Lucas Kathleen M, Mongrain Jennifer K, Windmill James F C, Robert Daniel, Yack Jayne E
Department of Biology, Carleton University, Ottawa, ON, K1S 5B6, Canada,
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2014 Oct;200(10):891-8. doi: 10.1007/s00359-014-0933-z. Epub 2014 Aug 31.
Tympanal organs are widespread in Nymphalidae butterflies, with a great deal of variability in the morphology of these ears. How this variation reflects differences in hearing physiology is not currently understood. This study provides the first examination of hearing organs in the crepuscular owl butterfly, Caligo eurilochus. We examined the tuning and sensitivity of the C. eurilochus hearing organ, called Vogel's organ, using laser Doppler vibrometry and extracellular neurophysiology. We show that the C. eurilochus ear responds to sound and is most sensitive to frequencies between 1 and 4 kHz, as confirmed by both the vibration of the tympanal membrane and the physiological response of the associated nerve branches. In comparison to the hearing of its diurnally active relative, Morpho peleides, C. eurilochus has a narrower frequency range with higher auditory thresholds. Hypotheses explaining the function of hearing in this crepuscular butterfly are discussed.
鼓膜器官在蛱蝶科蝴蝶中广泛存在,这些耳朵的形态有很大差异。目前尚不清楚这种变异如何反映听力生理学上的差异。本研究首次对晨昏活动的猫头鹰蝶(学名:Caligo eurilochus)的听觉器官进行了检查。我们使用激光多普勒振动测量法和细胞外神经生理学方法,研究了猫头鹰蝶名为沃格尔氏器官的听觉器官的调谐和敏感性。我们发现,猫头鹰蝶的耳朵对声音有反应,对1至4千赫兹之间的频率最为敏感,这一点通过鼓膜的振动和相关神经分支的生理反应均得到了证实。与其白天活动的近亲光明女神闪蝶(学名:Morpho peleides)相比,猫头鹰蝶的频率范围更窄,听觉阈值更高。文中还讨论了解释这种晨昏活动蝴蝶听力功能的假说。