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一种用于确定眼部位置的红外系统。

An infrared system for determining ocular position.

作者信息

Rinard G A, Matteson R W, Quine R W, Tegtmeyer R S

出版信息

ISA Trans. 1980;19(4):3-6.

PMID:6452428
Abstract

Bioengineering research in the Electronics Division of the Denver Research Institute has centered around the development of an ocular controlled communications device for the severely handicapped. The means for accurate determination of eye position for use in communication/control applications have been investigated by various groups for at least ten years. A highly satisfactory device for eye tracking has been developed in our laboratories and is currently undergoing clinical evaluation as part of a communications system. An infrared LED is mounted on the nose pad of an ordinary pair of eyeglass frames. This LED floods the cornea with light after reflection from the inside surface of an unground eyeglass lens in the frames. The cornea acts as a convex mirror and reflects the light (via the inside surface of the eyeglass (lens) into an image transducer mounted on the bow of the frames. The image transducer is a 32 x 32 cell (1k) dynamic RAM. Utilizing TTL scanning circuitry, the position of the eye can be determined from the address of the illuminated cell of the RAM.

摘要

丹佛研究所电子部门的生物工程研究主要围绕为重度残疾人士开发一种眼控通信设备展开。至少十年来,各个团队一直在研究用于通信/控制应用的精确确定眼睛位置的方法。我们实验室已开发出一种非常令人满意的眼睛跟踪设备,目前作为通信系统的一部分正在进行临床评估。一个红外发光二极管安装在一副普通眼镜架的鼻托上。该发光二极管在从镜架中未打磨的眼镜镜片内表面反射后,用光照射角膜。角膜充当凸面镜,将光(通过眼镜(镜片)的内表面)反射到安装在镜架弯处的图像传感器中。图像传感器是一个32×32单元(1k)的动态随机存取存储器。利用晶体管-晶体管逻辑扫描电路,可以根据随机存取存储器中被照亮单元的地址来确定眼睛的位置。

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