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首页> 外文期刊>Scientific reports. >Random Neuronal Networks show homeostatic regulation of global activity while showing persistent changes in specific connectivity paths to theta burst stimuli
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Random Neuronal Networks show homeostatic regulation of global activity while showing persistent changes in specific connectivity paths to theta burst stimuli

机译:随机神经元网络展示了全球活动的稳态调节,同时表现出特定连接路径的持续变化,达到突发刺激

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摘要

Learning in neuronal networks based on Hebbian principle has been shown to lead to destabilizing effects. Mechanisms have been identified that maintain homeostasis in such networks. However, the way in which these two opposing forces operate to support learning while maintaining stability is an active area of research. In this study, using neuronal networks grown on multi electrode arrays, we show that theta burst stimuli lead to persistent changes in functional connectivity along specific paths while the network maintains a global homeostasis. Simultaneous observations of spontaneous activity and stimulus evoked responses over several hours with theta burst training stimuli shows that global activity of the network quantified from spontaneous activity, which is disturbed due to theta burst stimuli is restored by homeostatic mechanisms while stimulus evoked changes in specific connectivity paths retain a memory trace of the training.
机译:基于Hebbian原则的神经元网络学习已经显示出导致稳定的效果。已经确定了在这种网络中维持稳态的机制。然而,这两个相反的力量在保持稳定性的同时支持学习的方式是一个有效的研究领域。在该研究中,使用在多电极阵列上生长的神经元网络,我们表明,当网络维持全球性稳态时,ThetA突发刺激导致功能连接的功能连接的持续变化。同时观察自发性活性和刺激的诱发几小时诱发QUATA突发训练刺激的反应表明,通过稳态机制恢复从自发活动中量化的网络的全局活性,其受到突如时的机制恢复,而刺激诱发特定连接路径的变化保留培训的记忆轨迹。

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