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Behaviorally relevant frequency selectivity in single- and double-on neurons in the inferior colliculus of the Pratt’s roundleaf bat, Hipposideros pratti

机译:普拉特圆叶蝙蝠Hipposideros pratti下丘的单开和双开神经元中与行为相关的频率选择性

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摘要

Frequency analysis is a fundamental function of the auditory system, and it is essential to study the auditory response properties using behavior-related sounds. Our previous study has shown that the inferior collicular (IC) neurons of CF-FM (constant frequency-frequency modulation) bats could be classified into single-on (SO) and double-on (DO) neurons under CF-FM stimulation. Here, we employed Pratt's roundleaf bats, Hipposideros pratti, to investigate the frequency selectivity of SO and DO neurons in response to CF and behavior-related CF-FM sounds using in vivo extracellular recordings. The results demonstrated that the bandwidths (BWs) of iso-frequency tuning curves had no significant differences between the SO and the DO neurons when stimulated by CF sounds. However, the SO neurons had significant narrower BWs than DO neurons when stimulated with CF-FM sounds. In vivo intracellular recordings showed that both SO and DO neurons had significantly shorter post-spike hyperpolarization latency and excitatory duration in response to CF-FM in comparison to CF stimuli, suggesting that the FM component had an inhibitory effect on the responses to the CF component. These results suggested that SO neurons had higher frequency selectivity than DO neurons under behavior-related CF-FM stimulation, making them suitable for detecting frequency changes during echolocation.
机译:频率分析是听觉系统的基本功能,使用与行为相关的声音来研究听觉响应特性至关重要。我们之前的研究表明,在CF-FM刺激下,CF-FM(恒定频率-频率调制)蝙蝠的下丘脑(IC)神经元可以分为单开(SO)和双开(DO)神经元。在这里,我们使用普氏(Pratt)的圆叶蝙蝠Hipposideros pratti,利用体内细胞外录音来研究SO和DO神经元对CF和行为相关CF-FM声音的频率选择性。结果表明,当受CF声刺激时,等频率调谐曲线的带宽(BW)在SO和DO神经元之间没有显着差异。但是,用CF-FM声音刺激时,SO神经元的BW比DO神经元窄得多。体内细胞内记录显示,与CF刺激相比,SO和DO神经元对CF-FM的秒杀后超极化潜伏期和兴奋持续时间均显着缩短,这表明FM成分对CF成分的反应具有抑制作用。 。这些结果表明,在与行为相关的CF-FM刺激下,SO神经元的频率选择性高于DO神经元,使其适于检测回声定位期间的频率变化。

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