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以θ频率进行的模式刺激对于诱导海马体长期增强效应最为适宜。

Patterned stimulation at the theta frequency is optimal for the induction of hippocampal long-term potentiation.

作者信息

Larson J, Wong D, Lynch G

出版信息

Brain Res. 1986 Mar 19;368(2):347-50. doi: 10.1016/0006-8993(86)90579-2.

Abstract

Short, high frequency stimulation bursts (4 pulses at 100 Hz) were applied to Schaffer/commissural projections to the CA1 field of rat hippocampal slices at 0.1, 0.2, 1.0 or 2.0-s intervals to assess their efficacy in eliciting long-term potentiation (LTP). Bursts repeated at 2-s intervals induced very little LTP; shorter repetition intervals reliably elicited LTP, with the 200-ms repetition interval producing the greatest potentiation. A short-term potentiation effect, which was maximal 20 s after the last burst and decayed within 10 min, was affected differently by the stimulation parameters than was LTP, suggesting that the two phenomena are due to different processes. The results indicate that patterns of stimulation resembling spike discharge patterns of hippocampal neurons in animals in exploratory situations are effective in inducing LTP and suggest temporal constraints on the mechanisms involved in triggering synaptic plasticity.

摘要

以0.1、0.2、1.0或2.0秒的间隔,对大鼠海马切片CA1区的Schaffer/连合投射施加短的高频刺激串(100 Hz下4个脉冲),以评估其诱发长时程增强(LTP)的效果。以2秒间隔重复的刺激串诱发的LTP非常少;较短的重复间隔能可靠地诱发LTP,其中200毫秒的重复间隔产生的增强作用最大。一种短期增强效应在最后一次刺激后20秒时达到最大,并在10分钟内衰减,其受刺激参数的影响与LTP不同,这表明这两种现象是由不同的过程导致的。结果表明,类似于动物在探索情境中海马神经元放电模式的刺激模式能有效地诱发LTP,并提示了触发突触可塑性所涉及机制的时间限制。

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