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首页> 外文期刊>The Journal of Experimental Biology >Ontogeny of air-motion sensing in cricket
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Ontogeny of air-motion sensing in cricket

机译:板球运动感知的本体论

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Juvenile crickets suffer high rates of mortality by natural predators that they can detect using extremely sensitive air-sensing filiform hairs located on their cerci. Although a huge amount of knowledge has accumulated on the physiology, the neurobiology and the biomechanics of this sensory system in adults, the morphological and functional aspects of air sensing have not been as well studied in earlier life history stages. Using scanning electronic microscopy, we performed a survey of all cercal filiform hairs in seven instars of the wood cricket (Nemobius sylvestris). Statistical analyses allowed us to quantify profound changes in the number, the length and the distribution of cercal hairs during development. Of particular importance, we found a fivefold increase in hair number and the development of a bimodal length-frequency distribution of cercal hairs from the second instar onwards. Based on theoretical estimations of filiform hair population coding, we found that the cercal system is functional for a wide range of frequencies of biologically relevant oscillatory flows, even from the first instar. As the cricket develops, the overall sensitivity of the cercal system increases as a result of the appearance of new hairs, but the value of the best tuned frequency remains fixed between 150 and 180 Hz after the second instar. These frequencies nicely match those emitted by natural flying predators, suggesting that the development of the cercal array of hairs may have evolved in response to such signals.
机译:幼年的自然掠食者死亡率很高,他们可以使用位于尾ci上的极为敏感的空气感应丝状毛发对其进行检测。尽管在成年人的感官系统的生理学,神经生物学和生物力学方面积累了大量知识,但是在生命的早期阶段,对空气感测的形态和功能方面的研究还不够深入。使用扫描电子显微镜,我们对木(Nemobius sylvestris)的7龄幼虫的所有宫颈丝状毛进行了调查。统计分析使我们能够量化发育期间宫颈毛发的数量,长度和分布的深刻变化。特别重要的是,从第二龄起,我们发现发根数量增加了五倍,并且宫颈毛发的双峰长度-频率分布得到发展。基于丝状毛发种群编码的理论估计,我们发现,即使从第一龄期开始,盲肠系统仍可在与生物学相关的振荡流的广泛频率范围内起作用。随着the的发展,由于出现了新的毛发,宫颈系统的整体敏感性增加了,但是第二龄后最佳调谐频率的值保持在150至180 Hz之间。这些频率很好地匹配了自然飞行掠食者发出的频率,这表明大脑的头顶毛阵列的发育可能已经响应这些信号而进化了。

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