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A Generalized Coherence Framework for Detecting and Characterizing Nonlinear Interactions in the Nervous System

机译:用于检测和表征神经系统中非线性相互作用的广义相干框架

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Objective: This paper introduces a generalized coherence framework for detecting and characterizing nonlinear interactions in the nervous system, namely cross-spectral coherence (CSC). CSC can detect different types of nonlinear interactions including harmonic and intermodulation coupling as present in static nonlinearities and also subharmonic coupling, which only occurs with dynamic nonlinearities. Methods: We verified the performance of CSC in model simulations with both static and dynamic nonlinear systems. We applied CSC to investigate nonlinear stimulus–response interactions in the human proprioceptive system. A periodic movement perturbation was imposed to the wrist when the subjects performed an isotonic wrist flexion. CSC analysis was performed between the perturbation and brain responses (electroencephalogram, EEG). Results: Both the simulation and the application demonstrated that CSC successfully detected different types of nonlinear interactions. High-order nonlinearities were revealed in the proprioceptive system, shown in harmonic and intermodulation coupling between the perturbation and EEG for all subjects. Subharmonic coupling was found in some subjects but not all. Conclusion: This paper provides a general tool to detect and characterize nonlinear nature and dynamics of the nervous system. The application of CSC on the experimental dataset indicates a complex nonlinear dynamics in the proprioceptive system. Significance: This novel framework 1) unveils the nonlinear neural dynamics in a more complete way than the existing coherence measures, and 2) is more suitable for estimating the input–output relation regarding both phase and amplitude compared to phase synchrony measures (which only consider phase coupling). Subharmonic coupling is reported in human proprioceptive system for the first time.
机译:目的:本文介绍了一种用于检测和表征神经系统中非线性相互作用的广义相干框架,即互谱相干(CSC)。 CSC可以检测静态非线性中存在的不同类型的非线性相互作用,包括谐波和互调耦合,以及仅在动态非线性中才会发生的亚谐波耦合。方法:我们在静态和动态非线性系统的模型仿真中验证了CSC的性能。我们应用CSC来研究人类本体感受系统中的非线性刺激-反应相互作用。当受试者进行等渗的腕部屈曲时,会对腕部施加周期性的运动扰动。在摄动和大脑反应(脑电图,EEG)之间进行了CSC分析。结果:仿真和应用均表明CSC成功地检测到不同类型的非线性相互作用。在本体感受系统中揭示了高阶非线性,对所有受检者,其摄动和EEG之间的谐波和互调耦合均显示出来。在某些对象中发现了次谐波耦合,但并非全部。结论:本文提供了检测和表征神经系统非线性性质和动力学的通用工具。 CSC在实验数据集上的应用表明本体感受系统中存在复杂的非线性动力学。启示:这个新颖的框架1)以比现有相干性测度更完整的方式揭示非线性神经动力学,以及2)与相位同步测度(仅考虑相干性测度)相比,更适合于估计关于相位和幅度的输入-输出关系。相耦合)。亚谐耦合是人类本体感受系统中的首次报道。

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