首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Flight activity alters velocity tuning of fly motion-sensitive neurons.
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Flight activity alters velocity tuning of fly motion-sensitive neurons.

机译:飞行活动改变了对飞行运动敏感神经元的速度调节。

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摘要

Sensory neurons are mostly studied in fixed animals, but their response properties might change when the animal is free to move. Indeed, recent studies found differences between responses of sensory neurons in resting versus moving insects. Since the dynamic range of visual motion stimuli strongly depends on the speed at which an animal is moving, we investigated whether the visual system adapts to such changes in stimulus dynamics as induced by self-motion. Lobula plate tangential cells of flies lend themselves well to study this question because they are known to code for ego-motion based on optic-flow. We recorded the responses of the lobula plate tangential cell H1 to a visual pattern moving at different velocities under three different conditions: fixed flies before and after application of the octopamine agonist chlordimeform (CDM) and tethered flying flies. CDM has been previously shown to induce arousal in flies. We found that flying as well as the application of CDM significantly broadens the velocity tuning of H1 toward higher velocities.
机译:感觉神经元大多是在固定的动物中研究的,但是当动物自由移动时,它们的反应特性可能会改变。实际上,最近的研究发现静止昆虫和运动昆虫的感觉神经元反应之间存在差异。由于视觉运动刺激的动态范围在很大程度上取决于动物运动的速度,因此我们研究了视觉系统是否适应这种由自我运动引起的刺激动力学变化。蝇的小叶板切向细胞很适合研究这个问题,因为已知它们可以根据光流编码自我运动。我们记录了小叶板切向细胞H1对在三种不同条件下以不同速度运动的视觉模式的响应:在应用八达通激动剂氯仿(CDM)之前和之后的固定果蝇和系留的果蝇。先前已证明CDM会引起苍蝇的唤醒。我们发现飞行以及CDM的应用显着扩大了H1向更高速度的速度调节。

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