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Differential Coding of Conspecific Vocalizations in the Ventral Auditory Cortical Stream

机译:腹侧听觉皮层流中同种发声的差分编码

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摘要

The mammalian auditory cortex integrates spectral and temporal acoustic features to support the perception of complex sounds, including conspecific vocalizations. Here we investigate coding of vocal stimuli in different subfields in macaque auditory cortex. We simultaneously measured auditory evoked potentials over a large swath of primary and higher order auditory cortex along the supratemporal plane in three animals chronically using high-density microelectrocorticographic arrays. To evaluate the capacity of neural activity to discriminate individual stimuli in these high-dimensional datasets, we applied a regularized multivariate classifier to evoked potentials to conspecific vocalizations. We found a gradual decrease in the level of overall classification performance along the caudal to rostral axis. Furthermore, the performance in the caudal sectors was similar across individual stimuli, whereas the performance in the rostral sectors significantly differed for different stimuli. Moreover, the information about vocalizations in the caudal sectors was similar to the information about synthetic stimuli that contained only the spectral or temporal features of the original vocalizations. In the rostral sectors, however, the classification for vocalizations was significantly better than that for the synthetic stimuli, suggesting that conjoined spectral and temporal features were necessary to explain differential coding of vocalizations in the rostral areas. We also found that this coding in the rostral sector was carried primarily in the theta frequency band of the response. These findings illustrate a progression in neural coding of conspecific vocalizations along the ventral auditory pathway.
机译:哺乳动物的听觉皮层融合了频谱和时间声学特征,以支持对复杂声音的感知,包括特定的发声。在这里,我们研究了猕猴听觉皮层不同子域中声刺激的编码。我们同时使用高密度微皮层脑电图阵列同时测量了三只动物沿上胸膜平面沿一大片初级和高级听觉皮层的听觉诱发电位。为了评估神经活动在这些高维数据集中区分单个刺激的能力,我们将正则化多元分类器应用于特定电声的诱发电位。我们发现总体分类性能水平沿尾到鼻轴逐渐降低。此外,各个刺激在尾部的表现相似,而对于不同刺激,在延髓部的表现却显着不同。而且,关于尾部发声的信息类似于关于合成刺激的信息,其仅包含原始发声的频谱或时间特征。然而,在眼部区域,发声的分类明显好于合成刺激的分类,这表明需要结合频谱和时间特征来解释在眼部区域发声的差分编码。我们还发现,在延髓头端的这种编码主要在响应的theta频带中进行。这些发现说明了沿着腹侧听觉途径的同种发声的神经编码的进展。

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