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Chronic stimulation of cultured neuronal networks boosts low frequency oscillatory activity at theta and gamma with spikes phase-locked to gamma frequencies

机译:培养的神经元网络在提升theta和伽马尖峰低频振荡活动的慢性刺激锁相到伽马频率

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摘要

Slow wave oscillations in the brain are essential for coordinated network activity but have not been shown to self-organize in vitro. Here, the development of dissociated hippocampal neurons into an active network with oscillations on multi-electrode arrays was evaluated in the absence and presence of chronic external stimulation. Significant changes in signal power were observed in the range of 1-400 Hz with an increase in amplitude during bursts. Stimulation increased oscillatory activity primarily in the theta (4-11 Hz) and slow gamma (30-55 Hz) bands. Spikes were most prominently phase-locked to the slow gamma waves. Notably, the dissociated network self-organized to exhibit sustained delta, theta, beta and gamma oscillations without input from cortex, thalamus or organized pyramidal cell layers.
机译:大脑中的慢波振荡对于协调的网络活动至关重要,但尚未被证明在体外自组织。这里,在慢性外部刺激的情况下,评估将解离的海马神经元与多电极阵列上的振荡的有源网络的发展进行了评估。在1-400Hz的范围内观察到信号功率的显着变化,爆发过程中的幅度增加。刺激主要在θ(4-11Hz)和慢γ(30-55Hz)带中提高振荡活动。尖峰最突出地锁定到慢伽马波。值得注意的是,解离网络自组织以表现出持续的δ,θ,β和γ振荡,而没有从皮质,丘脑或有组织的金字塔细胞层输入。

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