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首页> 外文期刊>The Journal of Experimental Biology >Fly eyes are not still: a motion illusion in Drosophila flight supports parallel visual processing
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Fly eyes are not still: a motion illusion in Drosophila flight supports parallel visual processing

机译:飞眼仍然不是:果蝇飞行中的运动错觉支持并行视觉处理

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Most animals shift gaze by a 'fixate and saccade' strategy, where the fixation phase stabilizes background motion. A logical prerequisite for robust detection and tracking of moving foreground objects, therefore, is to suppress the perception of background motion. In a virtual reality magnetic tether system enabling free yaw movement, Drosophila implemented a fixate and saccade strategy in the presence of a static panorama. When the spatial wavelength of a vertical grating was below the Nyquist wavelength of the compound eyes, flies drifted continuously and gaze could not be maintained at a single location. Because the drift occurs from a motionless stimulus - thus any perceived motion stimuli are generated by the fly itself - it is illusory, driven by perceptual aliasing. Notably, the drift speed was significantly faster than under a uniform panorama, suggesting perceptual enhancement as a result of aliasing. Under the same visual conditions in a rigid-tether paradigm, wing steering responses to the unresolvable static panorama were not distinguishable from those to a resolvable static pattern, suggesting visual aliasing is induced by ego motion. We hypothesized that obstructing the control of gaze fixation also disrupts detection and tracking of objects. Using the illusory motion stimulus, we show that magnetically tethered Drosophila track objects robustly in flight even when gaze is not fixated as flies continuously drift. Taken together, our study provides further support for parallel visual motion processing and reveals the critical influence of body motion on visuomotor processing. Motion illusions can reveal important shared principles of information processing across taxa.
机译:大多数动物通过“固定和扫视”策略转变凝视,其中固定阶段稳定背景运动。因此,稳健检测和跟踪移动前景对象的逻辑先决条件是抑制背景运动的感知。在虚拟现实磁系绳系统中,使自由偏航运动,果蝇在存在静态全景的情况下实施了固定和扫视策略。当垂直光栅的空间波长低于复合眼的奈奎斯特波长时,连续漂移并且凝视不能保持在单个位置的苍蝇。因为漂移发生在一系列动态的刺激之外 - 因此,任何感知的运动刺激都是通过苍蝇自身产生的 - 它是虚幻的,它由感知锯齿驱动。值得注意的是,漂移速度明显比在均匀的全景下的速度快,表明由于锯齿而导致的感知增强。在刚性条纹范式中的相同的视觉条件下,对未解析的静态全景的翼转向响应不能与可解变的静态模式的那些区分开,表明通过自我运动诱导视觉锯齿。我们假设阻碍凝视固定的控制也扰乱了对象的检测和跟踪。使用虚幻运动刺激,我们表明,即使在凝视不连续漂移时,即使在凝视不漂移时,也表明磁性旋转果蝇轨道轨道轨道轨道轨道轨道物体。我们的研究一起获得了对平行视觉运动处理的进一步支持,并揭示了身体运动对体瓜素加工的关键影响。运动幻想可以揭示跨分类群的重要共享原则。

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