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首页> 外文期刊>Journal of Computational Neuroscience >Annihilation of Single Cell Neural Oscillations by Feedforward and Feedback Control
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Annihilation of Single Cell Neural Oscillations by Feedforward and Feedback Control

机译:通过前馈和反馈控制消除单细胞神经振荡

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摘要

Annihilation of neural oscillation by localized electrical stimulation has been shown to be a promising treatment modality in a number of neural diseases like Parkinson disease or epilepsy. The contributions presented in this manuscript comprise newly developed stimulation schemes to achieve annihilation of action potential generation and action potential propagation. The ability to achieve oscillation annihilation is demonstrated in computer simulations with a single compartment nerve cell model (annihilation of action potential generation), and with a multi-compartment nerve fiber model (annihilation of action potential propagation). Additionally, we show superiority of the new feedback based schemes over the feedforward schemes in terms of effectiveness, phase robustness, and reduced sensitivity to disturbances. At the end we propose a conditioned switched feedback control regime to be applied in actual applications, where oscillation annihilation is needed.
机译:在局部神经刺激如帕金森病或癫痫病中,通过局部电刺激消除神经振荡是一种有前途的治疗方式。该手稿中的贡献包括新近开发的刺激方案,以实现action灭动作电位的产生和动作电位的传播。在单室神经细胞模型(动作电位产生的an灭)和多室神经纤维模型(动作电位传播的an灭)的计算机模拟中证明了实现振荡hil灭的能力。此外,在有效性,相位鲁棒性和对干扰的敏感性降低方面,我们展示了基于新反馈的方案优于前馈方案。最后,我们提出了一种条件开关反馈控制方案,该方案可用于需要振荡oscillation灭的实际应用中。

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