Eye imaging in head worn computing
View Patent ↗Aspects of the present invention relate to methods and systems for imaging, recognizing, and tracking of a user's eye that is wearing a HWC. Aspects further relate to the processing of images reflected from the user's eye and controlling displayed content in accordance therewith. Aspects further relate to determining health conditions of the user based on eye imaging technologies.
1. A head-worn computer with see-through computer display, comprising:
an eye-imaging camera positioned in the head-worn computer such that the eye imaging camera captures an image of a user's eye;
a display system, positioned in the head-worn computer, adapted to project a digitally generated image, resulting in a projected image, to the user's eye such that a user perceives the projected image, wherein a reflection of the projected image from a front surface of the user's eye is captured by the eye-imaging camera as an eye glint image; and
a processor adapted to determine a sharpness of the eye glint image, wherein the processor is further adapted to adjust a focus of the projected image when the eye glint image is not sharp.
2. The head-worn computer of claim 1 , further comprising an eye illumination system positioned to illuminate the user's eye to form an eye glint light.
3. The head-worn computer of claim 2 , wherein the eye illumination system is mounted proximate a combiner optic that is positioned in front of the user's eye.
4. The head-worn computer of claim 3 , wherein the combiner optic comprises an infrared cutting filter such that infrared light from the eye illumination system does not pass through the combiner optic towards a surrounding environment.
5. The head-worn computer of claim 2 , wherein the eye illumination system produces infrared light.
6. The head-worn computer of claim 2 , wherein the eye illumination system produces visible light.
7. The head-worn computer of claim 1 , further comprising an image source that projects image light along an optical path that is in-line with the user's eye of the user; and wherein the eye-imaging camera is positioned to capture the image of the user's eye through the optical path that is in-line with the user's eye.