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Multi-frequency activation of neuronal networks by coordinated reset stimulation

机译:通过协同复位刺激来多频率激活神经网​​络

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摘要

We computationally study whether it is possible to stimulate a neuronal population in such a way that its mean firing rate increases without an increase of the population's net synchronization. For this, we use coordinated reset (CR) stimulation, which has previously been developed to desynchronize populations of oscillatory neurons. Intriguingly, delivered to a population of predominantly silent FitzHugh–Nagumo or Hindmarsh–Rose neurons at sufficient stimulation amplitudes, CR robustly causes a multi-frequency activation: different Arnold tongues such as 1 : 1 or n : m entrained neuronal clusters emerge, which consist of phase-shifted sub clusters. Owing to the clustering pattern the neurons' timing is well balanced, so that in total there is no synchronization. Our findings may contribute to the development of novel and safe stimulation treatments that specifically counteract cerebral hypo-activity without promoting pathological synchronization or inducing epileptic seizures.
机译:我们通过计算研究了是否有可能以这样一种方式刺激神经元种群,使其平均发动速率增加而不增加种群的净同步。为此,我们使用协调复位(CR)刺激,该刺激先前已被开发为使振荡神经元的群体不同步。有趣的是,CR以足够的刺激幅度传递给以沉默为主的FitzHugh–Nagumo或Hindmarsh–Rose神经元的群体,强烈地引起了多频率激活:出现了不同的Arnold舌头,例如1:1或n:m夹带的神经元簇,其中包括相移子簇的集合。由于聚类模式,神经元的时间安排非常平衡,因此总体上没有同步。我们的发现可能有助于开发新型和安全的刺激治疗方法,这些治疗方法可在不促进病理学同步或诱发癫痫发作的情况下,专门抵消脑活动不足。

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