首页> 美国卫生研究院文献>other >Shrinking Wings for Ultrasonic Pitch Production: Hyperintense Ultra-Short-Wavelength Calls in a New Genus of Neotropical Katydids (Orthoptera: Tettigoniidae)
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Shrinking Wings for Ultrasonic Pitch Production: Hyperintense Ultra-Short-Wavelength Calls in a New Genus of Neotropical Katydids (Orthoptera: Tettigoniidae)

机译:用于超声波音高生产的收缩机翼:新热带猫科动物的一个新属(超直翅目:-蝶科)中的超强超短波呼唤

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摘要

This article reports the discovery of a new genus and three species of predaceous katydid (Insecta: Orthoptera) from Colombia and Ecuador in which males produce the highest frequency ultrasonic calling songs so far recorded from an arthropod. Male katydids sing by rubbing their wings together to attract distant females. Their song frequencies usually range from audio (5 kHz) to low ultrasonic (30 kHz). However, males of Supersonus spp. call females at 115 kHz, 125 kHz, and 150 kHz. Exceeding the human hearing range (50 Hz–20 kHz) by an order of magnitude, these insects also emit their ultrasound at unusually elevated sound pressure levels (SPL). In all three species these calls exceed 110 dB SPL rms re 20 µPa (at 15 cm). Males of Supersonus spp. have unusually reduced forewings (<0.5 mm2). Only the right wing radiates appreciable sound, the left bears the file and does not show a particular resonance. In contrast to most katydids, males of Supersonus spp. position and move their wings during sound production so that the concave aspect of the right wing, underlain by the insect dorsum, forms a contained cavity with sharp resonance. The observed high SPL at extreme carrier frequencies can be explained by wing anatomy, a resonant cavity with a membrane, and cuticle deformation.
机译:本文报道了从哥伦比亚和厄瓜多尔发现的一种新的属和三种前齿ka科动物(Insecta:直翅目),其中雄虫产生的节肢动物迄今录制的超声波呼叫频率最高。雄性ty鸟通过摩擦翅膀唱歌来吸引遥远的雌性。他们的歌曲频率通常从音频(5 kHz)到低超声(30 kHz)。但是,Supersonus spp的雄性。以115 kHz,125 kHz和150 kHz的频率呼叫女性。这些昆虫超过了人类的听力范围(50 Hz–20 kHz)一个数量级,并且它们以异常升高的声压级(SPL)发出超声波。在所有三个种类中,这些呼叫超过20 dBPa(15厘米时)的110 dB SPL rms。 Supersonus spp。的雄性。异常减少了前兆(<0.5 mm 2 )。只有右翼发出可观的声音,左翼承载着声音并且没有表现出特定的共鸣。与大多数ka类动物相反,Supersonus spp的雄性。在发出声音的过程中定位并移动其翅膀,以使右翅膀的凹入部分(位于昆虫背侧下方)形成一个包含腔室,并具有明显的共鸣。在极端载波频率下观察到的高SPL可以通过机翼解剖,带有膜的共振腔和表皮变形来解释。

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