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首页> 外文期刊>The Journal of Experimental Biology >To crash or not to crash: how do hoverflies cope with free-fall situations and weightlessness?
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To crash or not to crash: how do hoverflies cope with free-fall situations and weightlessness?

机译:坠毁与否:飞翔者如何应对自由落体情况和失重?

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Insects' aptitude to perform hovering, automatic landing and tracking tasks involves accurately controlling their head and body roll and pitch movements, but how this attitude control depends on an internal estimation of gravity orientation is still an open question. Gravity perception in flying insects has mainly been studied in terms of grounded animals' tactile orientation responses, but it has not yet been established whether hoverflies use gravity perception cues to detect a nearly weightless state at an early stage. Ground-based microgravity simulators provide biologists with useful tools for studying the effects of changes in gravity. However, in view of the cost and the complexity of these set-ups, an alternative Earth-based free-fall procedure was developed with which flying insects can be briefly exposed to microgravity under various visual conditions. Hoverflies frequently initiated wingbeats in response to an imposed free fall in all the conditions tested, but managed to avoid crashing only in variably structured visual environments, and only episodically in darkness. Our results reveal that the crash-avoidance performance of these insects in various visual environments suggests the existence of a multisensory control system based mainly on vision rather than gravity perception.
机译:昆虫执行悬停,自动着陆和跟踪任务的能力包括精确控制其头部和身体的侧倾和俯仰运动,但是这种姿态控制如何依赖于重力方向的内部估计仍是一个悬而未决的问题。在飞行昆虫中的重力感知主要是根据地面动物的触觉定向反应进行研究的,但尚未确定蚜虫是否在早期阶段使用重力感知线索检测几乎失重的状态。地面微重力模拟器为生物学家提供了研究重力变化影响的有用工具。但是,考虑到这些装置的成本和复杂性,开发了另一种基于地球的自由落体程序,利用该程序,可以将飞行的昆虫在各种视觉条件下短暂地暴露于微重力下。 Hoverflies在所有测试条件下都响应于自由落体而频繁启动机翼拍打,但设法避免了仅在结构可变的视觉环境中和在偶发的黑暗中坠毁。我们的结果表明,这些昆虫在各种视觉环境下的防撞性能表明存在着主要基于视觉而非重力感知的多感官控制系统。

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