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首页> 外文期刊>The Journal of Physiology >Activity-dependent properties of synaptic transmission at two classes of connections made by rat neocortical pyramidal axons in vitro.
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Activity-dependent properties of synaptic transmission at two classes of connections made by rat neocortical pyramidal axons in vitro.

机译:大鼠新皮质锥体轴突在体外建立的两类连接处的突触传递的活动依赖特性。

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1. To compare the dynamics of synaptic transmission at different types of connection, dual intracellular recordings were made from pairs of neurones in slices of adult rat neocortex. Excitatory postsynaptic potentials (EPSPs) were elicited by single spikes, spike pairs and brief spike trains in presynaptic pyramidal cells and responses recorded in postsynaptic pyramidal cells and in interneurones. 2. Pyramid-pyramid EPSPs were strongly voltage dependent and this resulted in a range of paired pulse effects. At thirty-two of sixty-nine pyramid-pyramid connections, the 2nd EPSP was the same shape as the 1st, indicating minimal interaction between active synapses. In these thirty-two connections, paired pulse depression (PPD) was apparent (2nd EPSP integral 46 +/- 21% of the 1st, at 5-20 ms), which recovered within 60-70 ms. 3. In eleven additional pyramid-pyramid pairs, the 2nd EPSP was also the same shape as the 1st, but paired pulse facilitation (PPF, 149 +/- 32%) decaying within 50-60 ms was apparent. Even these connections displayed frequency-dependent depression, however, as 3rd EPSPs were smaller than 1st EPSPs at intervals < 100 ms. 4. At twenty-five pyramid-pyramid connections, 2nd EPSPs were broader than 1st EPSPs and in sixteen of these, voltage- and NMDA receptor-dependent enhancement was large enough to obscure the underlying PPD. PPD was revealed by postsynaptic hyperpolarization (4 pairs), N-methyl-D-aspartate (NMDA) receptor blockade (3 paris), or if Mg2+ was removed (in the one case studied). If synapse location allowed significant depolarization of one active site by another, voltage-dependent enhancement could produce supralinear EPSP summation and overcome PPD. Third EPSPs were, however, consistently smaller than 1st EPSPs. 5. In striking contrast, profound frequency-dependent facilitation, independent of voltage or NMDA receptors was seen at fifteen connections involving two classes of postsynaptic interneurones. 6. At these pyramid-interneurone connections, facilitation of the 2nd EPSP (655 +/- 380% at 5-20 ms) decayed rapidly, within 50-60 ms. Third and fourth EPSPs showed additional facilitation which decayed more slowly, within 90 ms and 2 s, respectively. Facilitation due to five to six spike trains was still apparent at 3 s. Therefore, once initiated by a brief high frequency spike train, facilitation was maintained at lower frequencies.
机译:1.为了比较不同连接方式下突触传递的动力学,从成年大鼠新皮层的成对神经元中进行了双胞内记录。兴奋性突触后电位(EPSPs)由突触前锥体细胞中的单个尖峰,尖峰对和短暂的尖峰序列引发,并在突触后锥体细胞和中间神经元中记录反应。 2.金字塔-金字塔EPSP强烈依赖电压,这导致一系列成对的脉冲效应。在69个金字塔-金字塔连接中的32个处,第二个EPSP与第一个形状相同,表明主动突触之间的相互作用最小。在这32个连接中,明显出现了成对的脉冲降低(PPD)(第二个EPSP积分为第一个的46 +/- 21%,在5-20毫秒处),在60-70毫秒内恢复。 3.在另外11对金字塔形和金字塔形中,第2个EPSP的形状也与第1个相同,但是在50-60 ms内衰减的成对脉冲促进作用(PPF,149 +/- 32%)明显。但是,即使这些连接也显示出与频率相关的压抑,但是,因为第三EPSP在间隔<100 ms时小于第一EPSP。 4.在25个金字塔-金字塔连接处,第2个EPSP比第1个EPSP宽,在其中的16个中,依赖电压和NMDA受体的增强作用大到足以掩盖潜在的PPD。 PPD通过突触后超极化(4对),N-甲基-D-天冬氨酸(NMDA)受体阻滞(3巴黎)或是否除去Mg2 +来揭示(在研究的一种情况下)。如果突触的位置允许一个活动位点被另一个活动位点显着去极化,则电压依赖性增强可以产生超线性EPSP求和并克服PPD。但是,第三EPSP始终小于第一EPSP。 5.形成鲜明对比的是,在涉及两类突触后神经元的十五种连接中,发现了与电压或NMDA受体无关的深刻的频率依赖性促进作用。 6.在这些金字塔-中间神经元连接处,第二个EPSP的促进作用(在5-20毫秒时为655 +/- 380%)在50-60毫秒内迅速衰减。第三和第四EPSP显示出额外的促进作用,分别在90ms和2s内衰减更慢。在3 s时仍能看到5到6道尖刺火车带来的便利。因此,一旦由短暂的高频尖峰脉冲串启动,便可以在较低的频率上保持便利。

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