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Dynamics of regional brain activity in epilepsy: a cross-disciplinary study on both intracranial and scalp-recorded epileptic seizures

机译:癫痫区域脑活动的动力学:颅内和头皮记录的癫痫发作的跨学科研究

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摘要

Objective. Recent cross-disciplinary literature suggests a dynamical analogy between earthquakes and epileptic seizures. This study extends the focus of inquiry for the applicability of models for earthquake dynamics to examine both scalp-recorded and intracranial electroencephalogram recordings related to epileptic seizures. Approach. First, we provide an updated definition of the electric event in terms of magnitude and we focus on the applicability of (ⅰ) a model for earthquake dynamics, rooted in a nonextensive Tsallis framework, (ⅱ) the traditional Gutenberg and Richter law and (ⅲ) an alternative method for the magnitude-frequency relation for earthquakes. Second, we apply spatiotemporal analysis in terms of nonextensive statistical physics and we further examine the behavior of the parameters included in the nonextensive formula for both types of electroencephalogram recordings under study. Main results. We confirm the previously observed power-law distribution, showing that the nonextensive formula can adequately describe the sequences of electric events included in both types of electroencephalogram recordings. We also show the intermittent behavior of the epileptic seizure cycle which is analogous to the earthquake cycles and we provide evidence of self-affinity of the regional electroencephalogram epileptic seizure activity. Significance. This study may provide a framework for the analysis and interpretation of epileptic brain activity and other biological phenomena with similar underlying dynamical mechanisms.
机译:目的。最近的跨学科文献表明,地震与癫痫发作之间有一种动态的类比。这项研究扩展了对地震动力学模型的适用性进行调查的重点,以检查与癫痫发作有关的头皮记录和颅内脑电图记录。方法。首先,我们提供了有关电事件幅度的更新定义,我们关注(ⅰ)扎根于非扩展Tsallis框架的地震动力学模型的适用性;(ⅱ)传统的古腾堡和里希特定律,以及(ⅲ )地震幅度-频率关系的另一种方法。其次,我们根据非广义统计物理方法进行时空分析,并进一步研究了所研究的两种脑电图记录的非广义公式中包含的参数的行为。主要结果。我们证实了先前观察到的幂律分布,表明非扩展公式可以充分描述两种脑电图记录中所包括的电事件的序列。我们还显示了类似于地震周期的癫痫发作周期的间歇行为,并且我们提供了区域脑电图癫痫发作活动的自我亲和力的证据。意义。这项研究可以为癫痫脑活动和具有类似潜在动力学机制的其他生物学现象的分析和解释提供一个框架。

著录项

  • 来源
    《Journal of neural engineering》 |2014年第2期|026012.1-026012.16|共16页
  • 作者单位

    Department of Electronic and Computer Engineering, Brunei University Uxbridge, Middlesex,UB8 3PH, UK;

    Department of Biomedical Engineering, Technological Educational Institute of Athens,Ag. Spyridonos, Egaleo, Athens 12210, Greece;

    Department of Neurosurgery, Athens Medical School, Epilepsy Surgery Unit, Evangelismos Hospital,45-47 Ipsilantou Str, Athens 10676, Greece;

    Department of Neurosurgery, Athens Medical School, Epilepsy Surgery Unit, Evangelismos Hospital,45-47 Ipsilantou Str, Athens 10676, Greece;

    Department of Neurosurgery, Athens Medical School, Epilepsy Surgery Unit, Evangelismos Hospital,45-47 Ipsilantou Str, Athens 10676, Greece;

    Department of Biomedical Engineering, Technological Educational Institute of Athens,Ag. Spyridonos, Egaleo, Athens 12210, Greece;

    Department of Neurosurgery, Athens Medical School, Epilepsy Surgery Unit, Evangelismos Hospital,45-47 Ipsilantou Str, Athens 10676, Greece;

    Department of Electronic and Computer Engineering, Brunei University Uxbridge, Middlesex,UB8 3PH, UK;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    epileptic seizures; nonextensive statistics; self-affinity; intermittent criticality;

    机译:癫痫发作;非广泛统计;自我亲和力间歇性临界;

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