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自由长尾蝠 Tadarida brasiliensis 初级听觉皮层的功能组织。

Functional organization of the primary auditory cortex of the free-tailed bat Tadarida brasiliensis.

机构信息

Department of Biology, Texas A&M University, College Station, TX, 77843, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2020 May;206(3):429-440. doi: 10.1007/s00359-020-01406-w. Epub 2020 Feb 8.

Abstract

The Mexican free-tailed bat, Tadarida brasiliensis, is a fast-flying bat that hunts by biosonar at high altitudes in open space. The auditory periphery and ascending auditory pathways have been described in great detail for this species, but nothing is yet known about its auditory cortex. Here we describe the topographical organization of response properties in the primary auditory cortex (AC) of the Mexican free-tailed bat with emphasis on the sensitivity for FM sweeps and echo-delay tuning. Responses of 716 units to pure tones and of 373 units to FM sweeps and FM-FM pairs were recorded extracellularly using multielectrode arrays in anesthetized bats. A general tonotopy was confirmed with low frequencies represented caudally and high frequencies represented rostrally. Characteristic frequencies (CF) ranged from 15 to 70 kHz, and fifty percent of CFs fell between 20 and 30 kHz, reflecting a hyper-representation of a bandwidth corresponding to search-phase echolocation pulses. Most units showed a stronger response to downward rather than upward FM sweeps and forty percent of the neurons interspersed throughout AC (150/371) showed echo-delay sensitivity to FM-FM pairs. Overall, the results illustrate that the free-tailed bat auditory cortex is organized similarly to that of other FM-type insectivorous bats.

摘要

墨西哥游离尾蝠(Tadarida brasiliensis)是一种飞行速度很快的蝙蝠,它在开阔的高空利用生物声纳捕食。该物种的听觉外围和上行听觉通路已经被详细描述,但对其听觉皮层还一无所知。在这里,我们描述了墨西哥游离尾蝠初级听觉皮层(AC)中反应特性的拓扑组织,重点介绍了其对调频扫频和回声延迟调谐的敏感性。使用多电极阵列在麻醉蝙蝠中记录了 716 个对纯音和 373 个对调频扫频和调频-调频对的反应。低频在尾部表示,高频在头部表示,证实了一般的音调组织。特征频率(CF)范围从 15 到 70 kHz,50%的 CF 落在 20 到 30 kHz 之间,反映了与搜索阶段回声定位脉冲相对应的带宽的超表示。大多数单位对向下而不是向上的调频扫频有更强的反应,40%的神经元在整个 AC 中(150/371)对调频-调频对显示回声延迟敏感性。总的来说,这些结果表明,游离尾蝠的听觉皮层与其他调频型食虫蝙蝠的听觉皮层组织相似。

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