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Synchrony and Desynchrony in Integrate-and-Fire Oscillators

机译:集成和触发振荡器中的同步和不同步

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摘要

Due to many experimental reports of synchronous neural activity in the brain, there is much interest in understanding synchronization in networks of neural oscillators and its potential for computing perceptual organization. Contrary to Hopfield and Herz (1995), we find that networks of locally coupled integrate-and-fire oscillators can quickly synchronize. Furthermore, we examine the time needed to synchronize such networks. We observe that these networks synchronize at times proportional to the logarithm of their size, and we give the parameters used to control the rate of synchronization. Inspired by locally excitatory globally inhibitory oscillator network (LEGION) dynamics with relaxation oscillators (Terman & Wang, 1995), we find that global inhibition can play a similar role of desynchronization in a network of integrate-and-fire oscillators. We illustrate that a LEGION architecture with integrate-and-fire oscillators can be similarly used to address image analysis.
机译:由于大脑中同步神经活动的许多实验报告,人们对理解神经振荡器网络中的同步及其在计算感知组织方面的潜力非常感兴趣。与Hopfield和Herz(1995)相反,我们发现本地耦合的集成和发射振荡器的网络可以快速同步。此外,我们检查了同步此类网络所需的时间。我们观察到这些网络有时与它们的大小的对数成正比地进行同步,并且给出了用于控制同步速率的参数。受局部振动的全球抑制性振荡器网络(LEGION)动力学与弛豫振荡器的启发(Terman&Wang,1995),我们发现全局抑制可以在集成点火振荡器网络中起类似的去同步作用。我们说明了具有积分和发射振荡器的LEGION体系结构可以类似地用于图像分析。

著录项

  • 来源
    《Neural computation》 |1999年第7期|1595-1619|共25页
  • 作者单位

    Department of Physics, The Ohio State University, Columbus, Ohio 43210, U.S.A.;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:12:20

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