 , wherein the changing of at least one or more of a shape, a size, brightness, illuminance, chroma, luminosity, depth, or an output position of the 3D VR image includes:

changing a background of the VR image; and

changing an indicator of the VR image.

16. The method of claim 10 , further comprising:

acquiring visual field inspection result information on the basis of the inspection data matched to a VR image for the visual field inspection; and

outputting the acquired visual field inspection result information.

17. The method of claim 16 , wherein the acquiring of visual field inspection result information on the basis of the inspection data includes:

transmitting the inspection data to a visual field inspection service provider server; and

receiving visual field inspection result information based on the inspection data from the visual field inspection service provider server.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2021
From: JEON, SANG JIN
To: M2S CO.,LTD
Reel/Frame 055499/0708 →
Priority Claims (3)
KR 10-2018-0105160 · Sep 4, 2018 · national
KR 10-2018-0105193 · Sep 4, 2018 · national
KR 10-2019-0005151 · Jan 15, 2019 · national
Continuity (1)
Related Publication 20210315453A1 · Oct 14, 2021