首页> 外文期刊>Biological Cybernetics: Communication and Control in Organisms and Automata: = Nachrichtenubertragung, Nachrichtenverarbeitung, Steuerung und Regelung in Organismen und in Automaten >Information filtering by coincidence detection of synchronous population output: analytical approaches to the coherence function of a two-stage neural system
【24h】

Information filtering by coincidence detection of synchronous population output: analytical approaches to the coherence function of a two-stage neural system

机译:同步群体输出的重合检测信息过滤:两级神经系统相干功能的分析方法

获取原文
获取原文并翻译 | 示例
           

摘要

Information about time-dependent sensory stimuli is encoded in the activity of neural populations; distinct aspects of the stimulus are read out by different types of neurons: while overall information is perceived by integrator cells, so-calledcoincidence detectorcells are driven mainly by the synchronous activity in the population that encodes predominantly high-frequency content of the input signal (high-pass information filtering). Previously, an analytically accessible statistic called the partial synchronous output was introduced as a proxy for the coincidence detector cell's output in order to approximate its information transmission. In the first part of the current paper, we compare the information filtering properties (specifically, the coherence function) of this proxy to those of a simple coincidence detector neuron. We show that the latter's coherence function can indeed be well-approximated by the partial synchronous output with a time scale and threshold criterion that are related approximately linearly to the membrane time constant and firing threshold of the coincidence detector cell. In the second part of the paper, we propose an alternative theory for the spectral measures (including the coherence) of the coincidence detector cell that combines linear-response theory for shot-noise driven integrate-and-fire neurons with a novel perturbation ansatz for the spectra of spike-trains driven by colored noise. We demonstrate how the variability of the synaptic weights for connections from the population to the coincidence detector can shape the information transmission of the entire two-stage system.
机译:关于时间依赖性感官刺激的信息在神经群体的活动中编码;刺激的独特方面被不同类型的神经元读出:虽然整体信息被集成电池察觉,所以所谓的incelid detectorcells主要由群体中的同步活动,它们主要的输入信号的高频含量(高-pass信息过滤)。以前,引入了称为部分同步输出的分析可接近的统计作为易于检测器单元的输出的代理,以便近似其信息传输。在目前纸张的第一部分中,我们将该代理的信息过滤属性(具体地,相干功能)与简单的重合探测器神经元的信息进行比较。我们表明后者的相干函数确实可以通过具有时间尺度和阈值标准的部分同步输出近似地近似,所述阈值标准与旋转探测器单元的膜时间常数和烧制阈值大致线性相关。在本文的第二部分中,我们提出了一种替代探测器细胞的光谱措施(包括相干)的替代理论,该探测器细胞结合了线性 - 响应理论的射击响应理论与新的扰动Ansatz进行了一种新的扰动由彩色噪声驱动的尖峰列车的光谱。我们展示了如何从群体到符合探测器的连接的突触权重的变化可以塑造整个两级系统的信息传输。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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