期刊文献+

外源性锌离子对大鼠海马切片癫痫样放电的起源、传播与频率特性的调节作用 被引量:2

The Modulatory Effects of Exogenous Zn^(2+) on Propagation and Frequency of Epileptiform Discharges on Rat Hippocampal Slices
原文传递
导出
摘要 本研究采用多电极记录技术,在离体条件下研究外源性锌离子(Zn2+)对无镁人工脑脊液诱导的Sprague-Dawley大鼠海马切片癫痫样放电的起源、传播与频率特性的调节作用。结果表明:1μmol/L和100μmol/L的Zn2+作用于海马切片,不改变海马切片上癫痫样放电的起始位置,但能够降低癫痫样放电顺行和逆行两个方向的传播速度,并改变癫痫样放电不同频率范围成分所占的比例。以上结果提示,1μmol/L和100μmol/L的Zn2+可以对海马切片上的癫痫样放电起到调节作用,减慢癫痫样放电在网络中的传播速度,同时,可能对神经元放电活动起到去同步化的作用。 The modulatory effects of exogenous Zn2+ on initiation,propagation and frequency characteristics of epileptiform discharges induced by Mg2+-free artificial cerebrospinal fluid(ACSF) in hippocampal slices of Sprague-Dawley rats were examined by multi-electrode array(MEA) system.The main results of the present study are: the modulatory effects of 1 μmol/L and 100 μmol/L Zn2+ did not change the initiation site of the epileptiform discharges,but the antegrade and retrograde speed of epileptiform discharges were slowed down by perfusion of Zn2+,and the ratio of different frequency components were changed by Zn2+ application.These results imply that 1 μmol/L and 100 μmol/L Zn2+ play the neuromodulatory effects on epileptiform discharges in hippocampal slices,which can slow down the propagation speeds of epileptiform discharges in the network.Zn2+ may also play the desynchronization effects on the neural firing activity.
出处 《生物物理学报》 CAS CSCD 北大核心 2012年第2期119-130,共12页 Acta Biophysica Sinica
基金 上海市自然科学基金项目(11ZR1421800) 上海交通大学"医工(理)交叉研究基金"项目(G08PETZD05)
关键词 癫痫样放电 锌离子 微电极阵列 海马切片 Epileptiform discharges Zn2+ Micro-electrode array Hippocampal slice
  • 相关文献

参考文献5

二级参考文献158

  • 1Engel A K, Fries P, Singer W. Dynamic predictions: oscillations and synchrony in top-down processing. Nat Rev Neurosci, 2001, 2: 704-716
  • 2Csicsvari J, Jamieson B, Wise K D, et al. Mechanisms of gamma oscillations in the hippocampus of the behaving rat. Neuron, 2003, 37: 311-322
  • 3Klausberger T, Magill P J, Marton L F, et al. Brain-state and cell-type-specific firing of hippocarnpal interneurons in vivo. Nature, 2003, 421: 84-848
  • 4Vanderwolf C H. Hippocampal electrical activity and voluntary movement in the rat. Electroenceph Clin Neurophysiol, 1969, 26:407 -418
  • 5Buzsaki G. Hippocampal sharp waves: their origin and significance. Brain Res, 1986, 398:242-252
  • 6Ylinen A, Bragin A, Nadasdy Z, et al. Sharp wave-associated high-frequency oscillation (200Hz) in the intact hippocampus: network and intracellular mechanisms. J Neurosci, 1995, 15(1): 30-46
  • 7Bragin A, Mody I, Wilson C L, et al. Local generation of fast ripples in epileptic brain. J Neurosci, 2002, 22(5): 2012-2021
  • 8Dzhala V I, Staley K J. Mechanisms of fast ripples in the hippocampus. J Neurosci, 2004, 24(40): 8896-8906
  • 9Buszaki G, Horvath Z, Urioste R, et al. High-frequency network oscillation in the hippocampus. Science, 1992, 256:1025-1027
  • 10Traub R D, Draguhn A, Whittington M A, et al. Axonal gap junctions between principal neurons: a novel source of network oscillations, and perhaps epileptogenesis. Rev Neurosci, 2002, 13:1-30

共引文献6

同被引文献11

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部