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Comodulation Enhances Signal Detection via Priming of Auditory Cortical Circuits

机译:共调制通过听觉皮层电路的启动增强信号检测

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摘要

Acoustic environments are composed of complex overlapping sounds that the auditory system is required to segregate into discrete perceptual objects. The functions of distinct auditory processing stations in this challenging task are poorly understood. Here we show a direct role for mouse auditory cortex in detection and segregation of acoustic information. We measured the sensitivity of auditory cortical neurons to brief tones embedded in masking noise. By altering spectrotemporal characteristics of the masker, we reveal that sensitivity to pure tone stimuli is strongly enhanced in coherently modulated broadband noise, corresponding to the psychoacoustic phenomenon comodulation masking release. Improvements in detection were largest following priming periods of noise alone, indicating that cortical segregation is enhanced over time. Transient opsin-mediated silencing of auditory cortex during the priming period almost completely abolished these improvements, suggesting that cortical processing may play a direct and significant role in detection of quiet sounds in noisy environments.>SIGNIFICANCE STATEMENT Auditory systems are adept at detecting and segregating competing sound sources, but there is little direct evidence of how this process occurs in the mammalian auditory pathway. We demonstrate that coherent broadband noise enhances signal representation in auditory cortex, and that prolonged exposure to noise is necessary to produce this enhancement. Using optogenetic perturbation to selectively silence auditory cortex during early noise processing, we show that cortical processing plays a crucial role in the segregation of competing sounds.
机译:声学环境由复杂的重叠声音组成,需要听觉系统将其分离为离散的感知对象。人们对不同的听觉处理站在这项艰巨任务中的功能了解甚少。在这里,我们展示了小鼠听觉皮层在检测和隔离声音信息中的直接作用。我们测量了听觉皮层神经元对掩盖噪声中嵌入的简短音调的敏感性。通过更改掩盖器的光谱时特性,我们揭示了在相干调制的宽带噪声中,对纯音调刺激的灵敏度大大提高,这与心理声学现象共调制掩盖释放相对应。仅在噪声启动阶段之后,检测的改进最大,表明随着时间的流逝,皮质偏析得到增强。在启动阶段,瞬态视蛋白介导的听觉皮层沉默几乎完全消除了这些改善,这表明皮质处理可能在嘈杂环境中检测安静声音方面起着直接而重要的作用。>重要意义声明擅长检测和隔离竞争性声源,但几乎没有直接证据表明该过程如何在哺乳动物的听觉途径中发生。我们证明相干的宽带噪声增强了听觉皮层中的信号表示,并且长时间暴露于噪声对于产生这种增强是必要的。在早期噪声处理过程中使用光遗传学扰动选择性地使听觉皮层沉默,我们表明皮层处理在竞争声音的分离中起着至关重要的作用。

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