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Development of a computer-based system for studying human stereopsis: contribution to the study of human speed of detection of visual depth

机译:基于计算机的人类立体视觉研究系统的开发:对人类视觉深度检测速度研究的贡献

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We have developed a computer-based method for measuring the speed of human visual depth perception (stereolatency). Since it needs only a personal computer and special glasses, our method is easier to use than other techniques, which require electromechanical devices. We have tested 25 normal subjects and have found a mean stereolatency of 258.3 ms, which is similar to that reported by others with the use of such electromechanical methods. We have also identified a group of normal subjects who have stereolatencies in excess of 500 ms, who probably do not use stereoscopic vision in everyday life. Finally, the use of different experimental paradigms has provided evidence that increased environmental luminance is able to speed up stereoscopic perception. We postulate that such effect is due to an excitatory effect on retinal photoreceptors, which are brought to a level of hyperpolarization nearer the threshold for the production of afferent impulses to the visual system, resulting in faster phototransduction and shorter stereolatencies.
机译:我们已经开发了一种基于计算机的方法来测量人类视觉深度感知(立体延迟)的速度。由于只需要一台个人计算机和专用眼镜,因此与需要机电设备的其他技术相比,我们的方法更易于使用。我们测试了25名正常受试者,发现平均立体定向时间为258.3毫秒,这与其他人使用此类机电方法报告的结果相似。我们还确定了一组正常人,他们的立体声延迟超过500毫秒,他们在日常生活中可能不使用立体视觉。最后,使用不同的实验范式已经提供了证据,证明增加的环境亮度能够加快立体感。我们推测这种作用是由于对视网膜感光细胞的兴奋作用所致,使视网膜光感受器的超极化水平接近产生视觉系统传入脉冲的阈值,从而导致更快的光转导和较短的立体定位。

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