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国家自然科学基金(11365014)

作品数:6 被引量:52H指数:4
相关作者:马军王春妮王亚李文超更多>>
相关机构:兰州理工大学更多>>
发文基金:国家自然科学基金更多>>
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A review for dynamics of collective behaviors of network of neurons被引量:19
2015年
The nervous system is composed of a large number of neurons, and the electrical activities of neurons can present multiple modes during the signal transmission between neurons by changing intrinsic bifurcation parameters or under appropriate external forcing. In this review, the dynamics for neuron, neuronal network is introduced, for example, the mode transition in electrical activity, functional role of autapse connection, bifurcation verification in biological experiments, interaction between neuron and astrocyte, noise effect, coherence resonance, pattern formation and selection in network of neurons. Finally, some open problems in this field such as electromagnetic radiation on electrical activities of neuron, energy consumption in neurons are presented.
MA JunTANG Jun
关键词:神经元网络神经元电活动星形胶质细胞生物学实验
Autapse-induced target wave, spiral wave in regular network of neurons被引量:12
2014年
Autapse is a type of synapse that connects axon and dendrites of the same neuron, and the effect is often detected by close-loop feedback in axonal action potentials to the owned dendritic tree. An artificial autapse was introduced into the Hindmarsh-Rose neuron model, and a regular network was designed to detect the regular pattern formation induced by autapse. It was found that target wave emerged in the network even when only a single autapse was considered. By increasing the(autapse density) number of neurons with autapse, for example, a regular area(2×2, 3×3, 4×4, 5×5 neurons) under autapse induced target wave by selecting the feedback gain and time-delay in autapse. Spiral waves were also observed under optimized feedback gain and time delay in autapses because of coherence-like resonance in the network induced by some electric autapses connected to some neurons. This confirmed that the electric autapse has a critical role in exciting and regulating the collective behaviors of neurons by generating stable regular waves(target waves, spiral waves) in the network. The wave length of the induced travelling wave(target wave, spiral wave), because of local effect of autapse, was also calculated to understand the waveprofile in the network of neurons.
QIN HuiXinMA JunWANG ChunNiCHU RunTong
关键词:神经元模型神经元网络螺旋波反馈增益
神经元网络内自突触诱发的靶波和螺旋波
神经元自突触对神经元动作电位的调制作用可用一个延迟反馈来刻画.研究发现:神经元自突触在正反馈作用下可以显著改变神经元放电行为.以一类简化的神经元模型在二维空间构造规则网络,研究自突触分布诱发的各类时空斑图行为,探索神经系...
马军靳伍银秦会欣王春妮
关键词:神经元网络螺旋波
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基于亥姆霍兹定理计算动力学系统的哈密顿能量函数被引量:8
2016年
亥姆霍兹定理表明任意空间矢量场可以分解为涡旋场和梯度场的叠加.由于电磁场变化和电磁波传播则导致电磁场能量的迁移,动力学振子和神经元处于复杂电磁环境下必然伴随能量的吸收和释放.在非线性混沌电路、电容器充电放电以及电感线圈感应过程中都伴随着能量的转换和迁移.包含量纲的非线性振荡电路可利用标度变换方法转换为无量纲的动力学方程.利用平均场理论,电场能量和磁场能量的转换可用若干非线性振荡电路的动力学方程来刻画.基于亥姆霍兹定理来研究一类无量纲非线性动力学系统的哈密顿能量计算问题,对于实际的非线性振荡电路,通过标度变换可快速计算其能量函数.该结果对于动力学系统自适应控制有重要的参考价值.
王春妮王亚马军
关键词:亥姆霍兹定理能量函数振荡电路混沌系统
Energy dependence on the electric activities of a neuron
2015年
A nonlinear circuit can be designed by using inductor, resistor, capacitor and other electric devices, and the electromagnetic field energy can be released from the circuit in the oscillating state. The generation of spikes or bursting states in neurons could be energetically a costly process. Based on the Helmholtz's theorem, a Hamilton energy function is defined to detect the energy shift induced by transition of electric modes in a Hindmarsh–Rose neuron. It is found that the energy storage is dependent on the external forcing, and energy release is associated with the electric mode. As a result, the bursting state and chaotic state could be helpful to release the energy in the neuron quickly.
宋欣林靳伍银马军
关键词:神经元电活动HAMILTON非线性电路亥姆霍兹定理
时变耦合下忆阻电路的同步被引量:2
2015年
基于Lyapunov稳定理论,研究了一类三阶忆阻器混沌电路系统在单向线性耦合下实现同步的可靠性问题。在临界值上选择恒定的控制器增益则容易实现两个混沌系统的同步;控制器增益时变下,一定强度范围内也可以实现同步。进一步通过数值方法计算了耦合增益对控制器平均功耗和达到同步暂态时间的影响。
宋欣林王春妮李文超马军
关键词:混沌通信
Transition of electric activity of neurons induced by chemical and electric autapses被引量:21
2015年
Autapse connected to the neuron can change the electric activity of neuron. The effect of autapse on neuronal activity is often described by adding an additive forcing current along a close loop, which is described by a time-delayed feedback on the membrane potential. Neuron often responds to electric autapse forcing sensitively and quickly, while the chemical autapse changes the electric activity of neuron slowly. By applying external forcing, a shift transition of electric activity can be more easily induced by the electric autapse than the chemical autapse. Our results confirm that chemical autapse can enhance and/or suppress the transition of electric activity with excitable or inhibitory type driven by electric autapse, vice versa. It indicates that an appropriate switch-off-on for autapse can make the neuron give different types of response to external forcing. Particularly, cooperation and competition between chemical and electric autapse help neuron response to external forcing in the most reliable way.
SONG XinLinWANG ChunNiMA JunTANG Jun
关键词:神经元活动电活动膜电位兴奋性
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