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两种新象鼻虫(直翅目)的共生听觉通讯。

Commensal auditory communication in two species of Neoconocephalus (orthoptera).

出版信息

J Insect Physiol. 1977;23(7):817-24. doi: 10.1016/0022-1910(77)90006-3.

Abstract

Auditory communication in Neoconcephalus ensiger and Neocotlocephalus robustus. two stridulating tettigoniids that inhabit the same geographical area, was examined to determine how these two species interact. Computer and electrophysiological techniques were used to analyze sound production and reception. Although similar in appearance, the males of these species produce easily distinguishable acoustic communication signals (call songs) that serve to attract conspecific females. Both waveform and spectral analyses were done on selected segments of the species-specific call songs by using discrete Fourier transform techniques. Sound production and reception capacities were measured by octave-band analyzers and extracellular electrode techniques. The results show that each of these species has a distinct, primary carrier frequency band. Secondly, the log magnitude spectra revealed a significant secondary component in the call song of N. robustus which corresponds to the primary energy band in the call song of N. ensiger. This overlap in acoustic signals and other findings suggest that males of N. ensiger might use the louder stridulation of the more metabolically active N. robustus to attract conspecific females over great distances. N. ensiger males have a sound production capacity like N. robustus, bL t conserve energy for soft. near-field signaling. The audiogram representing sensitivity of the tympano-receptor in the foreleg showed sound reception to be matched precisely with sound production curves.

摘要

栖息在同一地理区域的两种发声的螽斯 Neoconcephalus ensiger 和 Neocotlocephalus robustus 的听觉通讯进行了研究,以确定这两个物种如何相互作用。计算机和电生理技术被用于分析声音的产生和接收。尽管这些物种在外观上相似,但它们的雄性会产生容易区分的声学通讯信号(叫声),用于吸引同种的雌性。通过离散傅里叶变换技术对物种特异性叫声的选定片段进行了波形和光谱分析。使用倍频程分析仪和细胞外电极技术测量了声音的产生和接收能力。结果表明,这些物种中的每一种都有一个独特的主要载波频率带。其次,对数幅度谱揭示了 N. robustus 叫声中的一个显著的次要成分,它对应于 N. ensiger 叫声中的主要能量带。这些声学信号的重叠和其他发现表明,N. ensiger 的雄性可能会利用代谢活跃的 N. robustus 更响亮的摩擦声来吸引同种的雌性,而无需近距离发出轻柔的声音。N. ensiger 雄性具有与 N. robustus 相似的发声能力,但为了进行软近场信号传递而节约能量。代表前腿鼓膜感受器敏感性的听力图显示,声音接收与声音产生曲线精确匹配。

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