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Serotonin modulates optimized coding of natural stimuli through increased neural and behavioural responses via enhanced burst firing

机译:通过增强的爆发烧制,血清素通过增加神经和行为响应来调节天然刺激的优化编码

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Key points The function of serotonergic fibres onto sensory areas remains poorly understood We show that serotonin application enhances sensory neural and behavioural responses to second order stimuli Enhanced neural responses most likely occurred because of increased burst firing Changes in neural sensitivity due to burst firing were the best predictor of changes in behavioural sensitivity Our results suggest that serotonin optimizes coding of stimuli encountered during aggression. Abstract Understanding how the processing of sensory information leads to behavioural responses remains a central problem in systems neuroscience. Here, we investigated how the neuromodulator serotonin affects neural and behavioural responses to second‐order envelope stimuli within the electrosensory system of the weakly electric fish Apteronotus leptorhynchus . We found that serotonin application increased neuronal excitability through greater tendency for burst firing. We found that increased excitability led to overall higher neural sensitivities to higher envelope frequencies. Separating the spike train into bursts and isolated spike train components revealed that this was due to significant increases in neural sensitivity for the former but not the latter. We next investigated the consequences of such changes in sensitivity towards optimized coding of stimuli with specific statistics. Our results show that serotonin application compromised optimal coding of stimuli with statistics seen under naturalistic conditions due to changes in burst, but not isolated spike firing. Finally, we found that serotonin application increased behavioural sensitivity to envelope stimuli. Interestingly, changes in neural sensitivity due to bursts were a far better predictor of changes in behavioural sensitivity, suggesting that burst firing is decoded by downstream brain areas. Overall, our results suggest that serotonin modulates neural responses to optimize coding and perception of stimuli during behavioural contexts associated with encountering dominant conspecifics.
机译:关键点Serotonergic纤维在感觉区域上的功能仍然明显,我们表明,血清素应用增强了对二阶刺激的感官神经和行为应对增强的神经反应最有可能发生的神经敏感因爆裂爆发的爆发变化增加是最好的预测性行为敏感性变化的预测结果我们的研究结果表明,血清素优化了在侵略期间遇到的刺激的编码。摘要了解感觉信息的处理如何导致行为响应仍然是系统神经科学中的核心问题。在这里,我们研究了神经调节剂血清素如何影响弱电器肺炎肺术中的电读物系统内的二阶包络刺激的神经和行为响应。我们发现血清素应用通过突发烧制的更大趋势来增加神经元兴奋性。我们发现,增加的兴奋性导致整体较高的神经敏感性到更高的信封频率。将尖峰火车分成爆发和隔离的尖峰列车组件显示,这是由于前者的神经敏感性的显着增加,但不是后者。我们接下来研究了对具有特定统计数据优化刺激编码的敏感性变化的后果。我们的研究结果表明,由于爆发的变化,血清素申请损失了在自然条件下看到的统计数据的刺激编码,但不是孤立的尖峰射击。最后,我们发现Serotonin应用程序增加了对包络刺激的行为敏感性。有趣的是,由于突发引起的神经敏感性的变化是行为敏感性变化的更好预测因素,这表明突发射击被下游脑区域解码。总体而言,我们的研究结果表明,血清素调节神经响应,以优化与遇到占主导地点相关的行为背景期间对刺激的编码和感知。

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