Barrionuevo G, Brown T H
Proc Natl Acad Sci U S A. 1983 Dec;80(23):7347-51. doi: 10.1073/pnas.80.23.7347.
Interactions between two excitatory monosynaptic inputs to hippocampal neurons of the CA1 region were examined in the in vitro slice. By adjusting the strengths of the electrical stimuli delivered to the two input pathways, one was made to generate a weak and the other a strong synaptic response. Simultaneous tetanic stimulation of both input pathways resulted in a subsequent long-term enhanced synaptic efficacy in the weak input under conditions in which the same tetanic stimulation of either input alone failed to have this effect. This form of long-term synaptic potentiation (LTP), known as associative LTP, was shown in some cases to last hours without decrement. The plastic changes were localized within the CA1 region and appear to reside in the pre- or postsynaptic elements of the monosynaptic excitatory input to the pyramidal neurons. The increased synaptic efficacy could not be accounted for by any of several measured postsynaptic passive membrane properties.
在体外脑片中研究了CA1区海马神经元的两个兴奋性单突触输入之间的相互作用。通过调整施加到两条输入通路的电刺激强度,使其中一个产生微弱的突触反应,另一个产生强烈的突触反应。在单独对任一输入进行相同的强直刺激均未产生此效应的条件下,同时对两条输入通路进行强直刺激会导致随后弱输入中的突触效能长期增强。这种形式的长期突触增强(LTP),即联合LTP,在某些情况下可维持数小时而不衰减。可塑性变化局限于CA1区,似乎存在于锥体细胞单突触兴奋性输入的突触前或突触后元件中。几种测量的突触后被动膜特性均无法解释突触效能的增加。