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首页> 外文期刊>International Journal of Neural Systems >RESPONSIVE NEUROMODULATORS BASED ON ARTIFICIAL NEURAL NETWORKS USED TO CONTROL SEIZURE-LIKE EVENTS IN A COMPUTATIONAL MODEL OF EPILEPSY
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RESPONSIVE NEUROMODULATORS BASED ON ARTIFICIAL NEURAL NETWORKS USED TO CONTROL SEIZURE-LIKE EVENTS IN A COMPUTATIONAL MODEL OF EPILEPSY

机译:基于人工神经网络的反应性神经调节剂,用于在癫痫的计算模型中控制类似发作的事件

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摘要

Deep brain stimulation (DBS) has been noted for its potential to suppress epileptic seizures. To date, DBS has achieved mixed results as a therapeutic approach to seizure control. Using a computational model, we demonstrate that high-complexity, biologically-inspired responsive neuromodulation is superior to periodic forms of neuromodulation (responsive and non-responsive) such as those implemented in DBS, as well as neuromodulation using random and random repetitive-interval stimulation. We configured radial basis function (RBF) networks to generate outputs modeling interictal time series recorded from rodent hippocampal slices that were perfused with low Mg2+/high K+ solution. We then compared the performance of RBF-based interictal modulation, periodic biphasic-pulse modulation, random modulation and random repetitive modulation on a cognitive rhythm generator (CRG) model of spontaneous seizure-like events (SLEs), testing efficacy of SLE control. A statisticallysignificant improvement in SLE mitigation for the RBF interictal modulation case versus the periodic and random cases was observed, suggesting that the use of biologically-inspired neuromodulators may achieve better results for the purpose of electrical control of seizures in a clinical setting.
机译:深脑刺激(DBS)具有抑制癫痫发作的潜力。迄今为止,作为控制癫痫发作的治疗方法,星展集团已经取得了好坏参半的结果。使用计算模型,我们证明了高复杂度,受生物启发的响应性神经调节优于周期性形式的神经调节(响应性和非响应性),例如在DBS中实施的周期性调节,以及使用随机和随机重复间隔刺激的神经调节。我们配置了径向基函数(RBF)网络以生成模拟从啮齿类动物海马切片记录的间隔时间序列的输出,这些啮齿动物海马切片灌入了低Mg2 + /高K +溶液。然后,我们在自发性发作样事件(SLE)的认知节律生成器(CRG)模型上比较了基于RBF的心间调制,周期性双相脉冲调制,随机调制和随机重复调制的性能,测试了SLE控制的功效。与周期性和随机病例相比,RBF发作间期调节病例在SLE缓解方面有统计学意义的改善,这表明在临床环境中,以电学方式控制癫痫发作,使用生物启发性神经调节剂可能会取得更好的结果。

著录项

  • 来源
    《International Journal of Neural Systems 》 |2011年第5期| p.367-383| 共17页
  • 作者单位

    The first authors contributed equally to the work, with Sinisa Colic responsible for development and training of the RBF models, and Osbert C. Zalay responsible for development and implementation of the SLE model, control protocol and validation of control efficacy.Edwards S. Rogers Sr. Department of Electrical and Computer Engineering, University of Toronto, Toronto, ON, M5S 3G4, CanadaThe first authors contributed equally to the work, with Sinisa Colic responsible for development and training of the RBF models, and Osbert C. Zalay responsible for development and implementation of the SLE model, control protocol and validation of control efficacy.Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON, M5S 3G9, CanadaCorresponding author.Edwards S. Rogers Sr. Department of Electrical and Computer Engineering, University of Toronto, Toronto, ON, M5S 3G4, CanadaInstitute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON, M5S 3G9, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Epilepsy; ictal; seizure-like event; radial basis function; stimulator; coupled network oscillator.;

    机译:癫痫;ic癫痫样事件;径向基函数刺激物耦合网络振荡器。;

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