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Modeling of the response of midbrain auditory neurons in the rat to their vocalization sounds based on FM sensitivities

机译:基于FM敏感性的大鼠中脑听觉神经元对其发声的响应建模

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摘要

Single units were recorded from the inferior colliculus (IC) of anaesthetized rats in response to: (a) an FM tone, the frequency of which was randomly varied, and (b) a digitized rat vocalization sound. We hypothesized that these neurons may have 'orientation-specific' spectrotemporal receptive field (STRF) that can be used to estimate their responses to complex communication signals. Based on the FM response, we first estimated the cell's STRF which was then convolved with the spectrogram of the rat's vocalization call. A simple convolution gave only crude prediction of the cell's response to the vocalization sound. When inhibitory areas were added around certain parts of the STRF, a better match was found. We conclude that for some FM-sensitive neurons of the IC, STRF with inhibitory areas may account for their responses to vocalization sounds.
机译:响应于:(a)FM音(其频率随机变化)和(b)数字化的大鼠发声,从麻醉大鼠的下丘(IC)记录单个单位。我们假设这些神经元可能具有“定向特定”的光谱时域接受场(STRF),可用于估计其对复杂通讯信号的反应。基于FM响应,我们首先估计细胞的STRF,然后将其与大鼠发声呼叫的声谱图卷积。简单的卷积仅给出细胞对发声声音响应的粗略预测。当在STRF的某些部分周围添加抑制区时,发现更好的匹配。我们得出的结论是,对于IC的某些FM敏感神经元,具有抑制区域的STRF可能解释了它们对发声声音的反应。

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