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Cockroach optomotor responses below single photon level

机译:低于单光子水平的蟑螂光动力反应

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摘要

Reliable vision in dim light depends on the efficient capture of photons. Moreover, visually guided behaviour requires reliable signals from the photoreceptors to generate appropriate motor reactions. Here, we show that at behavioural low-light threshold, cockroach photoreceptors respond to moving gratings with single-photon absorption events known as 'quantum bumps' at or below the rate of 0.1 s(-1). By performing behavioural experiments and intracellular recordings from photoreceptors under identical stimulus conditions, we demonstrate that continuous modulation of the photoreceptor membrane potential is not necessary to elicit visually guided behaviour. The results indicate that in cockroach motion detection, massive temporal and spatial pooling takes place throughout the eye under dim conditions, involving currently unknown neural processing algorithms. The extremely high night-vision capability of the cockroach visual system provides a roadmap for bio-mimetic imaging design.
机译:在昏暗的光线下可靠的视觉取决于光子的有效捕获。此外,视觉引导的行为需要来自感光器的可靠信号以产生适当的运动反应。在这里,我们表明,在行为低光照阈值下,蟑螂感光器会以0.1 s(-1)或更低的速率响应被称为“量子颠簸”的单光子吸收事件而移动的光栅。通过在相同的刺激条件下进行行为实验和来自感光器的细胞内记录,我们证明了感光膜电位的连续调节对于引发视觉引导的行为不是必需的。结果表明,在蟑螂运动检测中,在昏暗条件下整个眼睛都会发生大量的时间和空间合并,涉及当前未知的神经处理算法。蟑螂视觉系统具有极高的夜视能力,可为仿生物成像设计提供路线图。

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