Institut d'Investigacions Biomèdiques August Pi i Sunyer, Barcelona, Spain;
J Neurophysiol. 2013 Nov;110(9):2163-74. doi: 10.1152/jn.00381.2013. Epub 2013 Aug 14.
Processing of temporal information is key in auditory processing. In this study, we recorded single-unit activity from rat auditory cortex while they performed an interval-discrimination task. The animals had to decide whether two auditory stimuli were separated by either 150 or 300 ms and nose-poke to the left or to the right accordingly. The spike firing of single neurons in the auditory cortex was then compared in engaged vs. idle brain states. We found that spike firing variability measured with the Fano factor was markedly reduced, not only during stimulation, but also in between stimuli in engaged trials. We next explored if this decrease in variability was associated with an increased information encoding. Our information theory analysis revealed increased information content in auditory responses during engagement compared with idle states, in particular in the responses to task-relevant stimuli. Altogether, we demonstrate that task-engagement significantly modulates coding properties of auditory cortical neurons during an interval-discrimination task.
时间信息的处理是听觉处理的关键。在这项研究中,我们记录了大鼠听觉皮层在执行间隔辨别任务时的单个神经元的活动。动物必须判断两个听觉刺激之间的间隔是 150 毫秒还是 300 毫秒,并相应地向左或向右进行鼻触。然后比较听觉皮层中单个神经元的尖峰放电在参与和空闲脑状态下的差异。我们发现,用福纳因子测量的尖峰放电变异性不仅在刺激期间显著降低,而且在参与试验中两次刺激之间也降低了。接下来,我们探讨了这种变异性的降低是否与信息编码的增加有关。我们的信息论分析显示,与空闲状态相比,参与任务时听觉反应的信息量增加,特别是对与任务相关的刺激的反应。总的来说,我们证明在间隔辨别任务中,任务参与显著调节了听觉皮层神经元的编码特性。