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Behavioural and neurobiological implications of linear and non-linear features in larynx phonations of horseshoe bats

机译:马蹄蝙蝠喉部发声中线性和非线性特征的行为和神经生物学意义

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Mammalian vocalizations exhibit large variations in their spectrotemporal features, although it is still largely unknown which result from intrinsic biomechanical properties of the larynx and which are under direct neuromuscular control. Here we show that mere changes in laryngeal air flow yield several non-linear effects on sound production, in an isolated larynx preparation from horseshoe bats. Most notably, there are sudden jumps between two frequency bands used for either echolocation or communication in natural vocalizations. These jumps resemble changes in ‘registers’ as in yodelling. In contrast, simulated contractions of the main larynx muscle produce linear frequency changes, but are limited to echolocation or communication frequencies. Only by combining non-linear and linear properties can this larynx, therefore, produce sounds covering the entire frequency range of natural calls. This may give behavioural meaning to yodelling-like vocal behaviour and reshape our thinking about how the brain controls the multitude of spectral vocal features in mammals.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:哺乳动物的发声在其频谱时态特征上表现出很大的变化,尽管仍是很大程度上未知的,这是由于喉的固有生物力学特性导致的,并且处于直接的神经肌肉控制之下。在这里,我们显示,在从马蹄蝠分离的喉部制备物中,喉部气流的仅仅变化会对声音产生产生若干非线性影响。最值得注意的是,在自然发声中用于回声定位或通信的两个频带之间会突然跳变。这些跳跃类似于yodelling中“寄存器”的变化。相反,主要喉部肌肉的模拟收缩会产生线性频率变化,但仅限于回声定位或通讯频率。因此,只有结合非线性和线性特性,该喉部才能产生覆盖自然声音整个频率范围的声音。这可能会给类似甩甩的声音行为赋予行为意义,并重塑我们对大脑如何控制哺乳动物多种频谱声音特征的思考。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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