K Usha, P A Subha
Department of Physics, University of Calicut, Kerala 673635, India.
Department of Physics, Farook College, University of Calicut, Kerala 673632, India.
Biosystems. 2019 Apr;178:1-9. doi: 10.1016/j.biosystems.2019.01.005. Epub 2019 Jan 9.
We analyze single and coupled Hindmarsh-Rose neurons in the presence of a time varying electromagnetic field which results from the exchange of ions across the membrane. Memristors are used to model the relation between magnetic flux of the electromagnetic field and the membrane potential of interacting neurons. The bifurcation analysis of Hindmarsh-Rose neurons has been carried out by varying the modulation intensity of induced current on the membrane potential. Many important dynamical behaviors such as synchrony, desynchrony, amplitude death, anti-phase oscillations, coexistence of resting and spiking state, and near death rare spikes are observed when the neurons are coupled using electrical and chemical synapses. In all cases the transverse Lyapunov exponents are plotted to observe the point of transition from desynchrony to synchrony. The memristor based analysis on neural networks can contribute to biological system modeling and can be used as a synapse in hardware of artificial neural networks.
我们分析了存在由跨膜离子交换产生的时变电磁场时的单个和耦合Hindmarsh-Rose神经元。忆阻器用于模拟电磁场的磁通量与相互作用神经元的膜电位之间的关系。通过改变诱导电流对膜电位的调制强度,对Hindmarsh-Rose神经元进行了分岔分析。当使用电突触和化学突触耦合神经元时,观察到许多重要的动力学行为,如同步、去同步、振幅死亡、反相振荡、静息和尖峰状态共存以及濒死罕见尖峰。在所有情况下,绘制横向李雅普诺夫指数以观察从去同步到同步的转变点。基于忆阻器的神经网络分析有助于生物系统建模,并可作为人工神经网络硬件中的突触。