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Differential Effects of Short- and Long-Term Potentiation on Cell Firing in the CA1 Region of the Hippocampus

机译:短期和长期增强对海马CA1区细胞射击的差异作用

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摘要

Long-term potentiation (LTP) in the hippocampus enhances the ability of a stimulus to produce cell firing, not only by increasing the strength of the EPSPs, but also by increasing the efficiency of the input/output (I/O) function of pyramidal neurons. This means that EPSPs of a given size more easily elicit spikes after LTP, a process known as EPSP-spike (E-S) potentiation. In contrast to LTP, it is not known whether the synaptic strengthening produced by paired-pulse facilitation (PPF) also results in changes in the I/O function. We have addressed this question by examining E-S curves from rat hippocampal area CA1 in response to both PPF and LTP. We describe a novel form of I/O modulation in which PPF produces E-S depression; that is, the E-S curve is shifted to the right, indicating a decreased ability of EPSPs to elicit action potentials. Consistent with the notion that E-S potentiation observed with LTP is caused by long-term increases in the excitatory–inhibitory ratio, we show that PPF-induced E-S depression relies on short-term decreases in this ratio. These results indicate that different forms of synaptic plasticity that produce the same degree of EPSP potentiation can result in dramatically different effects on cell firing, because of the dynamic changes in the excitatory–inhibitory balance within local circuits.
机译:海马中的长期增强(LTP)不仅通过增加EPSP的强度,而且通过增加锥体反应的输入/输出(I / O)功能的效率来增强刺激产生细胞放电的能力。神经元。这意味着给定大小的EPSP在LTP之后更容易引发尖峰,这一过程称为EPSP尖峰(E-S)增强。与LTP相反,不知道由成对脉冲促进(PPF)产生的突触增强是否还会导致I / O功能的变化。我们已经通过检查大鼠海马区CA1响应PPF和LTP的E-S曲线解决了这个问题。我们描述了一种新形式的I / O调制,其中PPF产生E-S压抑;也就是说,E-S曲线向右移动,表明EPSP引起动作电位的能力降低。与LTP观察到的E-S增强是由兴奋抑制比的长期升高引起的观点相一致的,我们表明PPF诱导的E-S抑郁症依赖于该比例的短期降低。这些结果表明,由于局部回路中兴奋性-抑制性平衡的动态变化,产生相同程度EPSP增强作用的不同形式的突触可塑性可导致对细胞放电的显着不同的影响。

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