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海马体回路的产后改变会改变成年大鼠的回避学习能力。

Postnatal modification of hippocampal circuitry alters avoidance learning in adult rats.

作者信息

Lipp H P, Schwegler H, Driscoll P

出版信息

Science. 1984 Jul 6;225(4657):80-2. doi: 10.1126/science.6729469.

Abstract

In rats and mice, the genetically mediated extent of the mossy fiber projection that synapses on the basal dendrites of hippocampal pyramidal cells is inversely correlated with rate of two-way avoidance (shuttle-box) learning. Postnatal hyperthyroidism, induced in 51 rat pups, resulted in marked variations of this infrapyramidal mossy fiber projection. The number of trials required for criterion performance of these rats in adulthood remained correlated with the neuroanatomical trait (r = 0.74, P less than 0.0001).

摘要

在大鼠和小鼠中,遗传介导的苔藓纤维投射至海马锥体细胞基底树突的程度与双向回避(穿梭箱)学习速率呈负相关。对51只新生大鼠幼崽进行出生后甲状腺功能亢进诱导,导致锥体细胞下苔藓纤维投射出现显著变化。这些大鼠成年后达到标准表现所需的试验次数仍与神经解剖学特征相关(r = 0.74,P小于0.0001)。

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