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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Neural Response Selectivity to Natural Sounds in the Bat Midbrain
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Neural Response Selectivity to Natural Sounds in the Bat Midbrain

机译:蝙蝠中脑中的天然声音的神经反应选择性

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Little is known about the neural mechanisms that mediate differential action-selection responses to communication and echolocation calls in bats. For example, in the big brown bat, frequency modulated (FM) food-claiming communication calls closely resemble FM echolocation calls, which guide social and orienting behaviors, respectively. Using advanced signal processing methods, we identified fine differences in temporal structure of these natural sounds that appear key to auditory discrimination and behavioral decisions. We recorded extracellular potentials from single neurons in the midbrain inferior colliculus (IC) of passively listening animals, and compared responses to playbacks of acoustic signals used by bats for social communication and echolocation. We combined information obtained from spike number and spike triggered averages (STA) to reveal a robust classification of neuron selectivity for communication or echolocation calls. These data highlight the importance of temporal acoustic structure for differentiating echolocation and food-claiming social calls and point to general mechanisms of natural sound processing across species. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:关于介绍ZH中的通信和回声调用的差异动作选择响应的神经机制很少。例如,在大棕色蝙蝠中,频率调制(FM)食品声明通信呼叫密切类似的FM回声呼叫,分别引导社交和定向行为。采用先进的信号处理方法,我们确定了这些自然声音的时间结构的细差,这些声音看起来是听觉歧视和行为决策的关键。我们在被动听力动物的中脑下级小集(IC)中的单一神经元的细胞外潜力,并比较了蝙蝠使用的声学信号的回放,以便社交交流和呼应。我们组合从钉号码和尖峰触发的平均(STA)获得的信息,以揭示用于通信或回声呼叫的神经元选择性的强大分类。这些数据突出了时间声学结构来区分区分呼应和食物声明的社交呼叫,并指向跨物种的自然声音处理的一般机制。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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