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θ模式刺激与长时程增强的诱导:突触被刺激的顺序决定了它们增强的程度。

Theta pattern stimulation and the induction of LTP: the sequence in which synapses are stimulated determines the degree to which they potentiate.

作者信息

Larson J, Lynch G

机构信息

Center for the Neurobiology of Learning and Memory, Bonney Center, University of California, Irvine 92717.

出版信息

Brain Res. 1989 Jun 5;489(1):49-58. doi: 10.1016/0006-8993(89)90007-3.

Abstract

Induction of long-term potentiation (LTP) by asynchronous stimulation of converging afferents was studied in hippocampal slices. Three stimulation electrodes were positioned to activate separate groups of Schaffer-commissural inputs to a population of CA1 pyramidal cells. Patterned stimulation consisted of a single coincident priming pulse to all 3 electrodes followed by a burst of 4 pulses (100 Hz) to the first input (S1) at a delay of 180 ms, to the second (S2) at a delay of 200 ms, and to the third (S3) at a delay of 220 ms. This pattern was repeated 10 times at 5-s intervals. The magnitude of LTP induced (measured 20 min after stimulation) was greatest for the first stimulated input, intermediate for the second, and least for the third. Intracellular recordings indicated that the greatest postsynaptic depolarization occurred during the period of S2 stimulation; thus the magnitude of LTP induced was not simply dependent on the degree of depolarization during afferent activation. Rather, sustained depolarization after synaptic activation could contribute to LTP induction by prolonging the activity of N-methyl-D-aspartate receptor-gated channels. Earlier-arriving bursts may also trigger an inhibitory process that reduces the effectiveness of later bursts for inducing LTP.

摘要

在海马切片中研究了通过异步刺激汇聚传入神经来诱导长时程增强(LTP)。放置三个刺激电极以激活向一群CA1锥体细胞的不同组的Schaffer-连合输入。模式刺激包括向所有三个电极施加单个同时发生的引发脉冲,随后是对第一个输入(S1)在180毫秒延迟时施加一串4个脉冲(100赫兹),对第二个输入(S2)在200毫秒延迟时施加,对第三个输入(S3)在220毫秒延迟时施加。这种模式以5秒的间隔重复10次。诱导的LTP幅度(在刺激后20分钟测量)对于第一个被刺激的输入最大,对于第二个输入中等,对于第三个输入最小。细胞内记录表明,最大的突触后去极化发生在S2刺激期间;因此,诱导的LTP幅度并不简单地取决于传入激活期间的去极化程度。相反,突触激活后的持续去极化可能通过延长N-甲基-D-天冬氨酸受体门控通道的活性来促进LTP诱导。较早到达的脉冲串也可能触发一个抑制过程,该过程会降低后来的脉冲串诱导LTP的有效性。

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