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.
1. A head-worn computer, comprising:
a camera adapted to capture a plurality of reflected images of an eye of a person wearing the head-worn computer to determine a plurality of positions of the eye, wherein the head-worn computer comprises a see-through display adapted to display a digitally presented content simultaneously with a view of the surrounding environment, wherein the camera is positioned to capture the reflected images of the eye through a common optical axis with the digitally presented content and the surrounding environment in-line with the eye of the user;
a processor adapted to identify a pupil reaction pattern from the plurality of reflective images of the eye, wherein the processor is further adapted to determine if the pupil reaction pattern matches a pre-defined health condition pattern; and
the processor further adapted to communicate a health alert in response to a match.
2. The head-worn computer of claim 1 , further comprising a lighting system adapted to irradiate the eye with infrared (IR) light during a period of time when the plurality of reflected images are being captured such that the processor identifies the pupil reaction during a known lighting condition.
3. The head-worn computer of claim 1 , wherein the camera is located proximate the see-through display.
4. The head-worn computer of claim 1 , wherein the see-through computer display is a reflective display and the reflected image of the eye of the person reflects off of the see-through display prior to being captured by the camera.
5. The head-worn computer of claim 1 , further comprising a reflective surface positioned between the see-through display and the camera, wherein the camera captures the reflected image of the eye of the person after it reflects off of the reflective surface.
6. The head-worn computer of claim 1 , wherein the see-through display is a front lit reflective image display.
7. The head-worn computer of claim 1 , wherein the image display is an emissive display.