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Brief sounds evoke prolonged responses in anesthetized ferret auditory cortex.

机译:简短的声音唤起了麻醉的雪貂听觉皮层的长时响应。

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摘要

Neurons in the auditory cortex of anesthetized animals are generally considered to generate phasic responses to simple stimuli such as tones or noise bursts. In this paper, we show that under ketamine/medetomidine anesthesia, neurons in ferret auditory cortex usually exhibit complex sustained responses. We presented 100-ms broad-band noise bursts at a range of interaural level differences (ILDs) and average binaural levels (ABLs), and used extracellular electrodes to monitor evoked activity over 700 ms poststimulus onset. We estimated the degree of randomness (noise) in the response functions of individual neurons over poststimulus time; we found that neural activity was significantly modulated by sound for up to approximately 500 ms following stimulus offset. Pooling data from all neurons, we found that spiking activity carries significant information about stimulus identity over this same time period. However, information about ILD decayed much more quickly over time compared with information about ABL. In addition, ILD and ABL are coded independently by the neural population even though this is not the case at individual neurons. Though most neurons responded more strongly to ILDs corresponding to the opposite side of space, as a population, they were equally informative about both contra- and ipsilateral stimuli.
机译:通常认为,麻醉动物的听觉皮层中的神经元会产生对简单刺激(例如声调或噪音爆发)的相位响应。在本文中,我们表明在氯胺酮/美托咪定麻醉下,雪貂听觉皮层中的神经元通常表现出复杂的持续反应。我们介绍了在一系列听觉水平差(ILDs)和平均双耳水平(ABLs)范围内的100 ms宽带噪声爆发,并使用细胞外电极在刺激后700 ms内监测诱发的活动。我们估计了刺激后时间各个神经元的响应功能的随机性(噪声)程度。我们发现,在刺激抵消后,神经活动在大约500毫秒内被声音显着调节。汇总所有神经元的数据,我们发现加标活动在同一时间段内携带有关刺激身份的重要信息。但是,有关ILD的信息与有关ABL的信息相比,其衰减随时间推移要快得多。此外,ILD和ABL由神经种群独立编码,即使个别神经元并非如此。尽管大多数神经元对对应于空间另一侧的ILD的反应更为强烈,但作为一个种群,它们对同侧和同侧刺激的信息均相同。

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