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Inhibition of SK and M channel-mediated currents by 5-HT enables parallel processing by bursts and isolated spikes

机译:5-HT抑制SK和M通道介导的电流可通过突发和孤立的尖峰并行处理

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摘要

Although serotonergic innervation of sensory brain areas is ubiquitous, its effects on sensory information processing remain poorly understood. We investigated these effects in pyramidal neurons within the electrosensory lateral line lobe (ELL) of weakly electric fish. Surprisingly, we found that 5-HT is present at different levels across the different ELL maps; the presence of 5-HT fibers was highest in the map that processes intraspecies communication signals. Electrophysiological recordings revealed that 5-HT increased excitability and burst firing through a decreased medium after hyperpolarization resulting from reduced small-conductance calcium-activated (SK) currents as well as currents mediated by an M-type potassium channel. We next investigated how 5-HT alters responses to sensory input. 5-HT application decreased the rheobase current, increased the gain, and decreased first spike latency. Moreover, it reduced discriminability between different stimuli, as quantified by the mutual information rate. We hypothesized that 5-HT shifts pyramidal neurons into a burst-firing mode where bursts, when considered as events, can detect the presence of particular stimulus features. We verified this hypothesis using signal detection theory. Our results indeed show that serotonin-induced bursts of action potentials, when considered as events, could detect specific stimulus features that were distinct from those detected by isolated spikes. Moreover, we show the novel result that isolated spikes transmit more information after 5-HT application. Our results suggest a novel function for 5-HT in that it enables differential processing by action potential patterns in response to current injection.
机译:尽管感觉神经区域的血清素能神经支配普遍存在,但其对感觉信息处理的影响仍然知之甚少。我们调查了弱电鱼的电学侧线叶(ELL)中锥体神经元的这些影响。出乎意料的是,我们发现5-HT在不同的ELL谱图中以不同的水平存在。在处理种内通信信号的图中,5-HT纤维的存在最高。电生理学记录表明,5-HT的兴奋性增强,并且通过减少极化的小电导钙激活(SK)电流以及由M型钾通道介导的电流,可在超极化后通过减少的培养基爆发放电。接下来,我们研究了5-HT如何改变对感觉输入的反应。 5-HT的使用降低了流变碱电流,增加了增益,并减少了第一尖峰延迟。而且,它降低了不同刺激之间的可辨别性,如相互信息率所定量的。我们假设5-HT将锥体神经元转变成爆发模式,其中爆发被视为事件时可以检测到特定刺激特征的存在。我们使用信号检测理论验证了这一假设。我们的结果确实表明,当将5-羟色胺诱导的动作电位爆发视为事件时,可以检测到特定的刺激特征,这些特征与孤立的峰值所检测的特征不同。此外,我们显示了新颖的结果,即在5-HT应用后,孤立的尖峰会传输更多信息。我们的结果表明了5-HT的新颖功能,它可以通过响应电流注入通过动作电位模式进行差分处理。

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