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蜥蜴耳朵的方向性。

Directionality of the lizard ear.

作者信息

Christensen-Dalsgaard Jakob, Manley Geoffrey A

机构信息

Center for Sound Communication, SDU Odense University, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

J Exp Biol. 2005 Mar;208(Pt 6):1209-17. doi: 10.1242/jeb.01511.

Abstract

Lizards have highly sensitive ears, but most lizard heads are small (1-2 cm in diameter) compared to the wavelengths of sound of frequencies to which they are most sensitive (1-4 kHz, wavelengths 34-8.5 cm). Therefore, the main cues to sound direction that mammals use - binaural time and intensity cues due to arrival-time differences and sound shadowing by the head--will be very small in lizards. The present work shows that acoustical coupling of the two eardrums in lizards produces the largest directionality of any terrestrial vertebrate ear studied. Laser vibrometric studies of tympanic motion show pronounced directionality within a 1.8-2.4 kHz frequency band around the best frequency of hearing, caused by the interference of ipsi- and contralateral inputs. The results correspond qualitatively to the response of a simple middle ear model, assuming coupling of the tympana through a central cavity. Furthermore, observed directional responses are markedly asymmetrical, with a steep gradient of up to 50-fold (34 dB) response differences between ipsi- and contralateral frontal angles. Therefore, the directionality is easily exploitable by simple binaural subtraction in the brain. Lizard ears are the clearest vertebrate examples of directionality generated by tympanic coupling.

摘要

蜥蜴拥有高度灵敏的耳朵,但与它们最敏感的频率(1 - 4千赫,波长34 - 8.5厘米)的声音波长相比,大多数蜥蜴的头部都很小(直径1 - 2厘米)。因此,哺乳动物用来确定声音方向的主要线索——由于到达时间差异和头部声影造成的双耳时间和强度线索——在蜥蜴身上会非常小。目前的研究表明,蜥蜴双耳的声学耦合产生了所研究的任何陆生脊椎动物耳朵中最大的方向性。对鼓膜运动的激光测振研究表明,在听力最佳频率周围的1.8 - 2.4千赫频段内,由于同侧和对侧输入的干扰,鼓膜运动呈现出明显的方向性。假设鼓膜通过一个中央腔耦合,这些结果在质量上与一个简单中耳模型的响应相对应。此外,观察到的方向响应明显不对称,同侧和对侧前角之间的响应差异高达50倍(34分贝),有一个陡峭的梯度。因此,这种方向性很容易被大脑中简单的双耳减法所利用。蜥蜴耳朵是鼓膜耦合产生方向性的最典型的脊椎动物例子。

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