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Phase-dependent Stimulation for Modulating Phase-amplitude Coupling: A Computational Modeling Approach

机译:基于相位的激励,用于调制相-幅耦合:一种计算建模方法

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Phase-amplitude coupling (PAC), in which the amplitude of a faster neural oscillation couples to the phase of a slower rhythm, is one of the most common representations of complex neuronal rhythmic activities. In a healthy brain, PAC accompanies cognitive function, and abnormal patterns of PAC have been linked to several neurological disorders. Among the various brain neuromodulation techniques, phase-dependent stimulation has a strong potential to modulate PAC levels. In this study, we utilize a computational model in the NEURON environment based on a detailed mathematical model of neuronal populations, consisting of networks with both excitatory and inhibitory neurons, to simulate PAC generation. The model was then used to investigate the modulatory effects of phase-dependent stimulation on the generated PAC. Simulated data from the model shows that stimulation locked to the phase of slower rhythms increased PAC level during stimulation. These results demonstrate the capacity of phase-dependent stimulation to modulate PAC, which could allow for applications in the treatment of neurological disorders associated with abnormal PAC, such as Parkinson's disease.Clinical Relevance— Analyzing the origins of neuronal PAC and developing a brain stimulation technique for modulating the level of PAC can facilitate the development of novel treatment methods for neurological disorders associated with abnormal cross-frequency coupling.
机译:相幅耦合(PAC)是较快的神经振荡的幅度与较慢的节奏的相位耦合的相位-幅度耦合(PAC),是最复杂的神经节律活动的代表之一。在健康的大脑中,PAC伴随着认知功能,并且PAC的异常模式与几种神经系统疾病有关。在各种大脑神经调节技术中,阶段依赖性刺激具有调节PAC水平的强大潜力。在这项研究中,我们基于神经元种群的详细数学模型(包括具有兴奋性神经元和抑制​​性神经元的网络)在NEURON环境中利用计算模型来模拟PAC生成。然后将该模型用于研究相位依赖性刺激对生成的PAC的调节作用。来自模型的模拟数据表明,刺激被锁定在较慢的节奏阶段,从而在刺激过程中增加了PAC水平。这些结果证明了相位依赖性刺激调节PAC的能力,这可能使其可用于治疗与异常PAC相关的神经系统疾病,如帕金森氏病。用于调节PAC水平的方法可以促进开发与异常跨频耦合相关的神经系统疾病的新治疗方法。

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