Hölscher C, Anwyl R, Rowan M J
Department of Pharmacology and Therapeutics, Trinity College Dublin, Dublin 2, Ireland.
J Neurosci. 1997 Aug 15;17(16):6470-7. doi: 10.1523/JNEUROSCI.17-16-06470.1997.
Long-term potentiation (LTP) of synaptic transmission induced by high-frequency stimulation (HFS) is considered to be a model for learning processes; however, standard HFS protocols consisting of long trains of HFS are very different from the patterns of spike firing in freely behaving animals. We have investigated the ability of brief bursts of HFS triggered at different phases of background theta rhythm to mimic more natural activity patterns. We show that a single burst of five pulses at 200 Hz given on the positive phase of tail pinch-triggered theta rhythm reliably induced LTP in the stratum radiatum of the hippocampus of urethane-anesthetized rats. Three of these bursts saturated LTP, and 10 bursts occluded the induction of LTP by long trains of HFS. Burst stimulation on the negative phase or at zero phase of theta did not induce LTP or long-term depression. In addition, stimulation with 10 bursts on the negative phase of theta reversed previously established LTP. The results show that the phase of sensory-evoked theta rhythm powerfully regulates the ability of brief HFS bursts to elicit either LTP or depotentiation of synaptic transmission. Furthermore, because complex spike activity of approximately five pulses on the positive phase of theta rhythm can be observed in freely moving rats, LTP induced by the present theta-triggered stimulation protocol might model putative synaptic plastic changes during learning more closely than standard HFS-induced LTP.
高频刺激(HFS)所诱导的突触传递长时程增强(LTP)被认为是学习过程的一种模型;然而,由长时间HFS序列组成的标准HFS方案与自由活动动物的动作电位发放模式有很大不同。我们研究了在背景θ节律的不同阶段触发的短暂HFS脉冲串模拟更自然活动模式的能力。我们发现,在夹尾触发的θ节律的正相位给予一次200 Hz的五个脉冲的脉冲串,能可靠地在乌拉坦麻醉大鼠海马的辐射层诱导LTP。其中三次脉冲串使LTP达到饱和,10次脉冲串阻断了长时间HFS序列对LTP的诱导。在θ节律的负相位或零相位进行脉冲串刺激不会诱导LTP或长时程抑制。此外,在θ节律的负相位用10次脉冲串进行刺激会逆转先前建立的LTP。结果表明,感觉诱发的θ节律相位有力地调节了短暂HFS脉冲串引发突触传递LTP或去增强的能力。此外,由于在自由活动的大鼠中可以观察到θ节律正相位上大约五个脉冲的复杂动作电位活动,与标准HFS诱导的LTP相比,当前由θ触发的刺激方案诱导的LTP可能更接近模拟学习过程中假定的突触可塑性变化。