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Spiking patterns of a hippocampus model in electric fields |
Men Cong(门聪)a), Wang Jiang(王江) a)†, Qin Ying-Mei(秦迎梅)a), Wei Xi-Le(魏熙乐)a), Che Yan-Qiu(车艳秋)b), and Deng Bin(邓斌)a) |
a School of Electrical Engineering and Automation, Tianjin University, Tianjin 300072, China; b Tianjin Key Laboratory of Information Sensing and Intelligent Control, Tianjin University of Technology and Education, Tianjin 300222, China |
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Abstract We develop a model of CA3 neurons embedded in a resistive array to mimic the effects of electric fields from a new perspective. Effects of DC and sinusoidal electric fields on firing patterns in CA3 neurons are investigated in this study. The firing patterns can be switched from no firing pattern to burst or from burst to fast periodic firing pattern with the increase of DC electric field intensity. It is also found that the firing activities are sensitive to the frequency and amplitude of the sinusoidal electric field. Different phase-locking states and chaotic firing regions are observed in the parameter space of frequency and amplitude. These findings are qualitatively in accordance with the results of relevant experimental and numerical studies. It is implied that the external or endogenous electric field can modulate the neural code in the brain. Furthermore, it is helpful to develop control strategies based on electric fields to control neural diseases such as epilepsy.
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Received: 08 June 2011
Revised: 06 July 2011
Accepted manuscript online:
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PACS:
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87.19.L-
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(Neuroscience)
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05.45.-a
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(Nonlinear dynamics and chaos)
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Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 61072012, 60901035, and 50907044). |
Cite this article:
Men Cong(门聪), Wang Jiang(王江) , Qin Ying-Mei(秦迎梅), Wei Xi-Le(魏熙乐), Che Yan-Qiu(车艳秋), and Deng Bin(邓斌) Spiking patterns of a hippocampus model in electric fields 2011 Chin. Phys. B 20 128704
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[1] |
Johansen C 2000 Epidemiology 11 539
|
[2] |
Blackman F 1988 Bioelectromagnetics 9 215
|
[3] |
Fröhlich F and McCormick D A 2010 Neuron 67 129
|
[4] |
Gluckman B J, Neel E J, Netoff T I, Ditto W L, Spano M L and Schiff S J 1996 Journal of Neurophysiology 76 4202
|
[5] |
Park E H, Barreto E, Schiff S J, So P and Gluckman B J 2005 J. Comput. Neurosci. 19 53
|
[6] |
Francis J T, Gluckman B J and Schiff S J 2003 J. Neurosci. 23 7255
|
[7] |
Deans J K, Powell A D and Jefferys J G R 2007 J. Physiol. 583 555
|
[8] |
Laing C R and Longtin A 2003 Phys. Rev. E 67 051928
|
[9] |
Yang Z Q and Lu Q S 2006 Chin. Phys. 15 518
|
[10] |
Gao Z Y and Lu Q S 2007 Chin. Phys. 16 2479
|
[11] |
Hasegawa H 2000 Phys. Rev. E 61 718
|
[12] |
Lee S G and Kim S, 2006 Phys. Rev. E 73 041924
|
[13] |
Che Y Q, Wang J, Si W J and Fei X Y 2009 Chaos, Solitons and Fractals 39 454
|
[14] |
Laudanski J, Coombes S, Palmer A R and Sumner C J 2010 J. Neurophysiol. 103 1226
|
[15] |
Fellous J M, Houweling A R, Modi R H, Rao R P N, Tiesinga P H E and Sejnowski T J 2001 J. Neurophysiol. 85 1782
|
[16] |
Bressloff P C and Coombes S 1998 Phys. Rev. Lett. bf 81 2168
|
[17] |
Pinsky P F and Rinzel J 1994 J. Comput. Neurosci. 1 39
|
[18] |
Wang L and Liu S Q 2011 J. Dyn. Control 9 49
|
[19] |
Buzsaki G 2002 Neuron 33 325
|
[20] |
Berzhanskaya J, Gorchetchnikov A and Schiff S J 2007 it Neurocomputing 70 2091
|
[21] |
Traub R, Wong G, Miles R and Michelson H 1991 J. Neurophysiol. 66 635
|
[22] |
Durand D M 2003 Radiat. Prot. Dosimetry 106 325
|
[23] |
Gabbiani F and Metzner W 1999 J. Exp. Biol. 202 1267
|
[24] |
Gabbiani F, Metzner W, Wessel R and Koch C 1996 Nature (London) 384 564
|
[25] |
Lisman J E 1997 Trends. Neurosci. 20 38
|
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