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A holographic waveguide based eye tracker

机译:基于全息波导的眼动仪

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We demonstrated the feasibility of using holographic waveguide for eye tracking. A custom-built holographic waveguide, a 20 mm × 60 mm × 3 mm flat glass substrate with integrated in- and out-couplers, was used for the prototype development. The in- and out-couplers, photopolymer films with holographic fringes, induced total internal reflection in the glass substrate. Diffractive optical elements were integrated into the in-coupler to serve as an optical collimator. The waveguide captured images of the anterior segment of the eye right in front of it and guided the images to a processing unit distant from the eye. The vector connecting the pupil center (PC) and the corneal reflex (CR) of the eye was used to compute eye position in the socket. An eye model, made of a high quality prosthetic eye, was used prototype validation. The benchtop prototype demonstrated a linear relationship between the angular eye position and the PC/CR vector over a range of 60 horizontal degrees and 30 vertical degrees at a resolution of 0.64-0.69 degrees/pixel by simple pixel count. The uncertainties of the measurements at different angular positions were within 1.2 pixels, which indicated that the prototype exhibited a high level of repeatability. These results confirmed that the holographic waveguide technology could be a feasible platform for developing a wearable eye tracker. Further development can lead to a compact, see-through eye tracker, which allows continuous monitoring of eye movement during real life tasks, and thus benefits diagnosis of oculomotor disorders.
机译:我们证明了使用全息波导进行眼动追踪的可行性。用于原型开发的是定制的全息波导,它是一个20 mm×60 mm×3 mm的平板玻璃基板,带有集成的输入和输出耦合器。输入和输出耦合器以及带有全息条纹的光敏聚合物薄膜会在玻璃基板中引起全内反射。衍射光学元件集成到耦合器中,用作光学准直仪。波导捕获了眼前段正前方的图像,并将这些图像引导至远离眼睛的处理单元。连接眼睛的瞳孔中心(PC)和角膜反射(CR)的向量用于计算眼睛在眼窝中的位置。使用高质量假眼制成的眼睛模型用于原型验证。台式原型机通过简单的像素计数就证明了在60水平度和30垂直度范围内,角眼位置与PC / CR向量之间的线性关系,分辨率为0.64-0.69度/像素。在不同角度位置的测量不确定度均在1.2像素以内,这表明该原型具有很高的可重复性。这些结果证实了全息波导技术可能是开发可穿戴式眼动仪的可行平台。进一步的发展可以带来一种紧凑的,透明的眼动仪,它可以在现实生活中连续监视眼球的运动,从而有利于眼动疾病的诊断。

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