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Spectrotemporal Receptive Fields in the Inferior Colliculus Revealing Selectivity for Spectral Motion in Conspecific Vocalizations

机译:下球囊中的光谱时间接受域揭示了在特定音域中光谱运动的选择性

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摘要

Frequency modulations are a prominent feature of animal vocalizations and human speech. Here we investigated how neurons in the inferior colliculus (IC) of Mexican free-tailed bats respond to the frequency-modulated (FM) direction and velocity of complex signals by extracting their spectrotemporal receptive fields (STRFs) using a family of upward- and downward-moving ripple stimuli. STRFs were obtained in more than half of the cells that were sampled. To verify the validity of each STRF, we compared their features both with tone-evoked responses and by convolving the STRF with several conspecific calls. We show that responses to tones are in close agreement with the STRF and that the responses predicted by convolutions compare favorably with responses evoked by those calls. The high predictability showed that the STRF captured most of the excitatory and inhibitory properties of IC cells. Most neurons were selective for the direction and velocity of spectral motion with a majority favoring the downward FM direction, and most had spectrum–time inseparability that correlated with their direction selectivity. Furthermore, blocking inhibition significantly reduced the directional selectivity of these neurons, suggesting that inhibition shapes FM direction selectivity in the IC. Finally, we decomposed the natural calls into their ripple components and show that most species-specific calls have downward-sweeping FM components with sweep velocities that correspond with the preferred sweep velocities of IC neurons. This close quantitative correspondence among features of signals and responses suggests that IC cells are tuned by inhibition to respond optimally to spectral motion cues present in their conspecific vocalizations.
机译:调频是动物发声和人类语音的突出特征。在这里,我们研究了墨西哥自由尾蝙蝠下丘(IC)中的神经元如何通过使用向上和向下的族提取其光谱时域接受场(STRF)来响应复杂信号的调频(FM)方向和速度移动的涟漪刺激。在超过一半的采样细胞中获得了STRF。为了验证每个STRF的有效性,我们将它们的功能与音调响应以及通过将STRF与几个特定调用进行卷积进行了比较。我们表明,对音调的响应与STRF紧密一致,并且卷积预测的响应与那些调用所引起的响应相比具有优势。高可预测性表明STRF捕获了IC细胞的大部分兴奋性和抑制性。大多数神经元对频谱运动的方向和速度具有选择性,而大多数神经元则倾向于向下的FM方向,并且大多数神经元与频谱时间的不可分割性与其方向选择性相关。此外,阻断抑制作用显着降低了这些神经元的方向选择性,这表明抑制作用会影响IC中的FM方向选择性。最后,我们将自然调用分解为其波纹成分,并表明大多数特定物种的调用具有向下扫描的FM成分,其扫描速度与IC神经元的首选扫描速度相对应。信号和响应特征之间这种紧密的定量对应关系表明,IC细胞可以通过抑制来优化,以最佳响应其同种发声中存在的频谱运动提示。

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