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锥体下苔藓纤维与双向回避学习:大鼠和小鼠海马回路的发育性改变及成年行为

Infrapyramidal mossy fibers and two-way avoidance learning: developmental modification of hippocampal circuitry and adult behavior of rats and mice.

作者信息

Lipp H P, Schwegler H, Heimrich B, Driscoll P

机构信息

Institute of Anatomy, University of Zürich, Switzerland.

出版信息

J Neurosci. 1988 Jun;8(6):1905-21. doi: 10.1523/JNEUROSCI.08-06-01905.1988.

Abstract

The extent of the intra- and infrapyramidal mossy fiber projection (IIP-MF) in the hippocampus of mice and rats is strain-specific, and correlates negatively with the strain-specific capacity of avoidance learning. If variations of the IIP-MF influence the capacity for 2-way avoidance learning, then developmental modification of the IIP-MF projection in an individual member of a strain should remain correlated with its adult behavior. Pups of strains with high avoidance capacity and small IIP-MF projections (RHA rats, DBA/2 and BALB/c mice) were injected with varying doses of thyroxine during the postnatal period. This transient hyperthyroidism resulted in a strong, yet largely unpredictable, variability of the IIP-MF projection in the adult animals. Furthermore, postnatal saline injections also increased the variability of the IIP-MF projection; however, this was to a lesser degree than when using thyroxine. The animals were tested for 2-way avoidance learning at the age of 90-120 d. Many showed strain-atypical avoidance scores. These deviations from the inherited level of 2-way avoidance learning were strongly correlated with the magnitude of the IIP-MF projection, regardless of whether the structural changes resulted from thyroxine or saline injections. A multivariate analysis showed that the observed correlations could neither be explained by thyroxine-induced changes in brain weight nor by individual differences of other terminal fields in the hippocampal region CA3. These results suggest that the extent of the IIP-MF projection is influenced by several genetic and epigenetic factors. Irrespective of the underlying causes, the magnitude of the IIP-MF (or of an unknown but well-correlated variable) appears to bias the adult capacity for 2-way avoidance learning predictably.

摘要

小鼠和大鼠海马体内及锥体束下苔藓纤维投射(IIP-MF)的范围具有品系特异性,且与品系特异性回避学习能力呈负相关。如果IIP-MF的变化会影响双向回避学习能力,那么对某一品系个体成员的IIP-MF投射进行发育性改变,应该仍与其成年后的行为相关。在出生后给具有高回避能力且IIP-MF投射较小的品系(RHA大鼠、DBA/2和BALB/c小鼠)的幼崽注射不同剂量的甲状腺素。这种短暂的甲状腺功能亢进导致成年动物的IIP-MF投射出现强烈但很大程度上不可预测的变化。此外,出生后注射生理盐水也会增加IIP-MF投射的变异性;然而,这种变异性程度低于使用甲状腺素时。在90 - 120日龄时对动物进行双向回避学习测试。许多动物表现出品系非典型的回避分数。这些与遗传的双向回避学习水平的偏差与IIP-MF投射的大小密切相关,无论结构变化是由甲状腺素还是生理盐水注射引起的。多变量分析表明,观察到的相关性既不能用甲状腺素引起的脑重量变化来解释,也不能用海马体CA3区其他终末场的个体差异来解释。这些结果表明,IIP-MF投射的范围受多种遗传和表观遗传因素影响。无论潜在原因如何,IIP-MF的大小(或某个未知但相关性良好的变量)似乎可预测地影响成年动物的双向回避学习能力。

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