Department of Neuroscience, Erasmus MC, Dr Molewaterplein 50, 3015 GE Rotterdam, The Netherlands.
Biol Lett. 2010 Apr 23;6(2):278-81. doi: 10.1098/rsbl.2009.0763. Epub 2009 Nov 25.
Acoustic communication involves both the generation and the detection of a signal. In the coqui frog (Eleutherodactylus coqui), it is known that the spectral contents of its calls systematically change with altitude above sea level. Here, distortion product otoacoustic emissions are used to assess the frequency range over which the inner ear is sensitive. It is found that both the spectral contents of the calls and the inner-ear sensitivity change in a similar fashion along an altitudinal gradient. As a result, the call frequencies and the auditory tuning are closely matched at all altitudes. We suggest that the animal's body size determines the frequency particulars of the call apparatus and the inner ear.
声学通讯涉及信号的产生和检测。在 coqui 青蛙(Eleutherodactylus coqui)中,已知其叫声的频谱内容会随着海拔高度的变化而系统地改变。在这里,使用失真产物耳声发射来评估内耳敏感的频率范围。结果发现,叫声的频谱内容和内耳敏感性都以类似的方式沿着海拔梯度变化。因此,在所有海拔高度下,叫声频率和听觉调谐都非常匹配。我们认为,动物的体型决定了发声器官和内耳的频率细节。