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刺激频率和年龄对自由活动大鼠齿状回双向突触可塑性的影响。

Effects of stimulus frequency and age on bidirectional synaptic plasticity in the dentate gyrus of freely moving rats.

作者信息

Blaise J Harry, Bronzino Joseph D

机构信息

Department of Engineering, Trinity College, Hartford, CT 06106, USA.

出版信息

Exp Neurol. 2003 Aug;182(2):497-506. doi: 10.1016/s0014-4886(03)00136-5.

Abstract

We investigated the frequency-dependent transition from homosynaptic long-term depression (LTD) to long-term potentiation (LTP) at the lateral perforant pathway/dentate gyrus synapse in adult (90 days of age) and immature (15 days of age) awake, freely moving rats. Dentate-evoked field potentials were recorded and analyzed using the population spike amplitude and the field EPSP slope measures following sustained stimulation (900 pulses) of the lateral perforant pathway at various frequencies (1, 3, 7, 30, 50, or 200 Hz). Our results indicate that both the strength and the direction (LTP or LTD) of synaptic plasticity vary as a function of activation frequency: sustained low-frequency stimulation ranging from 1 to 7 Hz results in depression of activated synapses, whereas high-frequency stimulation (30-200 Hz) produces potentiation. In addition, a significant (P < 0.01) ontogenetic shift in the frequency of transition from LTD to LTP was observed; the transition frequency in immature animals was significantly lower than that obtained in adult animals. These observations agree strongly with the prediction of the Bienenstock-Cooper-Munro theory of synapse modification, indicating perhaps a neurophysiological basis for this theoretical model of learning in the dentate gyrus of awake behaving rats.

摘要

我们研究了成年(90日龄)和未成熟(15日龄)、清醒、自由活动大鼠的外侧穿通通路/齿状回突触处从同突触长时程抑制(LTD)到长时程增强(LTP)的频率依赖性转变。在不同频率(1、3、7、30、50或200Hz)下对外侧穿通通路进行持续刺激(900个脉冲)后,记录并分析齿状回诱发的场电位,采用群体峰电位幅度和场兴奋性突触后电位斜率测量方法。我们的结果表明,突触可塑性的强度和方向(LTP或LTD)均随激活频率而变化:1至7Hz的持续低频刺激导致激活突触的抑制,而高频刺激(30 - 200Hz)则产生增强作用。此外,观察到从LTD到LTP转变频率存在显著的(P < 0.01)个体发育转变;未成熟动物的转变频率显著低于成年动物。这些观察结果与比恩斯托克 - 库珀 - 蒙罗突触修饰理论的预测高度一致,这或许为清醒行为大鼠齿状回中这种学习理论模型提供了神经生理学基础。

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