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首页> 外文期刊>PLoS Computational Biology >Spatial Acuity and Prey Detection in Weakly Electric Fish
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Spatial Acuity and Prey Detection in Weakly Electric Fish

机译:弱电鱼的空间敏锐度和猎物检测

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It is well-known that weakly electric fish can exhibit extreme temporal acuity at the behavioral level, discriminating time intervals in the submicrosecond range. However, relatively little is known about the spatial acuity of the electrosense. Here we use a recently developed model of the electric field generated by Apteronotus leptorhynchus to study spatial acuity and small signal extraction. We show that the quality of sensory information available on the lateral body surface is highest for objects close to the fish's midbody, suggesting that spatial acuity should be highest at this location. Overall, however, this information is relatively blurry and the electrosense exhibits relatively poor acuity. Despite this apparent limitation, weakly electric fish are able to extract the minute signals generated by small prey, even in the presence of large background signals. In fact, we show that the fish's poor spatial acuity may actually enhance prey detection under some conditions. This occurs because the electric image produced by a spatially dense background is relatively “blurred” or spatially uniform. Hence, the small spatially localized prey signal “pops out” when fish motion is simulated. This shows explicitly how the back-and-forth swimming, characteristic of these fish, can be used to generate motion cues that, as in other animals, assist in the extraction of sensory information when signal-to-noise ratios are low. Our study also reveals the importance of the structure of complex electrosensory backgrounds. Whereas large-object spacing is favorable for discriminating the individual elements of a scene, small spacing can increase the fish's ability to resolve a single target object against this background.
机译:众所周知,弱电鱼可以在行为水平上表现出极高的时间敏锐度,可以将时间间隔区分为亚微秒范围。但是,关于电感应的空间敏锐度知之甚少。在这里,我们使用最近开发的细齿天牛产生的电场模型来研究空间敏锐度和小信号提取。我们表明,对于靠近鱼的中体的物体而言,可在体侧表面获得的感官信息的质量最高,这表明该位置的空间敏锐度应最高。但是,总的来说,该信息相对模糊,并且电感应显示出相对较差的敏锐度。尽管存在这种明显的限制,但即使在存在大背景信号的情况下,弱电鱼也能够提取出小猎物产生的微小信号。实际上,我们证明了鱼的空间敏锐度实际上可以在某些条件下增强猎物的探测能力。发生这种情况是因为由空间密集的背景产生的电图像相对“模糊”或空间均匀。因此,当模拟鱼类运动时,小的空间定位猎物信号会“弹出”。这清楚地表明了这些鱼的来回游动如何可以用来产生运动提示,就像其他动物一样,当信噪比低时,该运动提示有助于提取感官信息。我们的研究还揭示了复杂的电感应背景结构的重要性。大对象间距有利于区分场景中的各个元素,而小间距则可以提高鱼类在此背景下分辨单个目标对象的能力。

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