Gustafsson B, Wigström H
J Neurosci. 1986 Jun;6(6):1575-82. doi: 10.1523/JNEUROSCI.06-06-01575.1986.
Cooperative effects between afferents on the induction of long-lasting potentiation (LLP) of synaptic transmission were examined in the CA1 region of the hippocampal slice preparation. Synaptic activity was recorded extracellularly in the dendritic layer (stratum radiatum) as a field EPSP, and the amount of LLP produced was measured from the change in slope of the rising phase of this potential. Experiments were performed with the GABA antagonist picrotoxin in the bath solution in order to facilitate the induction of LLP. It is shown that under these conditions a test input evoked by single volleys (at 0.2 Hz) is potentiated when paired with brief tetani (2-15 impulses at 50 Hz) to a separate population of fibers in the stratum radiatum. For this potentiation to appear, the test input had to occur during the train or precede it by less than 40 msec. Maximal effects were observed with the test volley positioned in the early part of the tetanus, and were largely independent of train duration. The potentiation obtained in this manner reached a peak level after some 20 conjunction events, and its magnitude measured 10 min after conjunction was about half that which could be induced by homosynaptic tetanization. Prior homosynaptic potentiation occluded the potentiation induced by conjunction, suggesting an identity of their underlying mechanisms. A test input to the apical dendritic layer was potentiated also by inputs to the basal dendritic layer, although greater effects were observed with both inputs in the same dendritic layer. It is suggested that the conditioning effect is related to the postsynaptic depolarization created by the tetanus.(ABSTRACT TRUNCATED AT 250 WORDS)
在海马脑片制备的CA1区,研究了传入神经之间对突触传递长时程增强(LLP)诱导的协同作用。在树突层(辐射层)细胞外记录突触活动作为场兴奋性突触后电位(fEPSP),并根据该电位上升相斜率的变化来测量产生的LLP量。实验在浴液中加入GABA拮抗剂荷包牡丹碱进行,以促进LLP的诱导。结果表明,在这些条件下,当单个刺激(0.2 Hz)诱发的测试输入与对辐射层中另一群纤维的短暂强直刺激(50 Hz,2 - 15个脉冲)配对时,测试输入会增强。为了出现这种增强,测试输入必须在强直刺激期间发生或在其之前不到40毫秒发生。当测试刺激位于强直刺激的早期时观察到最大效应,且在很大程度上与强直刺激的持续时间无关。以这种方式获得的增强在约20次联合事件后达到峰值水平,联合后10分钟测量的增强幅度约为同突触强直刺激诱导幅度的一半。先前的同突触增强会阻断联合诱导的增强,表明它们的潜在机制相同。对顶树突层的测试输入也会被对基底树突层的输入增强,尽管在同一树突层的两个输入产生的效应更大。提示条件作用效应与强直刺激产生的突触后去极化有关。(摘要截短于250字)