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Visual Control of Walking Speed in Drosophila

机译:在果蝇中的步行速度视觉控制

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摘要

An animal's self-motion generates optic flow across its retina, and it can use this visual signal to regulate its orientation and speed through the world. While orientation control has been studied extensively in Drosophila and other insects, much less is known about the visual cues and circuits that regulate translational speed. Here, we show that flies regulate walking speed with an algorithm that is tuned to the speed of visual motion, causing them to slow when visual objects are nearby. This regulation does not depend strongly on the spatial structure or the direction of visual stimuli, making it algorithmically distinct from the classic computation that controls orientation. Despite the different algorithms, the visual circuits that regulate walking speed overlap with those that regulate orientation. Taken together, our findings suggest that walking speed is controlled by a hierarchical computation that combines multiple motion detectors with distinct tunings.
机译:动物的自动运动会在其视网膜上产生视光流,它可以使用这种视觉信号来调节其通过世界的方向和速度。 虽然在果蝇和其他昆虫中广泛研究了取向控制,但是关于调节平移速度的视觉线索和电路是较小的。 在这里,我们展示了苍蝇调节步行速度,用算法调整到视觉运动的速度,导致它们在附近的视觉物体时慢速。 该调节不依赖于空间结构或视觉刺激方向,使其与控制定向的经典计算不同。 尽管存在不同的算法,但可视电路调节步行速度与调节方向的算法重叠。 我们的研究结果表明,步行速度由分层计算控制,这些计算将多个运动检测器与不同的调整组合。

著录项

  • 来源
    《Neuron》 |2018年第6期|共20页
  • 作者单位

    Yale Univ Interdept Neurosci Program New Haven CT 06511 USA;

    Yale Univ Dept Mol Cellular &

    Dev Biol New Haven CT 06511 USA;

    Yale Univ Interdept Neurosci Program New Haven CT 06511 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

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