System design study for an optimal remote oculometer for use in operational aircraft
System design of optimal remote oculometer for use in operational aircraft
Engineering topics
Publications and source records attributed to Merchant, J..
System design of optimal remote oculometer for use in operational aircraft
Design and fabrication of moving mirror subsystem and optics required for breadboard remote oculometer
Electro-optical instrument for measuring pointing direction of human eye
Summarized description of oculometer for computing eye direction
Design of optomechanical system for remote oculometer for monitoring eye fixations without subject interference and eye control of pointing or tracking tasks
Prototype oculometer which tracks lateral eye position and measures the direction of the eyes optical axis, pupil size, and blink occurrence performs measurements on the subject on a real-time basis from a remote location.
Pointing and tracking systems responding to operators eyes, noting electro-optical sensor and electronic equipment
Automatic acquisition and tracking of pupil-iris boundary and of corneal reflection of light source in oculometer using electro-optic method for eye direction measurement
Electronic filtering system discriminates between true corneal and false reflections, solving the problem of spurious reflections of the CRT light in newly designed oculometer.
System design and performance characteristics of telescopic oculometer to measure angular direction of human eye movements
Eye control in relation to visual process, showing derivation of position information from pointing of eyeball
Human visual sense analyzed in terms of sampling operation restricted to black and white, nonstereoscopic photopic vision, giving retina model