School of Mathematics and Information Science, Guangxi University, Nanning 53004, China.
Scientific Research Center of Engineering Mechanics, Guangxi University, Nanning 53004, China.
Comput Intell Neurosci. 2021 Dec 27;2021:4475184. doi: 10.1155/2021/4475184. eCollection 2021.
Pre-Bötzinger complex (PBC) is a necessary condition for the generation of respiratory rhythm. Due to the existence of synaptic gaps, delay plays a key role in the synchronous operation of coupled neurons. In this study, the relationship between synchronization and correlation degree is established for the first time by using ISI bifurcation and correlation coefficient, and the relationship between synchronization and correlation degree is discussed under the conditions of no delay, symmetric delay, and asymmetric delay. The results show that the phase synchronization of two coupling PBCs is closely related to the weak correlation, that is, the weak phase synchronization may occur under the condition of incomplete synchronization. Moreover, the time delay and coupling strength are controlled in the modified PBC network model, which not only reveals the law of PBC firing transition but also reveals the complex synchronization behavior in the coupled chaotic neurons. Especially, when the two coupled neurons are nonidentical, the complete synchronization will disappear. These results fully reveal the dynamic behavior of the PBC neural system, which is helpful to explore the signal transmission and coding of PBC neurons and provide theoretical value for further understanding respiratory rhythm.
预备性 Bötzinger 复合体(PBC)是产生呼吸节律的必要条件。由于存在突触间隙,延迟在耦合神经元的同步操作中起着关键作用。在这项研究中,首次通过使用互信息散度和相关系数建立了同步和相关度之间的关系,并讨论了在无延迟、对称延迟和不对称延迟条件下同步和相关度之间的关系。结果表明,两个耦合 PBC 的相位同步与弱相关性密切相关,即在不完全同步的情况下可能会发生弱相位同步。此外,在改进的 PBC 网络模型中控制时间延迟和耦合强度,不仅揭示了 PBC 点火跃迁的规律,而且揭示了耦合混沌神经元中的复杂同步行为。特别是,当两个耦合神经元不同时,完全同步将消失。这些结果充分揭示了 PBC 神经网络的动态行为,有助于探索 PBC 神经元的信号传输和编码,并为进一步理解呼吸节律提供理论价值。