Hasebe S
Department of Ophthalmology, Okayama University Medical School, Japan.
Nippon Ganka Gakkai Zasshi. 1992 Jan;96(1):102-8.
The authors developed a real-time measurement system to analyze torsional eye movements using video-based technique with two small dots on a soft contact lens as the targets. The lens, saturated with physiological saline solution, was made to adhere to the eye by dropping distilled water on it, according to Edelman's method. It was demonstrated that the clear image of the lens marker was sufficient to extract torsional eye information without using complex image processing technique and that the lens attached firmly to the eye during recordings. An engineering work station (Hewlett Packard Inc, HP9000/350) was used for hardware implementation, which required only 15 milliseconds to process one frame of a video image and the torsional angle was able to record and display in real-time rate. The accuracy (precision error) of this measurement, evaluated by simultaneous recordings with dyed dots on the conjunctiva and an error propagation analysis, was better than delta = 0.08 degrees.
作者开发了一种实时测量系统,使用基于视频的技术,以软性隐形眼镜上的两个小点作为目标来分析眼球扭转运动。根据埃德尔曼的方法,将浸有生理盐水溶液的隐形眼镜滴上蒸馏水后使其附着在眼睛上。结果表明,无需使用复杂的图像处理技术,隐形眼镜标记的清晰图像就足以提取眼球扭转信息,并且在记录过程中隐形眼镜牢固地附着在眼睛上。使用了一个工程工作站(惠普公司,HP9000/350)进行硬件实现,处理一帧视频图像仅需15毫秒,并且能够实时记录和显示扭转角度。通过与结膜上的染色点同时记录以及误差传播分析评估,该测量的精度(精确误差)优于δ = 0.08度。