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Neuroethology of ultrasonic hearing in nocturnal butterflies (Hedyloidea)

机译:夜蝴蝶超声听觉的神经伦理学

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Nocturnal Hedyloidea butterflies possess ultrasound-sensitive ears that mediate evasive flight maneuvers. Tympanal ear morphology, auditory physiology and behavioural responses to ultrasound are described for Macrosoma heliconiaria, and evidence for hearing is described for eight other hedylid species. The ear is formed by modifications of the cubital and subcostal veins at the forewing base, where the thin (1–3 μm), ovoid (520 × 220 μm) tympanal membrane occurs in a cavity. The ear is innervated by nerve IIN1c, with three chordotonal organs attaching to separate regions of the tympanal membrane. Extracellular recordings from IIN1c reveal sensory responses to ultrasonic (>20 kHz), but not low frequency (<10 kHz) sounds. Hearing is broadly tuned to frequencies between 40 and 80 kHz, with best thresholds around 60 dB SPL. Free flying butterflies exposed to ultrasound exhibit a variety of evasive maneuvers, characterized by sudden and unpredictable changes in direction, increased velocity, and durations of ~500 ms. Hedylid hearing is compared to that of several other insects that have independently evolved ears for the same purpose-bat detection. Hedylid hearing may also represent an interesting example of evolutionary divergence, since we demonstrate that the ears are homologous to low frequency ears in some diurnal Nymphalidae butterflies.
机译:夜视性七倍体蝴蝶具有对超声波敏感的耳朵,可调节回避飞行的动作。记载了关于Macrosoma heliconiaria的鼓膜耳朵形态,听觉生理和行为对超声的反应,并描述了其他八种Hedylid物种的听力证据。耳朵是由前额基部的肘和肋下静脉修饰而成的,在该处的腔中出现了薄的(1-3μm)卵形(520×220μm)鼓膜。耳朵受神经IIN1c支配,三个弦索器官附着在鼓膜的不同区域。 IIN1c的细胞外录音显示了对超声(> 20 kHz)的感觉响应,但没有低频(<10 kHz)声音。听力可广泛调至40至80 kHz之间的频率,最佳阈值约为60 dB SPL。暴露于超声波的自由飞行的蝴蝶表现出各种回避动作,其特征在于方向突然变化且不可预测,速度增加且持续时间约500 ms。将Hedylid的听力与其他几种具有相同目的的蝙蝠独立进化的耳朵的昆虫的听力进行了比较。 Hedylid听觉也可能代表了进化分歧的一个有趣例子,因为我们证明了某些昼夜蛾科蝴蝶的耳朵与低频耳朵是同源的。

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