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Synchrony Of Two Uncoupled Neurons Under Half Wave Sine Current Stimulation

机译:半波正弦电流刺激下两个非耦合神经元的同步

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Two uncoupled Hindmarsh-Rose neurons under different initial discharge patterns are stimulated by the half wave sine current;-and the synchronization mechanism of the two neurons is discussed by analyzing their membrane potentials and their interspike interval (ISI) distribution. Under the half wave sine current stimulation, the two uncoupled neurons under different initial conditions, whose parameter r (the parameter r is related to the membrane penetration of calcium ion, and reflects the changing speed of the slow adaptation current) is different or the same, can realize discharge synchronization (phase synchronization) or the full synchronization (state synchronization). The synchronization characteristics are mainly related to the frequency and the amplitude of the half wave sine current, and are little related to the parameter r and the initial state of the two neurons. This investigation shows the mechanism of the current's amplitude and its frequency affecting the synchronization process of neurons, and the neurons' discharge patterns and synchronization process can be adjusted and controlled by the current's amplitude and its frequency. This result is of far reaching importance to study synchronization and encode of many neurons or neural network, and provides the theoretic basis for studying the mechanism of some nervous diseases such as epilepsy and Alzheimer's disease by the slow wave of EEC.
机译:半波正弦电流刺激了不同初始放电模式下的两个未耦合的Hindmarsh-Rose神经元;并且-通过分析它们的膜电位和峰间间隔(ISI)分布,讨论了这两个神经元的同步机制。在半波正弦电流刺激下,两个未耦合的神经元在不同的初始条件下,其参数r(参数r与钙离子的膜穿透性有关,反映了慢适应电流的变化速度)不同或相同。 ,可以实现放电同步(相位同步)或完全同步(状态同步)。同步特性主要与半波正弦电流的频率和幅度有关,与参数r和两个神经元的初始状态无关。这项研究表明电流的幅度和频率影响神经元同步过程的机制,并且可以通过电流的幅度和频率来调节和控制神经元的放电模式和同步过程。这一结果对于研究许多神经元或神经网络的同步和编码具有十分重要的意义,并为研究EEC慢波对某些神经疾病如癫痫和阿尔茨海默氏病的机理提供了理论基础。

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