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Slow Cholinergic Modulation of Spike Probability in Ultra-Fast Time-Coding Sensory Neurons

机译:超快速时间编码感觉神经元的穗概率的慢胆碱能调制。

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摘要

Sensory processing in the lower auditory pathway is generally considered to be rigid and thus less subject to modulation than central processing. However, in addition to the powerful bottom-up excitation by auditory nerve fibers, the ventral cochlear nucleus also receives efferent cholinergic innervation from both auditory and nonauditory top–down sources. We thus tested the influence of cholinergic modulation on highly precise time-coding neurons in the cochlear nucleus of the Mongolian gerbil. By combining electrophysiological recordings with pharmacological application in vitro and in vivo, we found 55–72% of spherical bushy cells (SBCs) to be depolarized by carbachol on two time scales, ranging from hundreds of milliseconds to minutes. These effects were mediated by nicotinic and muscarinic acetylcholine receptors, respectively. Pharmacological block of muscarinic receptors hyperpolarized the resting membrane potential, suggesting a novel mechanism of setting the resting membrane potential for SBC. The cholinergic depolarization led to an increase of spike probability in SBCs without compromising the temporal precision of the SBC output in vitro. In vivo, iontophoretic application of carbachol resulted in an increase in spontaneous SBC activity. The inclusion of cholinergic modulation in an SBC model predicted an expansion of the dynamic range of sound responses and increased temporal acuity. Our results thus suggest of a top–down modulatory system mediated by acetylcholine which influences temporally precise information processing in the lower auditory pathway.
机译:通常认为下部听觉途径中的感觉处理是刚性的,因此与中央处理相比,较少受到调节。然而,除了听神经纤维的强大的自下而上的兴奋作用之外,腹侧耳蜗核还从听觉和非听觉自上而下的来源接受传出的胆碱能神经支配。因此,我们测试了胆碱能调制对蒙古沙鼠耳蜗核中高精度时间编码神经元的影响。通过在体外和体内将电生理学记录与药理学应用相结合,我们发现55-72%的球形丛状细胞(SBC)在数百毫秒至数分钟的两个时间范围内被卡巴胆碱去极化。这些作用分别由烟碱和毒蕈碱型乙酰胆碱受体介导。毒蕈碱受体的药理学阻断使静息膜电位超极化,提示为SBC设置静息膜电位的新机制。胆碱能去极化导致SBC的尖峰概率增加,而不损害体外SBC输出的时间精度。在体内,卡巴胆碱的离子电渗疗法导致自发性SBC活性增加。在SBC模型中加入胆碱能调制可预测声音响应动态范围的扩大和时间敏锐度的提高。因此,我们的结果表明,由乙酰胆碱介导的自上而下的调节系统会影响下听道的时间精确信息处理。

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