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豹纹守宫(大壁虎)基底乳头的频率调谐模型。

A model of frequency tuning in the basilar papilla of the Tokay gecko, Gekko gecko.

作者信息

Authier S, Manley G A

机构信息

Institut für Zoologie der Technischen Universität München, Garching FRG.

出版信息

Hear Res. 1995 Jan;82(1):1-13. doi: 10.1016/0378-5955(94)00138-g.

Abstract

This paper uses the quantitative details of the anatomy of the auditory papilla in the Tokay gecko Gekko gecko (as described in the companion paper) to make a quantitative model predicting the tonotopic organization of two of the three papillar areas. Assuming that hair-cell bundle stiffness is similar to that of other species, a model of resonance frequencies for the apical areas of the papilla was constructed, taking into account factors such as the number of hair cells per resonant unit, their bundle dimensions, the volume of the tectorial mass, etc. The model predicts that the apical pre- and postaxial areas, although anatomically adjacent, respond to different frequency ranges, a phenomenon not yet reported from any vertebrate. The model predicts that together, these areas respond best to frequencies between 1.1 and 5.3 kHz, close to the range found physiologically [Eatock et al. (1981) J. Comp. Physiol. 142, 203-218] (0.8 to 5 kHz) for the high-frequency range for this species. Only physiological experiments tracing responses to specific papillar nerve fibres can confirm or refute these interesting predictions of the model. The model also indicates that, compared to free-standing hair-cell bundles, the semi-isolated tectorial structures called sallets not only lower the range of characteristic frequencies but also increase the frequency selectivity of the attached hair cells.

摘要

本文利用豹纹守宫(Gekko gecko)听觉乳头的解剖学定量细节(如配套论文中所述),构建了一个定量模型,以预测三个乳头区域中两个区域的音频定位组织。假设毛细胞束的刚度与其他物种相似,构建了一个乳头顶端区域共振频率的模型,其中考虑了每个共振单元的毛细胞数量、其束尺寸、盖膜体积等因素。该模型预测,顶端的轴前和轴后区域虽然在解剖学上相邻,但对不同的频率范围有反应,这一现象在任何脊椎动物中都尚未有报道。该模型预测,这些区域共同对1.1至5.3千赫兹之间的频率反应最佳,接近该物种生理上发现的高频范围[伊托克等人(1981年)《比较生理学杂志》142卷,203 - 218页](0.8至5千赫兹)。只有追踪对特定乳头神经纤维反应的生理实验才能证实或反驳该模型的这些有趣预测。该模型还表明,与独立的毛细胞束相比,被称为“小帽”的半隔离盖膜结构不仅降低了特征频率范围,还增加了附着毛细胞的频率选择性。

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