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Insect Detection of Small Targets Moving in Visual Clutter

机译:小目标在视觉杂波中移动的昆虫检测

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摘要

Detection of targets that move within visual clutter is a common task for animals searching for prey or conspecifics, a task made even more difficult when a moving pursuer needs to analyze targets against the motion of background texture (clutter). Despite the limited optical acuity of the compound eye of insects, this challenging task seems to have been solved by their tiny visual system. Here we describe neurons found in the male hoverfly,Eristalis tenax, that respond selectively to small moving targets. Although many of these target neurons are inhibited by the motion of a background pattern, others respond to target motion within the receptive field under a surprisingly large range of background motion stimuli. Some neurons respond whether or not there is a speed differential between target and background. Analysis of responses to very small targets (smaller than the size of the visual field of single photoreceptors) or those targets with reduced contrast shows that these neurons have extraordinarily high contrast sensitivity. Our data suggest that rejection of background motion may result from extreme selectivity for small targets contrasting against local patches of the background, combined with this high sensitivity, such that background patterns rarely contain features that satisfactorily drive the neuron.
机译:对于寻找猎物或特定物种的动物来说,检测在视觉杂波中移动的目标是一项常见的任务,当移动的追踪者需要针对背景纹理(杂波)的运动来分析目标时,这项任务就变得更加困难。尽管昆虫的复眼的视力有限,但这一艰巨的任务似乎已经通过其微小的视觉系统解决了。在这里,我们描述了在雄性食蚜蝇(Eristalis tenax)中发现的神经元,该神经元选择性地对小的移动目标作出反应。尽管许多这些目标神经元被背景模式的运动抑制,但其他目标神经元却在令人惊讶的大范围背景运动刺激下对感受野内的目标运动作出反应。一些神经元会响应目标和背景之间是否存在速度差异。对非常小的目标(小于单个感光体的视野大小)或对比度降低的目标的响应分析表明,这些神经元具有异常高的对比度敏感性。我们的数据表明,背景运动的拒绝可能是由于与背景的局部斑块形成对比的小目标具有极高的选择性,再加上这种高灵敏度,因此背景图案很少包含令人满意地驱动神经元的特征。

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