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341 results about "Light reflex" patented technology

Automated photorefractive screening

A system and method for locating and modeling eyes in imagery for automated photorefractive screening. The invention includes a digital camera having a lens-mounted flash for obtaining a digital image of the face of an individual, and a suitably programmed processor, such as a general purpose digital computer, for locating an eye of the individual in the digital image, modeling structures in the eye, analyzing the digitized eyes of the individual for eye disease, and providing a recommendation for treatment. In one aspect, the invention includes a system and method for locating a patient's eyes in a digital image that includes each eye as illuminated by a near-axis flash, including automatically finding light reflexes in the digital images as indicative of the location of each eye. Automatically finding light reflexes includes analyzing such light reflexes to determine possible pupil and sclera borders. The invention further includes automatically fitting a corresponding model to such possible pupil and sclera borders, analyzing the model of each eye to determine possible abnormalities in each eye; and outputting a possible diagnosis for each eye based on such analyzing. Other aspects of the invention include measuring retinal reflexes and corneal reflexes from the indicated eye models as an indicator of anomalies in the patient's eyes, and generating a digital image of each of a patient's eyes with a camera having a flash positioned near to a center line of a lens of the camera so as to generate images with bright, sharp light reflexes.
Owner:EYEDX

Method of Determining Reflections of Light

A method of filtering glints by processing an image of a user's cornea to obtain coordinates of desired glints from a configuration of light sources, comprising processing an image, in a first image space, of a user's cornea to determine coordinates of respective multiple positions of glints; and iteratively: selecting from the coordinates a first and a second set of coordinates; computing from the first set of coordinates a transformation that transforms the first set of coordinates into first coordinates of a predetermined spatial configuration; and testing whether the transformation transforms also the second set into positions that match second positions of the predetermined configuration. The coordinates of the desired glints are selected as those first and second sets which are transformed into coordinates that match the first and second coordinates of the predetermined configuration. The method is based on a geometrical homography and is expedient for robust gaze estimation in connection with e.g. eye tracking.
Owner:IT UNIVT I KOEBENHAVN

Cassegrain optical configuration to expand high intensity LED flashlight to larger diameter lower intensity beam

A flashlight in accordance with an embodiment of the present application includes an LED light source, a lens positioned opposite the LED light source, a convex mirror positioned substantially in a center of the inner surface of the lens, wherein light from the LED light source is reflected off the convex mirror back toward the LED light source and a concave mirror positioned opposite the convex mirror to reflect the light from the convex mirror as a wide diameter beam of light out of the flashlight through the lens. The convex mirror maybe replaced by a substantially flat, mirrored section of the lens if desired.
Owner:K RAIN MFG

Backlight module group causing display possessing stereo image-forming function and its light guide board

InactiveCN101290428AWith stereo imaging functionOptical light guidesNon-linear opticsLight reflexLight guide
The invention discloses a back light module which is applied to a display. The back light module comprises at least one light guide and a side light source group, wherein, the light guide is provided with a light reflecting surface, a light emergent surface, a plurality of first grooves and a plurality of second grooves; the light emergent surface is opposite to the light reflecting surface, the plurality of first grooves and the plurality of second grooves are formed on the light reflecting surface; the side light source group at least comprises a first side light source and a second side light source which are respectively arranged at opposite positions of the light guide for generating and transmitting light in the light guide. When the light generated by the side light source group is transmitted in the light guide, the first grooves and the second grooves are respectively used for reflecting the light generated by the first side light source and the second side light source and emitting the light to the light emergent surface. The first grooves and the second grooves respectively reflect the light generated by the first side light source and the second side light source independently, thereby ensuring that the display has the function of imaging three-dimensionally.
Owner:INNOLUX CORP

Vehicular lamp unit and vehicular lamp

A vehicular lamp unit includes a projection lens disposed on an optical axis extending in a vehicular longitudinal direction; a light source disposed rearward of a rear side focal point of the projection lens; a reflector reflecting direct light from the light source forward towards the optical axis; a shade disposed between the projection lens and the light source such that the shade blocks a part of reflected light from the reflector and a part of the direct light from the light source to form a cut-off line of a light distribution pattern; a first reflective surface formed on a tip portion of the reflector such that the first reflective surface reflects a part of the direct light from the light source downward to the front of the shade; and a second reflective surface formed on the front of the shade and below the rear side focal point of the projection lens such that the second reflective surface reflects reflected light from the first reflective surface towards the projection lens so that upward directed radiated light is emitted from the projection lens. The second reflective surface includes a vertically divided upper-side second reflective surface and lower-side second reflective surface. Radiated light provided by the lower-side second reflective surface radiates above radiated light provided by the upper-side second reflective surface.
Owner:KOITO MFG CO LTD
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