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Optogenetic stimulation effectively enhances intrinsically generated network synchrony

机译:光遗传刺激有效增强内在产生的网络同步

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摘要

Synchronized bursting is found in many brain areas and has also been implicated in the pathophysiology of neuropsychiatric disorders such as epilepsy, Parkinson’s disease, and schizophrenia. Despite extensive studies of network burst synchronization, it is insufficiently understood how this type of network wide synchronization can be strengthened, reduced, or even abolished. We combined electrical recording using multi-electrode array with optical stimulation of cultured channelrhodopsin-2 transducted hippocampal neurons to study and manipulate network burst synchronization. We found low frequency photo-stimulation protocols that are sufficient to induce potentiation of network bursting, modifying bursting dynamics, and increasing interneuronal synchronization. Surprisingly, slowly fading-in light stimulation, which substantially delayed and reduced light-driven spiking, was at least as effective in reorganizing network dynamics as much stronger pulsed light stimulation. Our study shows that mild stimulation protocols that do not enforce particular activity patterns onto the network can be highly effective inducers of network-level plasticity.
机译:同步爆裂在许多大脑区域都有发现,并且还与神经精神疾病如癫痫,帕金森氏病和精神分裂症的病理生理有关。尽管对网络突发同步进行了广泛的研究,但是对于如何增强,减少甚至取消这种类型的网络范围同步,仍然知之甚少。我们将使用多电极阵列的电记录与培养的通道视紫红质2转导的海马神经元的光刺激相结合,以研究和操纵网络突发同步。我们发现低频光刺激协议足以诱发网络爆发的增强,修改爆发动态并增加神经元间的同步。出人意料的是,缓慢淡入的光刺激(大大延迟并减少了光驱动的尖峰)在重组网络动力学方面至少比更强的脉冲光刺激有效。我们的研究表明,温和的刺激方案不会将特定的活动模式强制施加到网络上,可以有效地诱导网络级的可塑性。

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