Silva Alcino J
Department of Neurobiology, Brain Research Institute, University of California, Los Angeles, 695 Charles Young Drive South, Los Angeles, California 90095, USA.
J Neurobiol. 2003 Jan;54(1):224-37. doi: 10.1002/neu.10169.
Synaptic plasticity has a central role in nearly all models of learning and memory. Besides experiments documenting changes in synaptic function during learning, most of the evidence supporting a role for synaptic plasticity in memory comes from manipulations that either enhance or lesion synaptic processes. In the last decade, mouse transgenetics (knock outs and transgenics) have provided compelling evidence that the molecular mechanisms responsible for the induction and stability of synaptic changes have a critical role in the acquisition and storage of information. Here, I will review this literature, with a special focus on studies of hippocampal-dependent learning and memory.
突触可塑性在几乎所有学习和记忆模型中都起着核心作用。除了记录学习过程中突触功能变化的实验外,支持突触可塑性在记忆中起作用的大部分证据来自增强或损伤突触过程的操作。在过去十年中,小鼠转基因技术(基因敲除和转基因)提供了令人信服的证据,表明负责突触变化诱导和稳定性的分子机制在信息获取和存储中起着关键作用。在这里,我将回顾这方面的文献,特别关注对海马体依赖的学习和记忆的研究。