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首页> 外文期刊>Journal of neural engineering >Rogue bioelectrical waves in the brain: the Hurst exponent as a potential measure for presurgical mapping in epilepsy
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Rogue bioelectrical waves in the brain: the Hurst exponent as a potential measure for presurgical mapping in epilepsy

机译:大脑中的恶意生物电波:赫斯特指数作为癫痫术前作图的一种潜在措施

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Objective. Brain electromagnetic activity in patients with epilepsy is characterized by abnormal high-amplitude transient events (spikes) and abnormal patterns of synchronization of brain rhythms that accompany epileptic seizures. With the aim of improving methods for identifying epileptogenic sources in magnetoencephalographic (MEG) recordings of brain data, we applied methods previously used in the study of oceanic 'rogue waves' and other freak events in complex systems. Approach. For data from three patients who were awaiting surgical treatment for epilepsy, we used a beamformer source model to produce volumetric maps showing areas with a high proportion of spikes that could be classified as 'rogue waves', and areas with high Hurst exponent (HE). The HE describes the extent to which a system is exhibiting persistent behavior, may predict the likelihood of freak events. These measures were compared with the more standard measure of kurtosis, which has been shown to be a reliable method for localizing interictal spikes. Main results. There was partial concordance between the three different volumetric maps indicating that each measure provides different information about the underlying brain data. The HE, when combined with a simple connectivity analysis based on phase slope index (PSI), was able to identify the probable epileptogenic zone in all three patients, despite very different patterns of abnormal activity. The differences between distributions of high HE and high kurtosis values indicates that while spikes are propagated through cortex from the epileptogenic zone, the persistent dynamical conditions under which the spikes are generated may not be propagated in a similar way. Finally, the patterns of persistent activity, indicating a departure from 'healthy criticality' in brain networks may explain the wide range of social and cognitive impairments that are seen in epilepsy patients. Significance. The HE is a potentially useful addition to the clinician's battery of measures which may be used convergently to guide surgical intervention.
机译:目的。癫痫患者的大脑电磁活动的特征是异常的高振幅瞬态事件(突波)和伴随癫痫发作的脑节律同步性的异常模式。为了改进在脑磁图(MEG)记录中识别癫痫源的方法,我们应用了以前用于研究海洋“流浪”和复杂系统中其他异常事件的方法。方法。对于来自三名正在等待手术治疗癫痫的患者的数据,我们使用了波束形成器源模型来生成体积图,该图显示了尖峰比例高的区域(可以归类为“流浪”)和高赫斯特指数(HE)的区域。 HE描述了系统表现出持续行为的程度,可以预测异常事件的可能性。将这些措施与峰度的更标准措施进行了比较,该方法已被证明是定位尖峰间尖峰的可靠方法。主要结果。在三个不同的体积图之间存在部分一致性,表明每种度量提供有关基础大脑数据的不同信息。尽管结合了异常活动的模式,HE与基于相位斜率指数(PSI)的简单连通性分析相结合,仍能够识别出所有三名患者的可能的癫痫发生区。高HE和高峰度值的分布之间的差异表明,虽然峰值从癫痫发生区通过皮质传播,但产生峰值的持续动态条件可能不会以类似方式传播。最后,持续活动的模式表明大脑网络已偏离“健康临界点”,这可能解释了癫痫患者中广泛的社交和认知障碍。意义。 HE是对临床医生一系列措施的潜在有用补充,这些措施可被聚合地用于指导手术干预。

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