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回声定位蝙蝠的神经生物学特化

Neurobiological specializations in echolocating bats.

作者信息

Covey Ellen

机构信息

Department of Psychology, University of Washington, Seattle, Washington 98195, USA.

出版信息

Anat Rec A Discov Mol Cell Evol Biol. 2005 Nov;287(1):1103-16. doi: 10.1002/ar.a.20254.

Abstract

Although the bat's nervous system follows the general mammalian plan in both its structure and function, it has undergone a number of modifications associated with flight and echolocation. The most obvious neuroanatomical specializations are seen in the cochleas of certain species of bats and in the lower brainstem auditory pathways of all microchiroptera. This article is a review of peripheral and central auditory neuroanatomical specializations in echolocating bats. Findings show that although the structural features of the central nervous system of echolocating microchiropteran bats are basically the same as those of more generalized mammals, certain pathways, mainly those having to do with accurate processing of temporal information and auditory control of motor activity, are hypertrophied and/or organized somewhat differently from those same pathways in nonecholocating species. Through the resulting changes in strengths and timing of synaptic inputs to neurons in these pathways, bats have optimized the mechanisms for analysis of complex sound patterns to derive accurate information about objects in their environment and direct behavior toward those objects.

摘要

尽管蝙蝠的神经系统在结构和功能上遵循一般哺乳动物的模式,但它经历了许多与飞行和回声定位相关的改变。最明显的神经解剖学特化见于某些种类蝙蝠的耳蜗以及所有小型食虫蝙蝠的低位脑干听觉通路。本文综述了回声定位蝙蝠的外周和中枢听觉神经解剖学特化。研究结果表明,尽管回声定位小型食虫蝙蝠的中枢神经系统结构特征与更一般化的哺乳动物基本相同,但某些通路,主要是那些与精确处理时间信息和运动活动的听觉控制有关的通路,比非回声定位物种的相同通路更肥大和/或组织方式有所不同。通过这些通路中神经元突触输入强度和时间的变化,蝙蝠优化了分析复杂声音模式的机制,以获取有关其环境中物体的准确信息,并针对这些物体引导行为。

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