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皮质海马网络中的突触可塑性和记忆类型的变化。

Variations in synaptic plasticity and types of memory in corticohippocampal networks.

出版信息

J Cogn Neurosci. 1992 Summer;4(3):189-99. doi: 10.1162/jocn.1992.4.3.189.

Abstract

Abstract If Synaptic long-term potentiation (LTP) represents a memory storage mechanism, its induction and expression characteristics may constitute rules governing encoding and read-out of memory in cortical circuitry, The presence of variants of the LTP effect in different anatomical networks provides grounds for predictions about the types of memory operations to which potentiation contributes. Computer modeling studies incorporating the complex rules for LTP induction and the characteristics of expressed potentiation can be used to make such predictions specific. We review ttie types of synaptic plasticity found in the successive stages of the corticohippocampal pathway, and present results indicating that LTP does participate in definably different forms of memory, suggesting a classification of memory types differing somewhat from categories deduced from behavioral studies. Specifically, the results suggest that subtypes of memory operate serially, in an "assembly line" of specialized functions, each of which adds a unique aspect to the processing of memories. The effects of lesions on the encoding versus expression of memory can be interpreted from the perspective of this hypothesis.

摘要

摘要 如果突触长时程增强(LTP)代表一种记忆存储机制,那么其诱导和表达特征可能构成皮质电路中编码和读取记忆的规则。不同解剖网络中 LTP 效应的变体的存在为增强作用有助于哪种记忆操作类型提供了预测依据。包含 LTP 诱导复杂规则和表达增强特征的计算机建模研究可以用于更具体地进行此类预测。我们回顾了在皮质 - 海马通路的连续阶段中发现的各种类型的突触可塑性,并提出了表明 LTP 确实参与了可定义的不同类型的记忆的结果,这表明对记忆类型的分类与从行为研究中推断出的类别略有不同。具体而言,这些结果表明,记忆的亚类以串行方式运作,在专门功能的“流水线”中,每个亚类都为记忆的处理添加了独特的方面。可以从这个假设的角度来解释对记忆的编码与表达的损伤的影响。

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