首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Behaviorally gated reduction of spontaneous discharge can improve detection thresholds in auditory cortex
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Behaviorally gated reduction of spontaneous discharge can improve detection thresholds in auditory cortex

机译:行为门控的自发放电减少可以提高听觉皮层的检测阈值

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摘要

Animals often listen selectively for particular sounds, a strategy that could alter neural encoding mechanisms to maximize the ability to detect the target. Here, we recorded auditory cortex neuron responses in well trained, freely moving gerbils as they performed a tone detection task. Each trial was initiated by the animal, providing a predictable time window during which to listen. No sound was presented on nogo trials, permitting us to assess spontaneous activity on trials in which a signal could have been expected, but was not delivered. Immediately after animals initiated a trial, auditory cortex neurons displayed a 26% reduction in spontaneous activity. Moreover, when stimulus-driven discharge rate was referenced to this reduced baseline, a larger fraction of auditory cortex neurons displayed a detection threshold within 10 dB of the behavioral threshold. These findings suggest that auditory cortex spontaneous discharge rate can be modulated transiently during task performance, thereby increasing the signal-to-noise ratio and enhancing signal detection.
机译:动物通常会选择性地聆听特定的声音,这种策略可能会改变神经编码机制,从而最大化检测目标的能力。在这里,我们记录了训练有素,自由移动的沙鼠在执行语调检测任务时的听觉皮层神经元反应。每次试验都是由动物发起的,提供了可预见的聆听时间。在nogo试验中没有声音,这使我们能够评估本来可以预期但未传递信号的试验的自发活动。在动物开始试验后,听觉皮层神经元立即显示出自发活动减少了26%。此外,当将刺激驱动的放电速率参考为降低的基线时,较大比例的听觉皮层神经元显示出在行为阈值10 dB以内的检测阈值。这些发现表明,听觉皮层的自发放电率可以在任务执行过程中进行瞬时调节,从而增加信噪比并增强信号检测能力。

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