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40 results about "Colour Vision" patented technology

Colour Vision (foaled 22 February 2008) is a Thoroughbred racehorse best known for his win in 2012 Ascot Gold Cup. He was bred in France, sired by an American stallion out of a German mare and was trained in Britain and the United Arab Emirates.

Intelligent visual function training method and instrument

The invention discloses an intelligent visual function training method. The intelligent visual function training method comprises the steps that an input module acquires the vision value and the hypochromatopsia degree of a trainee, as well as the ball game name and the training method; a first image generation module, a three-dimensional colour vision training module and a visual training module generate corresponding game scenes respectively according to the information obtained by the input module, and the game scenes are displayed in a display module; a control module compares the information of the trainee obtained by an acquisition module and information of a storage module, controls a second image generation module to generate corresponding game scenes, and also controls the three-dimensional colour vision training module to carry out light conversion, and the results are displayed in the display module, so that the eyes of the trainee are automatically subjected to the vision training following the light movement of a simulation luminous body in the simulation ball-hitting process. The invention further provides an intelligent visual function training instrument which comprises a human body sensor, a racket sensor, a storage, a processor and the display. The method and the instrument have the advantages that the training process is interesting, the training effects are good, and the functions of vision training, body building and entertainment are integrated.
Owner:广东爱唯视医疗科技有限公司

Methods and systems for testing aspects of vision

The invention provides an advantageous system and corresponding method for measuring a plurality of aspects of vision. It is a computer-implemented, user-interactive system which can be used by practitioners such as opticians to measure and assess a patient's visual acuity. It comprises a handheld computing device arranged and configured to present at least one optotype to a user (patient) within a gamified environment. This aspect of the invention provides the advantage that it is more easily used by certain types of patients, such as children, the elderly or those suffering from medical / clinical conditions who would typically struggle to use traditional measuring tools. In a preferred embodiment, the optotype has at least one characteristic selected to facilitate the measurement of at least one, or preferably at least two, aspects of visual function; and the invention is arranged to detect the user's response to the optotype to provide a measurement of at least one or at least two aspects of visual function. Advantageously, this can be achieved in one ‘sitting’. The plurality of aspects of visual function can include visual acuity, central visual field, contrast sensitivity, stereopsis and / or colour vision, detection acuity of vision, resolution acuity of vision (spatial resolution or identification of static of dynamic directionality), recognition acuity of vision, hyperacuity of vision, temporal acuity of vision, spectral acuity of vision. The at least one optotype is repeatedly presented to the user, and the at least one characteristic is altered upon each repetition. The repetition may continue until a threshold or limit is reached. The at least one characteristic relates to the level of detail, contrast, colour, position or movement of the at least one optotype.
Owner:OKULO LTD

Color visual effect device and color visual effect generation method

The invention provides a color visual effect device and a color visual effect generation method. The color visual effect device comprises a multi-primary-color light source, a light source drive circuit, a display panel and a panel drive circuit. The light source drive circuit is connected with the multi-primary-color light source, the panel drive circuit is connected with the display panel, the display panel is arranged above the multi-primary-color light source, and the light source drive circuit and the panel drive circuit are connected together. Each primary color of the multi-primary-color light source occupies one time slot, all the primary colors of the multi-primary-color light source are displayed through the same pixel point of the display panel, and all the primary colors of the multi-primary-color light source are arranged in the time sequence and transmitted to the display panel through the multi-primary-color light source for color synthesis. The structure of a traditional color liquid crystal display screen is changed, a color film filter is omitted, a light source is changed into the multi-primary-color light source, color synthesis is achieved in a time division mode, the display resolution ratio is greatly increased, and the complexity and the cost of production and the process are reduced.
Owner:衷健 +1

Logarithmic light intensifier for use with photoreceptor-based implanted retinal prosthetics and those prosthetics

InactiveUS20070016294A1Maximize electrical stimulationAvoid damageElectrotherapyEye surgeryRetinal ProsthesisPattern perception
This invention is for directly modulating a beam of photons onto the retinas of patients who have extreme vision impairment or blindness. Its purpose is to supply enough imaging energy to retinal prosthetics implanted in the eye which operate essentially by having light (external to the eye) activating photoreceptors, or photoelectrical material. The invention provides sufficient light amplification and does it logarithmically. While it has sufficient output light power, the output light level still remains at a safe level. Most preferred embodiments of this invention provide balanced biphasic stimulation with no net charge injection into the eye. Both optical and electronic magnification for the image, as for example, using an optical zoom lens, is incorporated. Otherwise, it would not be feasible to zoom in on items of particular interest or necessity. Without proper adjustment, improper threshold amplitudes would obtain, as well as uncomfortable maximum thresholds. Therefore, to adjust for these, a way of proper adjustment for the threshold amplitudes and maximum comfortable thresholds is provided. Furthermore, to the extent that the individual stimulation sites in the retina give different color perceptions, upon stimulation, then colors of the viewed scene is correlated with specific stimulation sites to provide a certain amount of color vision.
Owner:SECOND SIGHT MEDICAL PRODS

Methods and Systems for Testing Aspects of Vision

The invention provides an advantageous system and corresponding method for measuring a plurality of aspects of vision. It is a computer-implemented, user-interactive system which can be used by practitioners such as opticians to measure and assess a patient's visual acuity. It comprises a handheld computing device arranged and configured to present at least one optotype to a user (patient) within a gamified environment. This aspect of the invention provides the advantage that it is more easily used by certain types of patients, such as children, the elderly or those suffering from medical/clinical conditions who would typically struggle to use traditional measuring tools. In a preferred embodiment, the optotype has at least one characteristic selected to facilitate the measurement of at least one, or preferably at least two, aspects of visual function; and the invention is arranged to detect the user's response to the optotype to provide a measurement of at least one or at least two aspects of visual function. Advantageously, this can be achieved in one ‘sitting’. The plurality of aspects of visual function can include visual acuity, central visual field, contrast sensitivity, stereopsis and/or colour vision, detection acuity of vision, resolution acuity of vision (spatial resolution or identification of static of dynamic directionality), recognition acuity of vision, hyperacuity of vision, temporal acuity of vision, spectral acuity of vision. The at least one optotype is repeatedly presented to the user, and the at least one characteristic is altered upon each repetition. The repetition may continue until a threshold or limit is reached. The at least one characteristic relates to the level of detail, contrast, colour, position or movement of the at least one optotype.
Owner:OKULO LTD
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