首页> 外文期刊>The Journal of Physiology >The effects of common input characteristics and discharge rate on synchronization in rat hypoglossal motoneurones.
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The effects of common input characteristics and discharge rate on synchronization in rat hypoglossal motoneurones.

机译:共同输入特性和放电速率对大鼠舌下运动神经元同步性的影响。

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摘要

Synchronous discharges between a pair of concurrently active motoneurones are thought to arise from the spike-triggering effects of synaptic inputs shared by the pair. Although there are a number of quantitative indices that have been developed to estimate the strength of this common input, there is still some debate as to whether motoneurone discharge rate affects the values of these indices. The aim of the present study was to test the effects of motoneurone discharge rate on these synchronization indices using known common inputs. To achieve this aim we elicited repetitive discharge in rat hypoglossal motoneurones by combining a suprathreshold injected current step with superimposed noise to mimic the synaptic drive likely to occur during physiological activation. The amplitude of the current step was varied in different trials to achieve discharge rates from 5 to 22 Hz. We first examined the effect of discharge rate on the spike-triggering efficacy of individual EPSPs. Motoneurones were more responsive to large EPSPs delivered at a low rate when their background discharge rate was relatively low and the probability of the EPSPs evoking an extra spike decreased with increasing discharge rate. However, the opposite dependence was found for small, high-frequency EPSPs. We then compared the discharge records obtained in several trials in which the same EPSP train was applied repeatedly to the same cell firing at different background discharge rates. The effect of this 'common input' on motoneurone discharge probability was determined by compiling cross-correlation histograms (CCHists) between the discharges of the same cell at different times. The common inputs induced synchronous discharge that gave rise to large central peaks in the CCHists. The relationship between the discharge rate and the level of synchronization changed depending on the synchronization indices used and the amplitude of the common EPSPs. When large EPSPs were used as the common input, the normalized probability of synchronous spikes declined as the discharge rate increased, regardless of the method of normalization used. In contrast, when the common input was composed of a large number of small EPSPs, similar to that likely to occur during physiological activation of motoneurones, different synchronization indices exhibited a positive, a negative or no dependence on the background discharge rate. Indices based on normalizing the number of synchronous spikes by either the number of discharges in the lower frequency train (E), or by the total number of discharges in both trains (S) showed no dependence on background discharge rate and therefore may be the most suitable for quantifying motoneurone synchrony over a range of background discharge rates.
机译:一对同时活动的运动神经元之间的同步放电被认为是由该对共享的突触输入的尖峰触发效应引起的。尽管已经开发出许多定量指标来估算这种共同投入的强度,但是关于运动神经元排出速率是否会影响这些指标的值仍存在一些争议。本研究的目的是使用已知的通用输入来测试运动神经元放电速率对这些同步指数的影响。为了达到这个目的,我们通过结合阈上注入电流阶跃和叠加的噪声来模仿大鼠在生理激活过程中可能发生的突触驱动,从而引起大鼠舌下运动神经元的重复放电。在不同的试验中,当前阶跃的幅度有所不同,以实现5至22 Hz的放电速率。我们首先检查了放电速率对单个EPSP的尖峰触发功效的影响。当其背景放电速率相对较低时,动植物激素对低速递送的大EPSP更具响应,并且EPSP引起额外尖峰的可能性随放电速率的增加而降低。但是,对于小的高频EPSP,却发现了相反的依赖性。然后,我们比较了几次试验中获得的放电记录,在这些试验中,相同的EPSP列以不同的背景放电速率重复应用于同一电池点火。通过编辑同一单元在不同时间放电之间的互相关直方图(CCHists),可以确定这种“共同输入”对运动神经元放电概率的影响。公用输入引起同步放电,从而在CCHist中产生较大的中心峰。放电速率与同步水平之间的关系根据所使用的同步指标和普通EPSP的幅度而变化。当使用大的EPSP作为公共输入时,同步峰值的归一化概率随放电速率的增加而下降,而与所使用的归一化方法无关。相反,当公共输入由大量小的EPSP组成时,类似于在运动中运动神经元的过程中可能发生的情况,不同的同步指数表现出对背景放电速率的正向,负向或不依赖关系。基于通过低频列(E)中的放电次数或两个列中的总放电次数(S)归一化同步尖峰次数的指标,显示与背景放电速率无关,因此可能是最大的适用于量化背景放电速率范围内的运动神经元同步性。

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