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Gap junction-mediated electrical transmission: regulatory mechanisms and plasticity

机译:间隙结介导电传动:调节机制和可塑性

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摘要

The term synapse applies to cellular specializations that articulate the processing of information within neural circuits by providing a mechanism for the transfer of information between two different neurons. There are two main modalities of synaptic transmission: chemical and electrical. While most efforts have been dedicated to the understanding of the properties and modifiability of chemical transmission, less is still known regarding the plastic properties of electrical synapses, whose structural correlate is the gap junction. A wealth of data indicates that, rather than passive intercellular channels, electrical synapses are more dynamic and modifiable than was generally perceived. This article will discuss the factors determining the strength of electrical transmission and review current evidence demonstrating its dynamic properties. Like their chemical counterparts, electrical synapses can also be plastic and modifiable.
机译:术语突行适用于通过提供用于在两个不同神经元之间的信息转移的机制来阐明神经电路内信息的信息处理的蜂窝专用。突触传递有两个主要方式:化学和电气。虽然大多数努力一直致力于了解化学传输的性质和变性性,但关于电突触的塑性特性仍然仍然知道,其结构相关是间隙结。丰富的数据表明,而不是被动细胞间通道,电气突触比一般所感知更具动态和可修改。本文将讨论确定电气传输强度和审查现有证据的因素,证明其动态特性。与他们的化学对手一样,电气突触也可以是塑料和可修改的。

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