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Correlation between neural discharges in cat primary auditory cortex and tone-detection behaviors

机译:猫原发性听觉皮层神经放电与声调检测行为的相关性

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Understanding the physiological role of the auditory cortex (AC) in acoustic perception is an essential issue in auditory neuroscience. By comparing sound discrimination behaviors in animals before and after AC lesion, many studies have demonstrated that AC is necessary for the perceptual process of human vowels and animal vocalizations, but is not necessary to discriminate simple acoustic parameters such as sound onset, intensity and duration. Because a lesion study cannot fully reveal the function of AC under normal conditions, in this study, we combined electrophysiological recording and psychophysical experiments on the same animal to investigate whether AC is involved in a simple auditory task. We recorded the neural activities of the primary auditory cortex (A1) using implanted electrodes, while freely-moving cats performed a tone-detection task in which they were required to lick a metal tube to obtain a food reward after hearing a tone pip. The performance of the cats' behavioral response increased with the increase of tone intensity, and the neural activities of A1 covaried with the behavioral performance. Also, whether the tone-detection behavior was interfered by a wideband noise was dependent on whether the tone-evoked neural response was masked by the noise-evoked response. Our results did not support that A1 neurons directly associate with the cat's behavioral decision; instead, they may mainly generate a neural representation of stimulus amplitude for further processing to determine whether a tone occurred or not.
机译:了解听觉皮层(AC)在听觉中的生理作用是听觉神经科学中的重要问题。通过比较AC病变前后动物的声音辨别行为,许多研究表明AC对于人类元音和动物发声的感知过程是必需的,但对于区分简单的声学参数(例如声音发作,强度和持续时间)则不是必需的。由于病变研究无法正常显示AC的功能,因此在本研究中,我们将电生理记录和心理物理实验结合在同一只动物上,以研究AC是否参与简单的听觉任务。我们使用植入的电极记录了初级听觉皮层(A1)的神经活动,而自由移动的猫执行了声调检测任务,其中它们被要求舔金属管以在听到声调点后获得食物奖励。猫的行为反应表现随着语气强度的增加而增加,而A1的神经活动与行为表现成正相关。同样,音调检测行为是否受到宽带噪声的干扰还取决于音调诱发的神经反应是否被噪声诱发的反应所掩盖。我们的结果不支持A1神经元与猫的行为决定直接相关。取而代之的是,它们可能主要生成刺激幅度的神经表示,以进行进一步处理以确定是否出现音调。

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