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Maintenance of postsynaptic neuronal excitability by a positive feedback loop of postsynaptic BDNF expression

机译:通过突触后BDNF表达的正反馈回路维持突触后神经元刺激性

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Experiments have demonstrated that in mice, the PVT strongly projects to the CeL and participates in the formation of fear memories by synaptic potentiation in the amygdala. Herein, we propose a mathematical model based on a positive feedback loop of BDNF expression and signaling to investigate PVT manipulation of synaptic potentiation. The model is validated by comparisons with experimental observations. We find that a high postsynaptic firing frequency after stimulation is induced by presynaptic when the rates of BDNF secretion from PVT and LA neurons to the CeL are above a threshold value. Moreover, the positive feedback of postsynaptic BDNF production is important for the maintenance of the high excitability of the CeL neuron after stimulation. The model brings insight into the underlying mechanisms of PVT modulation of synaptic potentiation at LA-CeL synapses and provides a framework of understanding other similar processes associated with synaptic plasticity.
机译:实验证明,在小鼠中,PVT强烈地将CEL突出,并通过杏仁达拉的突触潜力参与恐惧记忆的形成。 这里,我们提出了一种基于BDNF表达的正反馈回路的数学模型,并对信号传导来研究PVT操纵突触潜力。 通过对实验观察的比较验证该模型。 我们发现,当从PVT和La神经元到CEL的BDNF分泌物的BDNF分泌率超过阈值时,通过突出诱导刺激后的高突触射频频率。 此外,突触后BDNF生产的阳性反馈对于维持刺激后塞神经元的高兴奋性是重要的。 该模型对La-CEL突触突触突触的PVT调制的潜在机制提出了洞察力,并提供了理解与突触可塑性相关的其他类似过程的框架。

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