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大鼠颞齿状通路中传递的类习惯化变化分析。

Analysis of the habituation-like changes in transmission in the temporodentate pathway of the rat.

作者信息

Harris E W, Lasher S S, Steward O

出版信息

Brain Res. 1979 Feb 16;162(1):21-32. doi: 10.1016/0006-8993(79)90752-2.

Abstract

Habituation-like decrements in extracellular measures of synaptic activation (population EPSP) and cell discharge (population spike) were analyzed in the dentate gyrus of the rat following repetitive low-frequency stimulation of the medial and lateral entorhinal cortex. Stimulation of either subdivision of the entorhinal projection system resulted in comparable habituation-like response decrements with similar stimulation regimens. However, habituating stimulation of one subdivision did not result in decreased responsiveness to stimulation of the other. Repetitive low-frequency stimulation or even a single pulse delivered to either subdivision did, however, result in a potentiation of granule cell discharge in response to stimulation of the other subdivision (a form of heterosynaptic potentiation). This heterosynaptic potentiation of granule cell discharge was not accompanied by any increase in the extracellular EPSP. Comparisons of the relationship between the population EPSP and population spike before and during habituating stimulation revealed changes in cell discharge in response to the habituating stimulus which could not be accounted for by changes in synaptic activation alone. The results suggest that repetitive activation of the temporodentate pathway alters granule cell output as a result of two processes, a habituation-like decrement in synaptic activation, and a potentiation of granule cell discharge as a consequence of prior activation.

摘要

在对大鼠内侧和外侧内嗅皮层进行重复低频刺激后,分析了齿状回中突触激活(群体兴奋性突触后电位)和细胞放电(群体锋电位)的细胞外测量指标中类似习惯化的衰减情况。对内嗅投射系统的任何一个细分区域进行刺激,在相似的刺激方案下都会导致类似的习惯化样反应衰减。然而,对一个细分区域进行习惯化刺激并不会导致对另一个细分区域刺激的反应性降低。不过,对任何一个细分区域进行重复低频刺激甚至单次脉冲刺激,都会导致颗粒细胞对另一个细分区域刺激的放电增强(一种异突触增强形式)。颗粒细胞放电的这种异突触增强并没有伴随着细胞外兴奋性突触后电位的任何增加。对习惯化刺激前后群体兴奋性突触后电位和群体锋电位之间关系的比较表明,对习惯化刺激的细胞放电变化不能仅由突触激活的变化来解释。结果表明,颞齿状通路的重复激活通过两个过程改变颗粒细胞输出,一是突触激活中类似习惯化的衰减,二是先前激活导致的颗粒细胞放电增强。

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