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Amygdala stimulation modulates hippocampal synaptic plasticity

机译:杏仁核刺激调节海马突触可塑性

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Experience-dependent synaptic plasticity is a fundamental feature of neural networks involved in the encoding of information, and the capability of synapses to express plasticity is itself activity-dependent. Here, we introduce a "low-frequency burst stimulation" protocol, which can readily induce both long-term potentiation (LTP) and long-term depression (LTD) at in vivo medial perforant path-dentate gyrus synapses. By varying stimulation parameters, we were able to build a stimulus-response map of synaptic plasticity as a LTP-LTD continuum. The response curve displayed a bidirectional shift toward LTP and LTD, depending on the degree and timing of neural activity of the basolateral amygdala. The range of this plastic modulation was also modified by past activity of the basolateral amygdala, suggesting that the amygdala can arrange its ability to regulate the dentate plastic responses. The effects of the BLA activation were replicated by stimulation of the lateral perforant path and, hence, BLA stimulation may recruit the lateral entorhinal cortex. These results represent a high-order dimension of heterosynaptic modulations of hippocampal synaptic plasticity.
机译:依赖于经验的突触可塑性是参与信息编码的神经网络的基本特征,而突触表达可塑性的能力本身就是活动依赖性的。在这里,我们介绍了一种“低频猝发刺激”协议,该协议可以在体内内侧穿孔路径齿状回突触中轻易诱导长期增强(LTP)和长期抑制(LTD)。通过改变刺激参数,我们能够建立作为LTP-LTD连续体的突触可塑性的刺激反应图。响应曲线显示出向LTP和LTD的双向移动,具体取决于基底外侧杏仁核的神经活动程度和时机。这种塑性调节的范围也被基底外侧杏仁核的过去活动所改变,表明杏仁核可以安排其调节齿状塑性反应的能力。 BLA激活的作用通过刺激外侧穿孔路径复制,因此,BLA刺激可能募集外侧内嗅皮层。这些结果代表了海马突触可塑性的异突触调节的高阶维度。

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