Begley Jeffrey R, Arbib Michael A
Computer Science Department, University of Southern California, 941 W 37th Place, Los Angeles, CA 90089-0781, USA.
Network. 2007 Jun;18(2):101-28. doi: 10.1080/09548980701452875.
We report on a computational model of retinal motion sensitivity based on correlation-based motion detectors. We simulate object motion detection in the presence of retinal slip caused by the salamander's head movements during locomotion. Our study offers new insights into object motion sensitive ganglion cells in the salamander retina. A sigmoidal transformation of the spatially and temporally filtered retinal image substantially improves the sensitivity of the system in detecting a small target moving in place against a static natural background in the presence of comparatively large, fast simulated eye movements, but is detrimental to the direction-selectivity of the motion detector. The sigmoid has insignificant effects on detector performance in simulations of slow, high contrast laboratory stimuli. These results suggest that the sigmoid reduces the system's noise sensitivity.
我们报告了一种基于相关性运动探测器的视网膜运动敏感性计算模型。我们模拟了蝾螈在运动过程中因头部运动导致视网膜滑动时的物体运动检测。我们的研究为蝾螈视网膜中对物体运动敏感的神经节细胞提供了新的见解。在存在相对较大、快速的模拟眼球运动的情况下,对时空滤波后的视网膜图像进行S型变换,可显著提高系统检测在静态自然背景中原地移动的小目标的灵敏度,但对运动探测器的方向选择性不利。在缓慢、高对比度的实验室刺激模拟中,S型变换对探测器性能影响不大。这些结果表明,S型变换降低了系统的噪声敏感性。