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不同体型的 Hawk 蛾的平移光流反应的空间调谐。

Spatial tuning of translational optic flow responses in hawkmoths of varying body size.

机构信息

Behavioral Physiology and Sociobiology (Zoology II), University of Würzburg, Würzburg, Germany.

Department of Zoology, Stockholm University, Stockholm, Sweden.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2022 Mar;208(2):279-296. doi: 10.1007/s00359-021-01530-1. Epub 2021 Dec 10.

Abstract

To safely navigate their environment, flying insects rely on visual cues, such as optic flow. Which cues insects can extract from their environment depends closely on the spatial and temporal response properties of their visual system. These in turn can vary between individuals that differ in body size. How optic flow-based flight control depends on the spatial structure of visual cues, and how this relationship scales with body size, has previously been investigated in insects with apposition compound eyes. Here, we characterised the visual flight control response limits and their relationship to body size in an insect with superposition compound eyes: the hummingbird hawkmoth Macroglossum stellatarum. We used the hawkmoths' centring response in a flight tunnel as a readout for their reception of translational optic flow stimuli of different spatial frequencies. We show that their responses cut off at different spatial frequencies when translational optic flow was presented on either one, or both tunnel walls. Combined with differences in flight speed, this suggests that their flight control was primarily limited by their temporal rather than spatial resolution. We also observed strong individual differences in flight performance, but no correlation between the spatial response cutoffs and body or eye size.

摘要

为了安全地在环境中导航,飞行昆虫依赖于视觉线索,例如光流。昆虫可以从环境中提取哪些线索,这与它们视觉系统的空间和时间响应特性密切相关。这些特性反过来又会因个体的体型差异而有所不同。基于光流的飞行控制如何依赖于视觉线索的空间结构,以及这种关系如何随体型缩放,之前已经在具有重叠复眼的昆虫中进行了研究。在这里,我们描述了具有重叠复眼的昆虫——蜂鸟鹰蛾(Macroglossum stellatarum)的视觉飞行控制响应限制及其与体型的关系。我们使用蜂鸟蛾在飞行隧道中的居中反应作为其对不同空间频率平移光流刺激的接收的读数。我们表明,当平移光流呈现在隧道的一侧或两侧墙壁上时,它们的反应在不同的空间频率处截止。结合飞行速度的差异,这表明它们的飞行控制主要受到时间分辨率而不是空间分辨率的限制。我们还观察到飞行性能存在强烈的个体差异,但空间响应截止值与身体或眼睛大小之间没有相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1459/8934765/29ddfe426680/359_2021_1530_Fig1_HTML.jpg

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