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雏鸡单次被动回避训练后,中腹侧和内侧上纹状体突触数量密度的短期变化。

Short-term changes in the numerical density of synapses in the intermediate and medial hyperstriatum ventrale following one-trial passive avoidance training in the chick.

作者信息

Doubell T P, Stewart M G

机构信息

Brain and Behaviour Research Group, Department of Biology, Open University, Walton Hall, Milton Keynes, United Kingdom.

出版信息

J Neurosci. 1993 May;13(5):2230-6. doi: 10.1523/JNEUROSCI.13-05-02230.1993.

Abstract

Previous ultrastructural studies using stereological counting techniques, based on assumptions regarding shape, size, and orientation of synapses, have suggested synaptic remodeling occurred at least 24 hr after one-trial passive avoidance training in day-old chicks. The present study estimates the mean synaptic density (Nv syn) in a region of the chick forebrain known to be involved in memory formation, the intermediate and medial hyperstriatum ventrale (IMHV), 1 and 24 hr following one-trial passive avoidance training. A stereological technique, the "disector," that makes no assumptions about size, shape, and orientation of synapses was used in the synaptic analyses. The density of axospinous synapses increased by approximately 77% at 1 hr posttraining in the right IMHV of chicks (M-trained) that learned to avoid a bitter-tasting bead, compared to those (W-trained controls) that peck a water-coated bead. A measure of the postsynaptic density size, the mean projected height of synapses (H), was 57% smaller 1 hr posttraining in the right IMHV of M-trained chicks. These differences were not found at 24 hr posttraining. We suggest that structural modification of synapses may be a key part of the processes involved in short-term memory formation.

摘要

以往基于对突触形状、大小和方向的假设,使用体视学计数技术进行的超微结构研究表明,在一日龄雏鸡进行单次被动回避训练后至少24小时发生了突触重塑。本研究估计了在雏鸡前脑一个已知参与记忆形成的区域,即中间和内侧腹侧上纹状体(IMHV),在单次被动回避训练后1小时和24小时的平均突触密度(Nv syn)。在突触分析中使用了一种体视学技术,即“ dissector”,该技术不对突触的大小、形状和方向做任何假设。与啄食涂有水的珠子的雏鸡(W训练对照组)相比,学会避开苦味珠子的雏鸡(M训练组)在训练后1小时,右侧IMHV中轴棘突触的密度增加了约77%。在M训练组雏鸡右侧IMHV中,训练后1小时突触后密度大小的一个指标,即突触的平均投射高度(H),减小了57%。在训练后24小时未发现这些差异。我们认为突触的结构修饰可能是短期记忆形成过程的关键部分。

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