首页> 外文OA文献 >Disentanglement of local field potential sources by independent component analysis
【2h】

Disentanglement of local field potential sources by independent component analysis

机译:通过独立的分量分析解开局域电势源

摘要

The spontaneous activity of working neurons yields synaptic currents that mix up in the volume conductor. This activity is picked up by intracerebral recording electrodes as local field potentials (LFPs), but their separation into original informative sources is an unresolved problem. Assuming that synaptic currents have stationary placing we implemented independent component model for blind source separation of LFPs in the hippocampal CA1 region. After suppressing contaminating sources from adjacent regions we obtained three main local LFP generators. The specificity of the information contained in isolated generators is much higher than in raw potentials as revealed by stronger phase-spike correlation with local putative interneurons. The spatial distribution of the population synaptic input corresponding to each isolated generator was disclosed by current-source density analysis of spatial weights. The found generators match with axonal terminal fields from subtypes of local interneurons and associational fibers from nearby subfields. The found distributions of synaptic currents were employed in a computational model to reconstruct spontaneous LFPs. The phase-spike correlations of simulated units and LFPs show laminar dependency that reflects the nature and magnitude of the synaptic currents in the targeted pyramidal cells. We propose that each isolated generator captures the synaptic activity driven by a different neuron subpopulation. This offers experimentally justified model of local circuits creating extracellular potential, which involves distinct neuron subtypes.
机译:工作神经元的自发活动产生突触电流,该突触电流在体导体中混合。这种活动被脑内记录电极作为局部场电势(LFP)吸收,但是将其分离成原始信息源是一个尚未解决的问题。假定突触电流具有固定位置,我们为海马CA1区LFP的盲源分离实现了独立的组件模型。在抑制了来自相邻区域的污染源之后,我们获得了三个主要的本地LFP发生器。孤立的生成器中包含的信息的特异性比原始电势中的信息高得多,这与与本地推定的中间神经元更强的相位峰值相关性所揭示。通过空间权重的电流源密度分析,揭示了与每个隔离的生成器相对应的种群突触输入的空间分布。找到的生成器与局部中间神经元的子类型的轴突末端场和附近子场的关联纤维相匹配。所发现的突触电流分布在计算模型中用于重建自发LFP。模拟单元和LFP的相位峰值相关性显示层流依赖性,这反映了目标锥体细胞中突触电流的性质和大小。我们建议每个孤立的生成器捕获由不同的神经元亚群驱动的突触活动。这提供了产生细胞外电位的局部回路的实验证明模型,其中涉及不同的神经元亚型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号