首页> 外文会议>2012 31st Chinese Control Conference. >A model of the Endogenous Electrical Field Effect: Can Ephaptic Transmission Cause Neuronal Synchronization Independently?
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A model of the Endogenous Electrical Field Effect: Can Ephaptic Transmission Cause Neuronal Synchronization Independently?

机译:内源性电场效应的模型:传导传递是否可以独立引起神经元同步?

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An endogenous electrical field effect,i.e.,ephaptic transmission,occurs when an electric field associated with activity occurring in one neuron polarizes the membrane of another neuron.It is well established that field effects occur during pathological conditions,such as epilepsy, but less clear if they play a functional role in the healthy brain.Most of studies put excessive attention on the mechanism of chemical synapse.However, the mechanism of ephaptic transmission is still uncertin.Recently,some physiologic studies speculate that ephaptic transmission can cause neuronal synchronization,such as in teleost Mauthner cells.But this conclusion is not well verified.Here,a model is set up to study the effect of ephasptic transmission to neuronal synchronization independently without any other interactive ways. The role of neuronal heterogeneity to endogenous electrical field effect is also investigated. The simulation results showed that 1)Ephaptic transmission can be responible for independently inducing neuronal synchronization and the network shows higher synchronicity when the coupling strength increasing;2)In sufficiently heterogeneous ensembles,increasing coupling strength tends to desynchronize the network.
机译:当与在一个神经元中发生的活动相关的电场使另一神经元的膜极化时,就会发生内源性电场效应,即肾小球传播。众所周知,电场效应发生在诸如癫痫之类的病理条件下,但是如果不清楚它们在健康的大脑中发挥功能性作用。大多数研究都对化学突触的机制给予了过多的关注。然而,脑啡肽的传播机制仍未定。最近,一些生理研究推测,脑啡肽的传播会引起神经元的同步化,例如但是,这个结论尚未得到很好的验证。这里,建立了一个模型,以独立的方式研究ephasptic传递对神经元同步的影响,而没有任何其他交互方式。还研究了神经元异质性对内源性电场效应的作用。仿真结果表明:1)耦合传递强度增加时,信号传递可以独立地诱导神经元同步,网络显示出更高的同步性; 2)在足够异构的集成体中,耦合强度的增加往往会使网络失去同步性。

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