A61B3/032

SYSTEMS AND METHODS FOR VISION TEST AND USES THEREOF

Systems and methods for vision test and uses thereof are disclosed. A method may be implemented on a mobile device having at least a processor, a camera and a display screen. The method may include capturing at least one image of a user using the camera of the mobile device; interactively guiding the user to a predetermined distance from the display screen of the mobile device based on the at least one image; presenting material on the display screen upon a determination that the user is at the predetermined distance from the display screen; and receiving input from the user in response to the material presented on the display screen. The material presented on the display screen may be for assessing at least one characteristic of the user's vision. Mobile devices and non-transitory machine-readable mediums having machine-executable instructions embodied thereon for assessing a user's vision also are disclosed.

APPARATUS AND METHOD FOR DETERMINING THE REFRACTIVE ERROR OF AN EYE
20230210361 · 2023-07-06 ·

Apparatuses or methods for determining a refractive error of an eye are disclosed. An intensity of light coming from an eye is measured, using a detector device, through at least two or at least three different apertures of the aperture device. The refractive error is then calculated based on the measured intensities.

APPARATUS AND METHOD FOR DETERMINING THE REFRACTIVE ERROR OF AN EYE
20230210361 · 2023-07-06 ·

Apparatuses or methods for determining a refractive error of an eye are disclosed. An intensity of light coming from an eye is measured, using a detector device, through at least two or at least three different apertures of the aperture device. The refractive error is then calculated based on the measured intensities.

LIGHT FIELD VISION-BASED TESTING DEVICE, ADJUSTED PIXEL RENDERING METHOD THEREFOR, AND ONLINE VISION-BASED TESTING MANAGEMENT SYSTEM AND METHOD USING SAME

Described are various embodiments of a light field testing device, adjusted pixel rendering method and computer-readable medium therefor, and testing system and method using same. In one embodiment, a light field device, system or computer-implemented method is provided to dynamically adjust user perception, via a light field display, of at least one testing optotype in accordance with a vision-based test, while also providing test administrative guidance via the light field display.

System and method for testing peripheral vision
11540710 · 2023-01-03 ·

Systems and methods according to present principles use touchscreen-based devices such as tablet computers or other computers incorporating touchscreens to both run the test and to receive input/output. It will be understood that any such device may be employed, so long as a display, means for user input, and means for eye tracking, are provided, and so long as its display screen is large enough to effectively test visual field.

METHOD FOR AUTOMATICALLY ASSESSING THE NEAR VISION ACCOMMODATIVE STATE OF A NON-PRESBYOPIC INDIVIDUAL AND ASSOCIATED DEVICE
20220409042 · 2022-12-29 ·

A method for automatically assessing the near vision accommodative state of a non-presbyopic individual, the method being carried out by computer and performed after an assessment of the individual's far vision leading to the generation of a far vision assessment report, includes generating a near vision assessment report optionally including at least one recommendation dependent on the far vision assessment report.

METHOD FOR AUTOMATICALLY ASSESSING THE NEAR VISION ACCOMMODATIVE STATE OF A NON-PRESBYOPIC INDIVIDUAL AND ASSOCIATED DEVICE
20220409042 · 2022-12-29 ·

A method for automatically assessing the near vision accommodative state of a non-presbyopic individual, the method being carried out by computer and performed after an assessment of the individual's far vision leading to the generation of a far vision assessment report, includes generating a near vision assessment report optionally including at least one recommendation dependent on the far vision assessment report.

Eye chart presentation device and ophthalmologic apparatus
11534062 · 2022-12-27 · ·

An eye chart presentation device includes a display to display an eye chart image on a screen, a reflection mirror to reflect light flux emitted from the display, and a convex lens system to form a virtual image of the eye chart image from the light flux reflected by the reflection mirror, the focal length of the convex lens system being greater than 800 mm. The screen is positioned within the focal length of the convex lens system, and the display emits the light flux from a lateral direction with respect to sightline of the eye. The reflection mirror includes a first mirror to directly reflect the light flux from the display and a second mirror to reflect the light flux reflected by the first mirror to the convex lens system.

Eye chart presentation device and ophthalmologic apparatus
11534062 · 2022-12-27 · ·

An eye chart presentation device includes a display to display an eye chart image on a screen, a reflection mirror to reflect light flux emitted from the display, and a convex lens system to form a virtual image of the eye chart image from the light flux reflected by the reflection mirror, the focal length of the convex lens system being greater than 800 mm. The screen is positioned within the focal length of the convex lens system, and the display emits the light flux from a lateral direction with respect to sightline of the eye. The reflection mirror includes a first mirror to directly reflect the light flux from the display and a second mirror to reflect the light flux reflected by the first mirror to the convex lens system.

METHOD FOR TESTING VISUAL CHARACTERISTICS, METHOD FOR DETERMINING CHARACTERISTICS OF OPTICAL FILTER, OPTICAL FILTER, OPTICAL ELEMENT SET FOR TESTING VISUAL CHARACTERISTICS AND TEST IMAGE FOR TESTING VISUAL CHARACTERISTICS

A method for testing visual characteristics includes a providing step of providing a subject with a test image and a changing step of changing an optical element to be placed between the subject and the test image. The test image includes a first image area containing a color to which rod cells are sensitive, and the first image area is placed in such a manner that light coming from the first image area forms an image on a region outside a central fovea of a retina when the subject is looking at a center of the test image. The optical element set includes a plurality of first optical elements configured to transmit light of a first wavelength band to which the rod cells are sensitive within a visible light band. An optical element that the subject does not feel dazzled by the test image is specified.