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视网膜输入至丘脑的成对峰电位相互作用及突触效能

Paired-spike interactions and synaptic efficacy of retinal inputs to the thalamus.

作者信息

Usrey W M, Reppas J B, Reid R C

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Nature. 1998 Sep 24;395(6700):384-7. doi: 10.1038/26487.

Abstract

In many neural systems studied in vitro, the timing of afferent impulses affects the strength of postsynaptic potentials. The influence of afferent timing on postsynaptic firing in vivo has received less attention. Here we study the importance of afferent spike timing in vivo by recording simultaneously from ganglion cells in the retina and their targets in the lateral geniculate nucleus of the thalamus. When two spikes from a single ganglion-cell axon arrive within 30 milliseconds of each other, the second spike is much more likely than the first to produce a geniculate spike, an effect we call paired-spike enhancement. Furthermore, simultaneous recordings from a ganglion cell and two thalamic targets indicate that paired-spike enhancement increases the frequency of synchronous thalamic activity. We propose that information encoded in the high firing rate of an individual retinal ganglion cell becomes distributed among several geniculate neurons that fire synchronously. Because synchronous geniculate action potentials are highly effective in driving cortical neurons, it is likely that information encoded by this strategy is transmitted to the next level of processing.

摘要

在许多体外研究的神经系统中,传入冲动的时间会影响突触后电位的强度。传入时间对体内突触后放电的影响受到的关注较少。在这里,我们通过同时记录视网膜神经节细胞及其在丘脑外侧膝状体核中的靶细胞,研究了传入尖峰时间在体内的重要性。当来自单个神经节细胞轴突的两个尖峰在彼此30毫秒内到达时,第二个尖峰比第一个尖峰更有可能产生膝状体尖峰,我们将这种效应称为配对尖峰增强。此外,对一个神经节细胞和两个丘脑靶细胞的同步记录表明,配对尖峰增强增加了丘脑同步活动的频率。我们提出,单个视网膜神经节细胞的高放电率编码的信息会分布到几个同步放电的膝状体神经元中。由于同步的膝状体动作电位在驱动皮层神经元方面非常有效,因此通过这种策略编码的信息很可能会传递到下一级处理。

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