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周期性刺激期间兴奋性和抑制性神经元的差异调节

Differential Modulation of Excitatory and Inhibitory Neurons during Periodic Stimulation.

作者信息

Mahmud Mufti, Vassanelli Stefano

机构信息

NeuroChip Laboratory, Department of Biomedical Sciences, University of PadovaPadova, Italy; Institute of Information Technology, Jahangirnagar UniversitySavar, Dhaka, Bangladesh.

NeuroChip Laboratory, Department of Biomedical Sciences, University of Padova Padova, Italy.

出版信息

Front Neurosci. 2016 Feb 25;10:62. doi: 10.3389/fnins.2016.00062. eCollection 2016.

Abstract

Non-invasive transcranial neuronal stimulation, in addition to deep brain stimulation, is seen as a promising therapeutic and diagnostic approach for an increasing number of neurological diseases such as epilepsy, cluster headaches, depression, specific type of blindness, and other central nervous system disfunctions. Improving its effectiveness and widening its range of use may strongly rely on development of proper stimulation protocols that are tailored to specific brain circuits and that are based on a deep knowledge of different neuron types response to stimulation. To this aim, we have performed a simulation study on the behavior of excitatory and inhibitory neurons subject to sinusoidal stimulation. Due to the intrinsic difference in membrane conductance properties of excitatory and inhibitory neurons, we show that their firing is differentially modulated by the wave parameters. We analyzed the behavior of the two neuronal types for a broad range of stimulus frequency and amplitude and demonstrated that, within a small-world network prototype, parameters tuning allow for a selective enhancement or suppression of the excitation/inhibition ratio.

摘要

除了深部脑刺激外,无创经颅神经刺激被视为一种有前景的治疗和诊断方法,可用于治疗越来越多的神经系统疾病,如癫痫、丛集性头痛、抑郁症、特定类型的失明以及其他中枢神经系统功能障碍。提高其有效性并扩大其应用范围可能强烈依赖于开发适合特定脑回路的适当刺激方案,这些方案基于对不同神经元类型对刺激反应的深入了解。为此,我们对受正弦刺激的兴奋性和抑制性神经元的行为进行了模拟研究。由于兴奋性和抑制性神经元在膜电导特性上的内在差异,我们表明它们的放电受到波形参数的不同调制。我们分析了这两种神经元类型在广泛的刺激频率和幅度范围内的行为,并证明在小世界网络原型中,参数调整可实现对兴奋/抑制比的选择性增强或抑制。

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