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Temporal vocal features suggest different call-pattern generating mechanisms in mice and bats

机译:时间的声音特征表明小鼠和蝙蝠中不同的呼叫模式产生机制

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摘要

BackgroundMice produce ultrasonic vocalizations in various inter-individual encounters and with high call rates. However, it is so far virtually unknown how these vocal patterns are generated. On the one hand, these vocal patterns could be embedded into the normal respiratory cycle, as happens in bats and other mammals that produce similar call rates and frequencies. On the other, mice could possess distinct vocal pattern generating systems that are capable of modulating the respiratory cycle, which is what happens in non-human and human primates. In the present study, we investigated the temporal call patterns of two different mammalian species, bats and mice, in order to differentiate between these two possibilities for mouse vocalizations. Our primary focus was on comparing the mechanisms for the production of rapid, successive ultrasound calls of comparable frequency ranges in the two species.
机译:背景小鼠在各种个体间的相遇中并以高呼叫率产生超声波发声。但是,到目前为止,实际上还不清楚这些声音模式是如何产生的。一方面,这些声音模式可以嵌入到正常的呼吸循环中,就像蝙蝠和产生类似呼叫频率和频率的其他哺乳动物一样。另一方面,小鼠可能拥有能够调节呼吸循环的独特的声音模式生成系统,这是在非人类和人类灵长类动物中发生的情况。在本研究中,我们调查了两种不同的哺乳动物物种(蝙蝠和小鼠)的时间呼叫方式,以区分这两种可能的小鼠发声方式。我们的主要重点是比较在两个物种中产生可比较频率范围的快速连续超声波扫描的机制。

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