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Weak Field-Induced Evolution of Spiral Wave in Small-World Networks of Hodgkin–Huxley Neurons

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摘要 An external weak electric field is introduced into the small-world networks of Hodgkin–Huxley neurons to study the control and breakup of a spiral wave.The effect of an external electric field on the neurons in the small-world network is described by an additive perturbation on the membrane potentials of neurons at the cellular level,in which an additive term VE is imposed on the physiological membrane potential.A statistical factor of synchronization is used to measure the collective behaviour of spiral waves by changing the electric field;it is confirmed that a smaller factor of synchronization is associated with the survival of a spiral wave.In the case of no channel noise,the spiral wave could be removed under a certain intensity of constant electric field;it keeps robustly to the weak electric field when the electric field changes periodically.In the case of weak channel noise,a breakup of the spiral wave is observed when the intensity of the electric field exceeds certain thresholds,which could be measured from the curve for synchronization factors.No drift of the spiral wave is observed under the weak electric field.
作者 WANG Ya-Min LIU Yong WANG Jing LIU Yu-Rong 王亚民;刘勇;王晶;刘玉荣(School of Mathematical Science,Yangzhou University,Yangzhou 225002;Basis Course of Lianyungang Technical College,Lianyungang 222006;School of Mathematical Science,Yancheng Teachers University,Yancheng 224009)
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2012年第8期292-296,共5页 中国物理快报(英文版)
基金 Supported by the Qing Lan Project of Jiangsu Province under Grant No 2010 the National Natural Science Foundation of China under Grant Nos 60774073 and 61074129 the Natural Science Foundation of Jiangsu Province of China under Grant No BK2010313 the Postgraduate Research and Innovation Plan of Jiangsu under Grant No CXLX11-0993.
关键词 WAVE field ADDITIVE
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