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海兔中已确定的化学突触连接上与学习相关的可塑性机制的发展。

Development of plastic mechanisms related to learning at identified chemical synaptic connections in Aplysia.

作者信息

Rayport S G, Kandel E R

出版信息

Neuroscience. 1986 Feb;17(2):283-94. doi: 10.1016/0306-4522(86)90247-2.

Abstract

In the marine snail Aplysia californica learned changes in behavior have been traced to alterations in synaptic efficacy. With the ability to raise the animals in the laboratory, we have explored the development of four types of plastic mechanisms at identified synapses: post-tetanic potentiation and pre-synaptic inhibition, which do not as yet have known behavioral functions, and homosynaptic depression, the cellular mechanism of short-term habituation, and heterosynaptic facilitation, the basis of short-term sensitization. Homosynaptic depression and pre-synaptic inhibition are present early in juvenile life. In contrast, post-tetanic potentiation and heterosynaptic facilitation appear only later, after a discrete interval. The step-wise ontogeny of synaptic plastic mechanisms in Aplysia parallels the gradual emergence of behavior in successive developmental stages. Interestingly, senescence reverses the developmental sequence for habituation and sensitization mechanisms. To pursue further an understanding of the relationship between synapse formation and plasticity underlying learning it will be necessary to extend these studies to dissociated cell culture where mechanisms can be explored on the molecular level. Cell culture may also permit examination of the development of cellular mechanisms underlying classical and operant conditioning which may clarify differences between associative and non-associative mechanisms.

摘要

在海兔(加州海兔)中,已将习得的行为变化追溯到突触效能的改变。凭借在实验室饲养这些动物的能力,我们探索了在已确定的突触处四种类型的可塑性机制的发展:强直后增强和突触前抑制,它们目前还没有已知的行为功能;同突触抑制,即短期习惯化的细胞机制;以及异突触易化,即短期敏感化的基础。同突触抑制和突触前抑制在幼年早期就已存在。相比之下,强直后增强和异突触易化仅在一段离散的时间间隔后才出现。海兔突触可塑性机制的逐步个体发生与连续发育阶段中行为的逐渐出现相平行。有趣的是,衰老会逆转习惯化和敏感化机制的发育顺序。为了进一步理解突触形成与学习背后的可塑性之间的关系,有必要将这些研究扩展到解离细胞培养中,在分子水平上探索相关机制。细胞培养还可能允许研究经典条件反射和操作性条件反射背后的细胞机制的发展,这可能会阐明联想机制和非联想机制之间的差异。

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