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Open loop optogenetic control of simulated cortical epileptiform activity

机译:模拟皮层癫痫样活动的开环光遗传学控制

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We present a model for the use of open loop optogenetic control to inhibit epileptiform activity in a meso scale model of the human cortex. The meso scale cortical model first developed by Liley et al. (2001) is extended to two dimensions and the nature of the seizure waves is studied. We adapt to the meso scale a 4 state functional model of Channelrhodopsin-2 (ChR2) ion channels. The effects of pulsed and constant illumination on the conductance of these ion channels is presented. The inhibitory cell population is targeted for the application of open loop control. Seizure waves are successfully suppressed and the inherent properties of the optogenetic channels ensures charge balance in the cortex, protecting it from damage.
机译:我们提出了使用开环光遗传学控制来抑制人类皮质的介观规模模型中的癫痫样活动的模型。 Liley等人首先开发的介观皮层模型。 (2001年)扩展到二维和癫痫发作波的性质进行了研究。我们适应介观规模的Channelrhodopsin-2(ChR2)离子通道的4状态功能模型。提出了脉冲照明和恒定照明对这些离子通道电导的影响。抑制性细胞群的目标是开环控制的应用。癫痫波得到了成功的抑制,光遗传学通道的固有特性确保了皮层中的电荷平衡,从而保护了皮层免受损坏。

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