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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Intrinsic response properties of bursting neurons in the nucleus principalis trigemini of the gerbil.
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Intrinsic response properties of bursting neurons in the nucleus principalis trigemini of the gerbil.

机译:沙鼠的本性三叉神经核中爆发神经元的内在响应特性。

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In trigeminal neurons, the spike rate, modulated by input parameters, may serve as a code for sensory information. We investigated intrinsic response properties that affect rate coding in neurons of nucleus principalis trigemini (young gerbils). Using the whole-cell recording technique and neurobiotin staining in slices, we found bursting behaviour in approximately 50% of the neurons. These neurons fired spike bursts, spontaneously, as well as at the onset of depolarizing, and offset of hyperpolarizing, current pulses. The spike rate within an initial burst was independent of stimulus strength, in contrast to single spike firing that occurred later in the response to current pulse injection. The spikes within a burst were superimposed on slow depolarizing humps. Under favourable conditions, these led to "plateau potentials", that lasted for hundreds of milliseconds at membrane potentials near approximately -20 mV. Occasionally, plateau potentials were spontaneous or evoked under control conditions: usually, they were evoked by current pulse injection during blockade of Ca2+ influx with Co2+ or Cd2+ in Ca(2+)-free extracellular media, or during blockade of K+ currents with tetraethylammonium. The plateau potentials recorded during internal Cs+ (132.5 mM) substitution of K+ had more positive amplitudes (near +20 mV). Despite relatively stable depolarization levels, the plateau potentials decreased in duration and decayed in amplitude during application of tetrodotoxin (0.6-1.8 nM). Higher tetrodotoxin concentrations (5-60 nM) eliminated the plateau potentials despite well-maintained, fast action potentials. A reduction of external [Na+] reduced the amplitudes of the spikes and plateau potentials. A hyperpolarization of long duration (> 3 s) followed a plateau potential, or a depolarizing response that was subthreshold for plateau generation. Tetrodotoxin application blocked this after-effect. We suggest that a persistent Na+ influx is a major contributor to the bursts and plateau potentials and that it mediates the hyperpolarization. Depending on Ca2+ influx, K+ conductances may regulate the amplitudes of these long-lasting depolarizations. A Ca2+ conductance, blockable by Ni2+, may support burst initiation in these neurons. In very young animals (P2-P9), we found only non-bursting neurons. Both bursting and non-bursting neurons with elongated dendritic fields showed inward rectification on hyperpolarization. The bursts in nucleus principalis trigemini neurons emphasize the onsets of stimulus transients, at the expense of using firing rate as a sensory code. Our studies describe neurons with a surprising ability to distort sensory signals, transforming depolarizing inputs into bursts of spikes by virtue of a Na(+)-conductance activation. The principal trigeminal nucleus also contains neurons with tonic firing ability, compatible with simple rate coding.
机译:在三叉神经元中,由输入参数调制的尖峰频率可以用作感觉信息的代码。我们研究了内在响应特性,这些特性会影响三叉神经原(幼小沙鼠)神经元的速率编码。使用全细胞记录技术和切片中的神经生物素染色,我们发现大约50%的神经元有爆发行为。这些神经元自发地发射尖峰脉冲,以及在电流脉冲去极化和超极化偏移开始时。初始脉冲内的尖峰速率与刺激强度无关,这与后来在响应电流脉冲注入时发生的单个尖峰发射相反。突发中的尖峰叠加在缓慢的去极化峰上。在有利的条件下,这些导致“平稳电位”,在大约-20 mV的膜电位下持续了数百毫秒。有时,高原电位是自发的或在控制条件下诱发的:通常,它们是通过在无Ca(2+)的细胞外介质中用Co2 +或Cd2 +阻断Ca2 +流入的过程中,或在用四乙铵阻断K +电流的过程中,通过电流脉冲注入来诱发的。内部Cs +(132.5 mM)取代K +期间记录的平台电位具有更大的正振幅(接近+20 mV)。尽管去极化水平相对稳定,但在应用河豚毒素(0.6-1.8 nM)的过程中,高原电位的持续时间有所减少,幅度却有所下降。尽管维持良好的快速动作电位,但较高的河豚毒素浓度(5-60 nM)消除了高原电位。外部[Na +]的减少降低了尖峰的幅度和平稳电位。持续时间长(> 3 s)的超极化跟随高原电位,或者去极化反应低于高原产生的阈值。河豚毒素的应用阻止了这种后效应。我们建议持续的Na +涌入是爆发和高原电位的主要贡献者,并且它介导超极化。根据Ca2 +的涌入,K +电导可以调节这些持久去极化的幅度。可被Ni2 +阻断的Ca2 +电导可支持这些神经元的爆发启动。在非常年轻的动物(P2-P9)中,我们只发现了非爆发神经元。具有突增的树突状区域的爆发性和非爆发性神经元均在超极化时显示向内整流。三叉神经原核的爆发强调了刺激瞬变的发作,但以发射速率作为感觉代码为代价。我们的研究描述了神经元,具有令人惊讶的扭曲感官信号的能力,借助Na(+)传导激活将去极化输入转变为尖峰脉冲。主要的三叉神经核还包含具有补剂发射能力的神经元,与简单的速率编码兼容。

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