首页> 外文期刊>The Journal of Experimental Biology >Template-matching describes visual pattern-recognition tasks in the weakly electric fish Gnathonemus petersii
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Template-matching describes visual pattern-recognition tasks in the weakly electric fish Gnathonemus petersii

机译:模板匹配描述了弱电鱼Gnathonemus petersii中的视觉模式识别任务

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摘要

Several insects use template-matching systems to recognize objects or environmental landmarks by comparing actual and stored retinal images. Such systems are not viewpoint-invariant and are useful only when the locations in which the images have been stored and where they are later retrieved coincide. Here, we describe that a vertebrate, the weakly electric fish Gnathonemus petersii, appears to use template-matching to recognize visual patterns that it had previously viewed from a fixed vantage point. This fish is nocturnal and uses its electrical sense to find its way in the dark, yet it has functional vision that appears to be well adapted to dim light conditions. We were able to train three fish in a two-alternative forced-choice procedure to discriminate a rewarded from an unrewarded visual pattern. From its daytime shelter, each fish viewed two visual patterns placed at a set distance behind a transparent Plexiglas screen that closed the shelter. When the screen was lifted, the fish swam towards one of the patterns to receive a food reward or to be directed back into its shelter. Successful pattern discrimination was limited to low ambient light intensities of approximately 10 lx and to pattern sizes subtending a visual angle greater than 3degrees. To analyze the characteristics used by the fish to discriminate the visual training patterns, we performed transfer tests in which the training patterns were replaced by other patterns. The results of all such transfer tests can best be explained by a template-matching mechanism in which the fish stores the view of the rewarded training pattern and chooses from two other patterns the one whose retinal appearance best matches the stored view.
机译:几种昆虫使用模板匹配系统,通过比较实际和存储的视网膜图像来识别物体或环境标志。这样的系统不是视点不变的,仅在存储图像的位置和以后获取图像的位置重合时才有用。在这里,我们描述了一个脊椎动物,即弱电鱼Gnathonemus petersii,似乎使用模板匹配来识别以前从固定有利位置观看的视觉模式。这条鱼是夜行性的,并利用其电感应在黑暗中找到自己的方式,但它的功能性视觉似乎很适合昏暗的光照条件。我们能够以两种选择的强制训练程序训练三条鱼,从而将奖励与未奖励的视觉模式区分开。从白天的庇护所中,每条鱼都看到了两个透明的有机玻璃屏幕,这些可视图案以一定距离放置在透明的有机玻璃屏幕后面,该屏幕关闭了庇护所。提起屏幕时,鱼游向其中一种模式,以获取食物奖励或直接返回其庇护所。成功的图案辨别仅限于大约10 lx的低环境光强度,以及图案尺寸必须具有大于3度的可视角度。为了分析鱼类用来区分视觉训练模式的特征,我们进行了转移测试,其中训练模式被其他模式替代。所有这些传递测试的结果都可以用模板匹配机制来最好地解释,在模板匹配机制中,鱼存储了奖励训练模式的视图,并从其他两种模式中选择了一种视网膜外观与存储的视图最匹配的模式。

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